Showing posts with label Lupine publishers llc. Show all posts
Showing posts with label Lupine publishers llc. Show all posts

Tuesday, August 16, 2022

Life Course In HEARTS: Enhancing Telehealth Resilience and Mindfulness Intervention in Older Adults Experiencing Abuse and Trauma-A Conceptualization

 

Introduction

Advances in research and evidence-based practice improve the prevention and treatment of diseases, but the marginalized seems to be left behind [1]. The purpose of this paper is to conceptualize a telehealth intervention aimed to improve the health and health span of older adults. More particularly, we articulate the conceptual framework underlying our intervention, Telehealth Resilience Mindfulness (TRM) Intervention, which will be delivered via text messaging (for those who have phones or smartphones), video conferencing such as Zoom (for those with internet connectivity), or in-person (when it is practical) to older adults to enhance HEARTS (health, experiences of abuse and trauma, resilience, technology use, and social support). Healthcare is a human right a resource to mitigate disparities in healthspan, defined as the portion of life spent in good health [2]-enriching opportunities if there is collaboration in interdisciplinary education, research, and practice [1,3]. We propose a telehealth intervention as a resource for older adults in mitigating disparities in healthspan. A telehealth intervention is defined as the use of information and communication technologies for health that encompasses positive emotions, optimism, and cognitive appraisal [4-7]. Telehealth interventions have the potential to reduce the psychobiological exposure to abuse and trauma and their health-related consequences as technology provides a safe, timely, and flexible space for the target population compared with traditional face-to-face approaches [7]. Additionally, interventions for the prevention and reduction of abuse among women [8-11] had positive health and social outcomes. Some telehealth interventions were included in these reviews and showed mixed results [7,12]. For these reasons, we are exploring and conceptualizing opportunities for enhancing the feasibility and efficacy of the telehealth resilience-mindfulness intervention in older adults.

Read more about this article :https://lupinepublishers.com/complementary-alternative-medicine-journal/fulltext/life-course-in-hearts-enhancing-telehealth-resilience-and-mindfulness-intervention-in-older-adults.ID.000154.php

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Tuesday, January 12, 2021

Lupine Publishers | MLC901 for Moderate to Severe Traumatic Brain Injury: Pilot, Randomized, Double-Masked, Placebo- Controlled Trial

 Lupine Publishers | Open access Journal of Complimentary and Alternative Medicine

 



Abstract

Background: Despite recent developments in intensive care for patients with Traumatic brain injury (TBI), the long-term neurological disabilities still exist. MLC901 is Traditional Chinese Medicine and has shown some neuroprotective and neuro regenerative benefits after brain injury in previous animal and human studies and may provide a new therapeutic approach in the treatment of TBI. Accordingly, we conducted this pilot, randomized, double-masked, placebo-controlled study to investigate the efficacy of MLC901 in patients with moderate to severe TBI.

Materials and Methods: Patients with a diagnosis of moderate to severe TBI were enrolled. Subjects were randomly assigned to receive either MLC901 or placebo capsules three times per day over 6 months. Evaluation of patients was carried out at baseline, 3rd month and 6th month follow-after injury. Modified Rankin Scale (mRS) and Glasgow outcome scale (GOS) were used to examine patients. Efficacy was evaluated by comparing these two scores between the 2 groups at follow-up visits.

Results: Eighty-one patients complete 6 months follow up. There was no significant difference between two study groups regarding the demographic features, interval between injury and start of intervention and length of ICU stay. However, functional outcome scales of GOS, MRS at 3rd and 6th month post-injury were significantly better in MLC901 group compared to placebo (p<0.05).

Conclusion: MLC901 has shown promising efficacy in patients suffering from moderate to severe TBI.

Keywords: NeuroAid, MLC901; Traumatic brain injury; Placebo-controlled study, Modified rankin scale, Glasgow outcome scale, Functional outcome

Introduction

Traumatic brain injury (TBI) has significant morbidity, mortality and is the major cause of disability in individuals younger than 35 years in the Europe and the USA. Traumatic brain injury (TBI) is also one of the causes of epilepsy and a substantial proportion of traumatic deaths are related to TBI [1]. TBI with its large socioeconomic consequences and its high incidence in young adults is still an important health concern worldwide and poses a real challenge to public health. Despite recent developments in intensive care for patients with TBI, long-term neurological disabilities related to TBI still exist. More than half of patients show significant after-effects, principally in cognitive tasks. Neuroprotective therapeutic Studies have still not introduced safe, and effective treatment for TBI [2,3]. MLC901 (Neuro Aid) as Traditional Chinese Medicine could provide a new therapeutic approach in the treatment of TBI. Therapeutic advantages of MLC901 have already been depicted in patients suffering from stroke, Alzheimer’s disease, mild cognitive impairment and vascular dementia [4-6]. Consistent with findings of clinical reports in efficacy and safety of MLC901, animal studies have also established that MLC901 prevents the death of neuronal tissues, decreases cognitive dysfunction and also improves functional neurological outcome by restoring neuronal circuits in models of ischemia. MLC901has also shown neuroprotective and neurorestorative actions, which could potentially lead to the enhanced recovery of cognitive functions in animal models of TBI. The efficacy of MLC901 has also been shown the oxygenglucose deprivation model, which mimics ischemic conditions [7,8]. Additionally, in a recent study, MLC901 has demonstrated to improve cognitive functioning in patients with mild to moderate TBI [9]. In this study, we aimed to evaluate the effect of MLC901 on neurological function and outcome in patients suffering from moderate to severe TBI.

Materials and Methods

Study design and patients

This was a randomized, double-blind, Placebo-controlled, study conducted between May 2017 and December 2019. The aim of the study was to determine efficacy of MLC901 on neurological outcome after injury in patients with moderate or severe TBI. Clinicians recruited patients from University-affiliated hospitals and patients were eligible for this study if they satisfied the following inclusion criteria: age between 15 and 65, nonpenetrating moderate (Glasgow Coma Scale score [GCS] 9-12) or severe (GCS 3-8) traumatic brain injury less than 24 hours from traumatic injury, anticipated intensive care unit length of stay at least 48 hours. Patients were excluded if GCS was 3 and they had fixed dilated pupils or penetrating injury, coexisting injury or medical conditions which could adversely affect our study outcome measures, dependence for everyday activities before the injury, pregnancy or breastfeeding, known allergy to any of MLC901 components.

MLC901 contains nine herbal components (0.114g radix Paeoniae rubrae, 0.57g radix Astragali, 0.114g radix Salviae miltiorrhizae, 0.114g rhizoma Chuanxiong

, 0.114g radix Angelicae sinensis, 0.114g radix Polygalae, 0.114g Prunus persica, 0.114g Carthamus tinctorius, and 0.114g rhizoma Acori tatarinowii) [10].

Patients were randomized to either MLC901 or placebo group with a simple allocation ratio of 1:1. Randomization was stratified based on age, gender, baseline and GCS. Patients received either MLC901 or visually indistinguishable placebo capsules (vegetable capsules that filled by less than 2 grams of stevia sweetened powder) for 6 months supply. The dose was two capsules (0.4g/ capsule) taken orally three times per day for 6 months. Patients were evaluated 3 month and 6 months after treatment initiation.

Outcome measures

Modified Rankin Scale (mRS) and Glasgow outcome scale (GOS) were utilized to examine participants at the baseline, 3 and 6-month follow-up visits. mRS is a widely used scale to determine the level of disability in patients with neurological disorders. It ranges between 0 and 6 with a higher score indicating a higher degree of disability [11] (Table 1). GOS is also another commonly used scale to evaluate patients with brain injuries such as TBI. This scale ranges between 1 and 5 with the highest score being the good recovery [12] (Table 1). All evaluations were conduct by medical staff who were unaware about randomization of patients in each group.

Table 1: Modified Rankin Scale (mRS) and Glasgow Outcome Scale (GOS) subscales.

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Statistical analysis

All statistical analysis was done by SPSS (version 16.0) software [Statistical Procedures for Social Sciences; Chicago, Illinois, USA] with the intention to treat approach. Descriptive data were reported as a mean± standard deviation for Continuous values and frequency for categorical values. Normal distributions of values were determined by the Kolmogorov-Smirnov test. Non-parametric data were compared using chi-square test. Kruskal-Wallis test was used to compare parametric data without normal distribution between two study groups. P values less than 0.05 were considered a statistically significant.

Ethical issues

Ethic committee of Shahid Beheshti University of Medical Science, Tehran, Iran approved all study protocols and written consent provided by each patient’s legal surrogate according to Helsinki Declaration and as permitted by local regulations. The protocol has been registered (ClinicalTrials.gov ID: NCT04487275). Patients who recovered with decision-making capacity were asked to consent to continue participating in the study.

Results

Table 2: Baseline characteristics.

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*Interval between injury and start of intervention.
ICU: intensive care unit.

Table 3: The modified Rankin Scale of patients with moderate and severe traumatic brain injury being treated with MLC901 vs. placebo.

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Table 4: The Glasgow Outcome Scale of patients with moderate and severe traumatic brain injury being treated with MLC901 vs. placebo.

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Figure 1: CONSORT flow diagram of the study.

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Totally 98 Patients recruited in this study. Seventeen patients were excluded from the study due to occurrence of MLC901 side effect (n=3), loss of follow-up (n=6), and death during hospitalization (n=8). The CONSORT flow diagram of the study is demonstrated in figure 1. Baseline patients’ characteristics, interval between injury and start of intervention, and length of intensive care unit (ICU) stay in both groups were not significantly different between the two study groups (Table 2). The comparison of mRS and GOS scores between the two groups are depicted in Tables 3 & 4.

Discussion

Our primary findings provide evidence that MLC901 helps in the recovery of patients with moderate to severe TBI. There were significant differences between the two groups in mRS and GOS scores at follow-up visits. Improvement of these two scales suggests the potential usefulness of MLC901 at 6 months period after injury. The brain is highly plastic following TBI and improvement in function can be observed over a year after initial injury, therefore, initiation of MLC901 during natural recovery period can facilitate this process. In our study, MLC901 was given within first 24 hours after TBI and it is likely that anti-inflammation and antioxidant properties of MLC901 have affected recovery in its initial phase and current evidence suggest the efficacy of these properties over the first-year post-injury [13,14].
Various studies showed effect of different medication on TBI based on mRS and GOS scores. Farzanegan et al, showed that, functional outcome scales of GOS, mRS and at 3-months post-injury were significantly better in patients with TBI who used atorvastatin in compare to placebo group [15]. In another study by Khalili et al, 3-months assessment of outcome by mRS and GOS showed no significant different in patients who received glibenclamide in compare with placebo group [16]. To the best of our knowledge, this is the first study evaluating the efficacy of MLC901 in moderate to severe TBI, consequently direct comparison of our findings to previous studies is not possible. However, there is one study that has reported the efficacy of MLC901 in mild to moderate TBI. In the study by Theadon et al, authors evaluated the efficacy of MLC901 on cognition in 78 patients suffering from mild to moderate TBI over 9 months and they used multiple questionnaires and scales to assess participants in 1 to 12 months after TBI. They reported significant improvements in complex attention and executive functioning. They also found that MLC901 has no advantage over placebo in terms of neurobehavioral sequelae, mood, fatigue, physical disability or overall quality of life. No serious adverse events were also reported [9]. Their findings are partially in line with the results of a current study in this way that MLC901 is an effective therapy for TBI regardless of its severity.

It is now well accepted that the functional recovery that occurs spontaneously after brain injury (stroke or TBI) is due to the plasticity of surviving neurons, lesion-induced plasticity, and/or plasticity of neural connections [17,18]. In the other hand, overall cellular remodeling that occurs after traumatic brain injury results to proliferation of newly generated cells [19]. Although there is a lack of clinical studies, experimental studies on TBI shows that both gliogenesis and neurogenesis induced by MLC901, probably help in inducing a dynamic brain remodeling and lead to a better neurologic recovery in the first weeks after TBI [18,19]. In animal model studies, Quintard et al. evaluated the neuroprotective and neuro regenerative effects of MLC901 in a rat model of TBI. In their study MLC901 inhibited the increase of S-100 beta and neuronspecific enolase in serum, that are possible predictor markers of neurologic outcome in patients with TBI. Also, they showed that probably regulation of aquaporin 4 by injection of MLC901 2 hour after TBI resulted to infarct volume reduction, prevented edema formation and assisted its resolution [20]. In addition, recently animal studies on focal and global ischemia have approved effects of MLC901 in increased neurogenesis, neurite outgrowth, axonal sprouting, dendritic arborization and/or synaptogenesis that are correlated with functional recovery [7,21].

Neuroprotective effects of MLC901 in ischemic brain injuries was suggested through activation of Toll-like receptor 4 (TLR4) signaling and inhibition of the expression of Prx6 and the transcriptional activity of NFκB which are main pathway in the immune system response to injury [10]. Quintard et al, also reported that in animal models of TBI, MLC901 effect around the lesion included vascular endothelial growth factor (VEGF) upregulation, hippocampal neurogenesis and gliogenesis [20]. Brain-derived neurotrophic factor (BDNF)and VEGF are well-known growth promoting factors that play a key role to support adaptive remodeling of surviving neurons and neural networks modulation in recovery process [22,23]. VEGF is an important tissue repair mediator after brain injury and has substantial role in angiogenesis [24]. In the other hand BDNF upregulation by MLC901 has been reported in brain injuries due to stroke and cardiac arrest [7,22,25]. It seems that increased expression of VEGF and BDNF is another positive effect of MLC901 that could be responsible for the findings that observed in this study.

The combination of multiple herbal components is thought to maximize therapeutic efficacy by facilitating synergistic actions and ameliorating or preventing potential adverse effects while at the same time aiming at multiple targets [22]. In the neuroinflammation study by Widman and Heurteaux list assumptions of molecules which may explain part of the effects [10,22]. In these different herbs that are extracted to manufacture MLC901, there are a number of recognized molecules such as ferulic acid ferulic acid (Radix angelicae sinensis, Rhizoma chuanxiong) [26], salvianolic acid B and tanshinone IIB (Radix salvia miltiorrhizae) [27-28] tetramethylpyrazine (Rhizoma chuanxiong) [29-30], ligustilide and butylidenephtalide (Radix angelicae sinensis, Rhizoma chuanxiong) [31-32], astralagoside IV (Radix astragali) [33], ligustilide and butylidenephtalide (Radix angelicae Sinensis, salvianolic acid B and tanshinone IIB (Radix salvia miltiorrhizae) that are identified for neurobeneficial and anti-inflammatory activity [10,23].

There are several strengths as well as limitations to our study. Recruitments of patients were challenging since their surrogates or patients mentioned taking capsules three times daily over 6 months as a hurdle to participate in the study and some suspect this many capsules could harm patients rather than help them in recovery. Probably, decreasing the daily dosage administration would help in participation and adherence of patients. Additionally, moderate to severe TBI is known to be related to cognitive deficits, therefore, aids to support memory may increase patient’s adherence and compliance. We used GOS to assess patient’s outcome. Recently is suggested that Glasgow Outcome Scale-Extended (GOSE) has priority to the GOS. GOSE in extended version of GOS that improve sensitivity of minor changes detection in functional activity [34]. Our study also suffers from a limited number of patients. Lack of patients self-reporting questionnaire is another issue with this study. We didn’t measure any neuroplasticity biomarkers in our patients, but it seems that measuring the neuroplasticity biomarkers in future studies could be useful to understand the underlying effects of MLC901 in TBI. We suggest, with the current promising result of the present study, more studies with a larger group of patients with different evaluation scales and longer duration of follow-up should be performed to draw a better conclusion.

Conclusion

This work provides evidence that MLC901 is an effective therapeutic approach in patients suffering from moderate to severe TBI. However further studies with more clinical and paraclinical assessments are suggested to evaluate different aspects of MLC901effectiveness in neurologic disease and particularly TBI.

Acknowledgments

None.

Conflict of Interest

None.


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Friday, September 18, 2020

Lupine Publishers | Cytoprotective Effect of Zingiber Officinale extract on Alcohol Induced Gastric Lesion in Mice

 Lupine Publishers | Open access Journal of Complimentary and Alternative Medicine


Ginger is a perennial plant that grows in India, China, Mexico and several other countries. The rhizome is used as both spice and in herbal medicine. Many studies have been done on pharmacological effect of ginger extract and our paper has been focused on cytoprotective effect of ginger on ethanol induced gastric injury in mice. Many drugs have been used in the treatment of peptic ulcer but each of them associated with different side effect so trends today toward use of herbal medicine which was associated with adverse effect. Ginger hydroalcoholic extract contain different consistent with anti-ulcer properties like 6-Gingersulfonic acid and three monoacyldigalactosyl glycerol including ginger glycolipid A. B. C .The mechanism of ginger extract may be due to counteracting the active oxidant radicals, decreasing mucosal cell shedding and thicking the mucus membrane so ginger extract has antiulcer properties when used in accurate dose and accurate duration.

Keywords: Cytoprotective effect; Ethanol; Ginger hydroalcoholic extract; Mice; Zingiber Officinale

Introduction

Spices, the predominant flavoring, coloring, and aromatic agents in food and beverages are now gaining importance for their diversified uses. Ginger (Zingiber Officinale) is a medicinal plant that has been widely used in Chinese, and Tibb Unani herbal medicines all over the world, since antiquity, for a wide array of unrelated ailments that include muscular aches, sore throat, constipation, arthritis, indigestion, vomiting and infectious diseases. Currently, there is a renewed interest in ginger, and several scientific investigations aimed at isolation and identification of active constituents of ginger, scientific verification of its pharmacological actions and of its constituents, and verification of the basis of the use of ginger in several diseases and conditions Ali et al. [1].

Ginger grows best in tropical and subtropical areas, which have good rainfall with hot and humid conditions during the summer season. It is a member of Zingiberaceae family originated in Southeast Asia and has been introduced to many parts of the globe where it proliferates in suitable environment. Belief in the medicinal properties of ginger existed in ancient Indian and oriental cultures where ginger has been used alone or as a component in herbal remedies. This practice continues today in many areas of the world including Africa, Brazil, China and, Mexico. Ginger has introduced to Europe and other areas by Dutch, Portuguese Arab and Spanish explorers or traders from around the 13th to 16th centuries.

Carbohydrates

Starch is the major constituent up to 50%.

Oleoresin

Gingerol homologues (major, about 33%) include derivatives with methyl side chain, shogaol homologues (dehydration products of gingerols), zingerone (degradation product of gingerols) ,1- dehydrogingerdione and 6- ginger sulfonic acid.

Lipids 6-8%

They include free fatty acids e.g. palmitic acid, oleic acid, linoleic acid, caprylic acid, capric acid, lauric acid, myristic acid, pentadecanoic acid, heptadecanoic acid, stearic acid, linolenic acid, arachidonic acid, triglycerides, phosphatidic acid, lecithin and ginger glycolipids A, B and C. Ulcer are caused due to imbalance between aggressive factors (hydrochloric acid, pepsin, gastrin, no steroidal anti-inflammatory drugs, and ethanol) and defensive factor of gastric mucosa (prostaglandin, mucus, bicarbonate). The antiulcerogenic activity of many plant products is reported due to an increase in mucosal defensive factors rather than decrease in the aggressive factors Goel, et al. [2]. Numbers of an antiulcer drugs like gastric antisecretory drugs H2- receptor antagonist, antimuscarinic agents, proton pump inhibitors, and mucosal protective agents, carbenoxolone sodium, sucralfate, and prostaglandin analogous are available which are shown to have side effects and limitation Baowman et al. [3].

There are several herbal ayuvedic preparation which have a protective effect against gastric mucosal injury Shetty et al. [4]. Herbal medicine is now used by up to 50% of the Western population in a number of instances 10% for treatment or prevention of digestive disorders Langmead and Rampton [5]. Today, pharmacopoeias of a number of different countries list ginger extract for various digestive disease, Aromatic, spasmolytic and carminative properties of ginger are probably responsible for the therapeutic application in digestive tract ailments Sertie et al. [6].

Mechanism of Gastric Effect of Ginger

Several studies have shown that ginger extract, essential oils and glycolipids possess a number of pharmacological actions, which at least in part for some of them anti-ulcerogenic or ulcer preventive efficacy may be suggested. Common side effects of treating inflammation with modern drugs is that ulcer in the digestive system can be created or their condition made worse Wallace [7]. Ginger not only relieves the symptoms of inflammation but also protects the creation of digestive ulcers. Ginger may protect the stomach from the damaging effect of alcohol and non- steroidal anti-inflammatory drugs and may help prevent ulcers Villegas et al. [8]. A study was done in Isfahan university by Miniaiyan et al. [9] for anti-ulcerogenic effect of ginger on cysteamine-induced duodenal ulcer in rats. The results obtained in positive control groups indicated that ginger possesses its anti-ulcerative properties through a mechanism mainly related to acid- pepsin inhibition.

The effect of ginger (acetone extract) and zingiberene on hydrochlochloric acid/ethanol-induced gastric lesions in rats have been examined (6)- gingerol and zingiberene, both 100mg/ kg oral), significantly inhibited gastric lesions by 54.5% and 53.6% respectively. The total extract inhibited lesions by 97.5% at 1g/kg. Oral administration of both aqueous and methanol ginger extract to rabbit has been reported to reduce gastric secretions (gastric juice volume, acid and pepsin output). Both extracts were found to be comparable with cimetidine (50mg/kg) with respect to gastric juice volume.

The aqueous extract was comparable with cimetidine and superior to the methanol extract for pepsin output, and the methanol extract superior to the aqueous extract and comparable to cimetidine for acid output. Roasted ginger decoction which showed an obvious inhibiting tendency on three gastric ulcer models. The plant contains active materials which for some of them ulcer protective properties have been identified 6- ginger sulfonic acid and three monoacyldigalactosyl glycerols including ginger glycolipid A,B,C have been isolated from dried rhizome of Zingiber Officinale which are potent anti-ulcer components Yoshikawa et al. [10].

a) 6- gingerol and 6- shagaol are two other anti-ulcer components that are less potent nut are mainly responsible for ginger pungency.

b) Results of one study fore effects of three herbal medicine including Zingiber Officinale on gastric ulceration and secretion in rats indicated significant protection against stress, aspirin and pylorus ligation. The proposed anti-ulcerogenic effects were augmentation of mucin secretion and decrease in cell shedding.

c) Al-Yahya et al. [11] Studied the cytoprotective and gastric anti-ulcer effect of ginger in albino rats. Cyto destruction was produced by 80% ethanol, 0.6M HCL, 0.2 M NaOH and 25% Nacl. Gastric ulcer was produced by ulcerogenic agents including indomethacin, aspirin and reserpine beside hypothermic restraint stress and by pylorus ligation. The results of this study demonstrated that the extract in the dose 500mg/kg orally exerted highly significant cryoprotection and prevented occurrence of gastric ulcers induced by non- steroidal antiinflammatory drugs.

Method

Experimental animals: Albino mice of either sex weighing 20- 30g, was maintained in the animal house of Faculty of Medicine- Al Arab Medical University, Benghazi, Libya the mice were bred in the faculty animal house. All animals were housed in standard polypropylene cages (48×35×22cm) and kept under controlled room temperature. (20±5 °C; relative humidity 60-70%) in a 12h light-dark cycle.

The animals were given a standard laboratory diet and free water Food was withdrawn 12h before and during the experimental hours:

Maceration method

In this method fresh ginger rhizome was cut into small pieces, dried, and then pulverized into coarse powder and weighing about 400g of powder. It was macerated in 1000ml hydroalcoholic solution (70% Ethanol, 30% distilled water) for seventy-two hours. The extract was then shaked, filtered by using dryness filter paper and the solution was evaporated in a rotatory evaporator under reduced pressure until evaporation and removal of the solvent give hydroalcoholic extract of ginger out of 400g of crude plant, 8g of hydroalcoholic extract of ginger were obtained and kept for use in pharmacological experiments (Iranian Herbal Pharmacopeia). Study of cytoprotective effect of Zingiber (ginger) extract on ethanol-induced gastric lesion in mice.

The present paper was designed to investigate the cytoprotective effect of hydroalcoholic extract of ginger in an animal model of gastric lesion. Mice of either sex weighing 25-30g were employed in this study the animals were divided isoups each consisting of six mice.

1. Normal group: Given vehicle (5ml/kg orally) without ulcer induction.

2. Control group: Given vehicle (5ml/kg orally) one hour before ulcer induction.

3. Extract group: Given hydroalcoholic extract of ginger in a dose (300mg/kg orally) one hour before ulcer induction.

4. Extract group: Given hydroalcoholic extract of ginger in a dose of (600mg/kg I.P) one hour before ulcer induction.

5. Chronic extract group: Given hydroalcoholic extract of ginger. In a dose of (300mg/kg I.P) for five consecutive days before ulcer induction. The last dose was administered one hour before ulcer induction.

6. Reference group: Given rantidine (50mg/kg I.P) one hour before ulcer induction.

One hour after intragastric administration of absolute ethanol (95%, 0.2ml), the animals are euthanized with ether, the stomach were excised, cut along the greater curvature, and gently rinsed under tap water, and examined by 5-fold binocular magnifier to assess lesion in gastric mucosa.

Results

As shown in Figure 1 normal gastric mucosa Figure [A] compared with Figure [B & C] with treatment by ethanol there is exfoliation and sloughing of gastric cells with inflammatory cell infiltrate and congestion of blood vessels Figure [D]. Figure 2 shows partial improvement in gastric lesion in the group treated by oral ginger treatment at dose 300mg/kg as there is mild exfoliation of gastric cells Figure [A]. Moderate gastric protection by (I.P) treatment of ginger at a dose 600mg/kg as there is moderate exfoliation of gastric cells as shown in Figure [B]. Complete protection by chronic (I.P) treatment of ginger in a dose of 300mg/kg with no exfoliation of gastric cells as shown in Figure [C]. Rantidine has moderate protective effect as shown in Figure [D] compared with extract in Figure [C] with complete protection of gastric mucosa.

Figure 1: Light photomicrographs (10× magnifications) of hematoxylin and eosin- stained sections of stomach.

A: Normal gastric mucosa.

B, C: Ethanol treated stomach with Exfoliation and sloughing of gastric cells.

D: Ethanol treated with congestion of blood vessel.

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Figure 2: Light photomicrographs(10×magnifications) of hematoxylin and eosin-stained sections of stomach:

A: Ginger treated (IP) stomach.

B: Ginger treated (IP) stomach.

C: Chronic ginger treated (IP).

D: Ranitidine treated (IP) stomach.

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In present paper ethanol administration provoked significant gastric mucosal injuries as evidence by necrosis, exfoliation and sloughing of gastric cells, congestion of blood vessels and infiltration of inflammatory cells. Cytoprotective action of ginger has been investigated using animal models of acute gastric injury induced by necrotizing agents such as ethanol. Ethanol serves as the most common ulcerogenic agent and produced sever gastric hemorrhagic erosions Robert et al. [12]; Szabo et al. [13]. The genesis of ethanol-induced gastric lesions is multifactorial with the depletion of gastric wall mucus content as one of the involved factors. Submucosal venular constriction by ethanol and eventual injury is caused due to perturbations of superficial mucosal cells, notably the mucosal mast cells leading to release of vasoactive mediators including histamine, that cause damage to gastric mucosa Hollander et al. [14]. Accumulation of activated neutrophil in gastric mucosa may be the source of free radicals Oxygen free radical which lead to increase to lipid peroxidation and damage to cell membrane are impacted in ethanol induced gastric mucosal injury Al-Harbi et al. [15]. In addition to its direct damage of gastric mucosal cells by development of free radicals, cause solubilization of mucus constituents and depressant tissue levels of protein leading to flow stasis in gastric blood. The present paper revealed parial cytoprotection by single oral dose of ginger (300mg/kg) in mice. More effective cytoprotection was elicited by (600mg/kg I.P).

The results obtained in the present paper indicated that ginger extract possess its anti- ulcerative properties through a mechanism mainly related to acid and pepsin inhibition Chronic I.P injection of plant extract in a dose of (300mg/kg) more effective in prevention lesion formation. The mechanism of ginger extract in chronic (I.P) protection may be due to counteracting the active oxidant radicals, decreasing mucosal cell shedding and thicking the mucus membrane. The mechanism of anti-ulcer effect of ginger may be due to presence of 6-Gingersulfonic acid and three monoacyldigalactosyl gylcerols including ginger glycolipid A. B. C have been isolated from dried rhizome of Zingiber Officinale which are potent anti-ulcer components Yoshikawa et al.[16]. 6- Gingerol and 6- shogaol are two other anti- ulcer components that are less potent but are mainly responsible for ginger pungency. The results of present paper in accordance with previous reports in which water and methanolic extract of eight Zingiberaceae herbs caused a significant decrease in gastric secretion in un-anesthetized rabbits and the effect of water extract was similar to cimetidine Sakai et al. [17].


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Lupine Publishers | Tongluo Decoction Blocks Apoptotic Mitochondrial Pathway and Inhibits Cardiomyocyte Apoptosis of Coronary Microembolization Rats

 Lupine Publishers| Open access Journal of Complimentary and Alternative Medicine 



BackgrBackground: We found that Tongluo Decoction has had good protection for myocardial cells injury of CME rats. But it is not clear whether Tongluo Decoction has inhibitory effect on myocardial apoptosis. So we want to study the effect and mechanism of Tongluo decoction to cardiomyocyte apoptosis following coronary microembolization in rats. Methods: 46 male Wistar rats were randomly divided into blank group (n=6), model group (n=10), Tongluo Decoction low dose group (n=10), Tongluo Decoction high dose group (n=10) and Tongxinluo group (n=10). In addition to the blank group, the rats of other groups were established the model of autologous thromboembolism microembolism by interventional method. The low dose group of Tongluo Decoction was given 7.8g/kg for gavaging, the high dose group of Tongluo Decoction was given 23.4g/kg, Tongxinluo group was given 0.2g/kg, once-a-day, for 12 day. The judgment of the model was done with HE and HBFP staining, the myocardial apoptosis rate was observed by TUNEL staining. Western Blot was used to detect Bcl-2, Bax and Caspase-3 in cardiac myocytes.

Results: The microembolization vessel count ratio, ischemic myocardial area ratio and the apoptosis rate of myocardial cells in model group were significantly higher than that in blank group, bcl-2 and bcl-2/bax decreased, and bax and caspase-3 were significantly increased (P < 0.05).Compared with model group, Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group microembolization vessel count ratioischemic myocardial area ratio apoptosis rate decreased (P < 0.05), bcl-2, bcl-2/bax increased, Bax and caspase-3 decreased (P < 0.05). Compared with Tongxinluo group, the ratio of ischemic myocardial area, microembolization vessel count ratio, apoptosis rate, the expression of bax and caspase-3 proteins decreased (P > 0.05), bcl-2 and bcl-2/bax ratio increased in Tongluo Decoction high dose group (P > 0.05). bcl-2 and bcl-2/bax ratio increased obviously in Tongluo Decoction low dose group (P < 0.05).

Conclusion: Tongluo Decoction can inhibit cardiomyocyte apoptosis following coronary microembolization in rats, and its possible mechanism is related to blocking mitochondrial apoptotic pathway.

Keywords: Tongluodecoction; Rat; Coronary microembolization; Cardiomyocyte apoptosis

Abbrivations: Percutaneous coronary intervention (PCI); Coronary microembolization (CME); Hematoxylin-Eosin staining (HE); Hematoxylin basic fuchsin picric staining (HBFP); Terminal deoxynucleotidyl transferase-mediated dUTP Nick End-Labeling (TUNEL); High performance liquid chromatography (HPLC); Tongluo decoction (TLD); Optical density (OD); Bcl-2 Assaciated X protein (Bax); Cysteinyl aspartate specific protease-3 (Caspase-3); B-cell lymphoma-2 (Bcl-2)

Introduction

In the process of percutaneous coronary intervention which is used to treat coronary heart disease, the small fragments that come from mechanical injury of coronary atherosclerosis, with the flow of blood circulation to the distal coronary artery, block the distal microvascular, which leading to the obstruction of coronary microvascular circulation, that is coronary microembolization(CME). CME is a serious complication of PCI, which can cause myocardial ischemia and cardiac dysfunction, and even lead to death. Numerous experimental studies [1, 2] have shown that apoptosis plays an important role in CME lesions. The research showed that Chinese materia medica can improve myocardial injury caused by coronary microembolization [3]. We found that Tongluo Decoction has had good protection for myocardial cells injury of CME rats. The Tongluo decoction could inhibit the pathological change of CME in rats, reducing the ingury of myocardial cells, inhibiting the expression of inflammatory cytokines and promoting the microemboli vascular recanalization [4]. But it is not clear whether Tongluo Decoction has inhibitory effect on myocardial apoptosis of CME rats. Therefore, in this study, we established coronary artery microembolization model of rats by injecting autologous thrombus through the right common carotid artery by interventional method with balloon catheter [5]. The effect and mechanism of Tongluo Decoction on cardiomyocyte apoptosis following CME in rats were studied.

Methods

Preparation and quality control of tongluo decoction

Tongluo Decoction mainly consisted of eight herbs: [6- 8] The composition and proportion of herbs are shown in the diagram (Figure 1, Table 1). The herbs was purchased from the Hui ren Tang Pharmaceutical Company, and they were identified by Jianyin Li, a teacher of Lanzhou University school of pharmacy.(The voucher specimen numbers of the stored herbarium specimen are 62032120180807063LY for Astragali Radix, 620031220010918321LY for Radix ginseng Rubra, 62062319980910435LY for Fructus Corni, 62032120180811156LY for Radix Paeonia Rubra, 62032120180807062LY for Radix Bupleuri, 62062320130815322LY for Rhizoma Cimicifugae, 62032120180805049LY for Radix Platycodonis, 62032120180812164LY for Radix Glycyrrhizae. ) This herbs that was conformed to the prescription, all of them were qualified, decocted, concentrated, and then put in refrigerator at 4. The chromatographic conditions were Diamonsil C18 (2) column (200×4.6mm, 5μm), the liquid phase of the calycosin glycoside (batch number 111920-201606, National institutes for food and drug control) mobile phase: acetonitrile -0.2% formic acid solution (15:85), flow velocity:1ml/min, column temperature: 30, detection wavelength: 260nm, sample size: 10μl. Paeoniflorin (batch number X27F8C30162, Shanghai source leaf Biological Technology Co., Ltd.) mobile phase: acetonitrile-0.1% phosphoric acid solution (16:84). Flow velocity, column temperature and sample size remain unchanged. Detection wavelength: 230nm; Ginsenoside Rb1 (batch number Z06M8L30693, Shanghai source leaf Biotechnology Co., Ltd.) mobile phase: acetonitrile -0.1% phosphoric acid solution, gradient elution. Flow velocity, column temperature and sample size remain unchanged. The detection wavelength: 203nm. To calculate the content of calycosin glycoside, paeoniflorin and ginsenoside Rb1.

Figure 1: Composition of main herbs and their proportion in Tongluo Decoction.

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Table 1: The full scientific species names of ingredients of Tongluo Decoction.

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Preparation of autologous thrombus suspension

1ml blood was collected from the caudal vein of each rat , then drying, the dry blood was grinded into powder like particles. The thrombus particles with a diameter between 41μm and 80μm were mixed into a suspension, and 2×105 thrombus particles were injected into the the aortic root through the right common carotid artery for establishing coronary artery microembolization model.

Animals grouping and model establishment

46 SPF healthy adult male Wistar rats (weight 350g±30g) were randomly divided into blank group (n=6), model group (n=10), Tongluo Decoction low dose group (n=10), Tongluo Decoction high dose group (n=10), Tongxinluo group (n=10). The experimental animals were purchased from the experimental animal center of Lanzhou University. The laboratory animal license number SCXK (Gan) 2013-0002. The experimental process adhered to the ethical regulations of animal experiments. The rats were anesthetized with 0.4% pentobarbital sodium solution, separated the right common carotid artery and cut the “V” incision at its distal end. The balloon catheter, which was soaked with heparin sodium saline, was pushed to the root of the aorta (about 4cm from the incision of right common carotid artery to the aortic root ), and the blood flow of the ascending aorta was blocked for 3-5s, rapidly withdrawing the guide wire during the period, and the autologous thrombus suspension was injected. Balloon catheter was pulled out, the proximal heart segment of the right common carotid artery was ligated. Penicillin 4×105 U/each was given for 3 days after the operation to prevent infection.

Drug intervention

The daily dosage of the low dose group of Tongluo Decoction was calculated according to the conversion ratio of the 1:6.25 in the rats [5]. The dosage of the high dose group of Tongluo Decoction was 3 times that of the low dose group of Tongluo Decoction. Tongxinluo capsule (Shijiazhuang Yiling pharmaceutical Limited by Share Ltd) uses 9grains/day dose, dissolve it in double steamed water and intragastric gavage. Tongxinluo capsule is purchased from Hui Ren Tang Pharmaceutical Company and its specification is 0.26g/ granules. The rats of each group were given the corresponding drug by intragastric gavage for 12 days. During the test, 3 rats died in each of the model group, low dose group of Tongluo Decoction, high dose group of Tongluo Decoction and Tongxinluo group during the modeling process, and 1 died in Tongxinluo group after gavage.

Collection of heart specimens

After the drug intervention, all rats were sacrificed by cervical dislocation under anesthesia by intraperitoneally injected 0.4% sodium pentobarbital solution 1ml per 100g body weight. Then rat heart was collected. The apex of heart was fixed in 4% polycondensation formaldehyde solution. After dehydration and paraffin embedded, 5μm consecutive paraffin sections were used to HE and other staining. The base of the heart was immediately placed in a pre-freezing storage tube, stored at liquid nitrogen, and used to detect cardiomyocyte apoptosis protein by Western Blot.

HE and HBFP staining of rat myocardium

After the apex staining of heart paraffin section of rats in each group with HE and HBFP, the staining sections were observed by three researchers under 400× and 100× microscope respectively to calculate the microembolization vessel count ratio, ischemic myocardial area ratio.

Detection of cardiomyocyte apoptosis by TUNEL

The pathological tissue section of the rat in each group was treated with anti-shedding. According to the TUNEL instructions (Boster Co., Ltd., Wuhan) to stain. The number of cardiomyocyte apoptosis and the number of total cells under the microscope were observed by three researchers under 400× microscope, and the apoptosis rate of myocardial cells was calculated and the apoptosis level of cardiac myocytes was evaluated. Apoptosis rate (%)=(the number of apoptotic cells/the total cell number under microscope)×100.

Western Blot was used to detect the expression of cardiomyocyte apopt-osis proteins

To extract the protein of myocardial tissue, according to the instructions of the kit (Solarbio Science and Technology Co., Ltd. Beijing). The OD value was measured, and the standard protein curve was drawn. Then calculating the protein concentration. Prepare 12% separation glue and 5% concentration glue, 160 V constant pressure electrophoresis 100min, and PVDF membrane was then transferred, followed by incubation for 2h with blocking buffer containing 5% Non-fat milk powder. Diluting and putting relevant primary antibodies, bcl2, bax, caspase3, and GAPDH respectively (Biosynthesis biotechnology Co., Ltd. Beijing), with gentle shaking overnight at 4. Afterwards, the membrane was incubated with secondary antibody(purchased from SAB) for 1h at room temperature, then washing and exposing.

Data statistics method

The SPSS 22.0 statistics software was used to analyze the data, and the measurement data were expressed with mean±standard deviation (x±s). Single factor variance( one-way ANOVA) was used in comparison of multiple groups. And P < 0.05 indicated that the difference was statistically significant.

Results

Quality control results of tongluo decoction

As shown in Figures 2(a)-2(f), the separation of the components to be tested is good and has no interference with other components. High performance liquid chromatography (HPLC) shows the peak appearance time of the calycosin glycoside standard and Tongluo Decoction for test sample was 15.0±0.5 min, while the paeoniflorin standard and Tongluo Decoction for test sample was 9.0±0.5 min, and the ginsenoside Rb1 standard and Tongluo Decoction was 20.0±0.5 min, and the effective components of three herbs are compared with their respective standard products, some impurity peaks appeared. However, the separation efficiency of the effective components of the three herbs were not affected. The above results indicated that the effective components of Tongluo Decoction contained of calycosin glycoside, paeoniflorin and ginsenoside Rb1. The results showed that the effective components of Tongluo Decoction included calycosin-7-glucoside, paeoniflorin and ginsenoside Rb1, and the quality of the decoction was stable and could be used for the follow-up drug intervention test.

Figure 2:

a) High performance liquid chromatography of Tongluo Decoction, calycosin-7-glucoside standard.

b) High performance liquid chromatography of Tongluo Decoction. A calycosin-7-glucoside standard, Tongluo Decoction, calycosin-7-glucoside.

c) High performance liquid chromatography of Tongluo Decoction,paeoniflorin standard.

d) High performance liquid chromatography of Tongluo Decoction, Tongluo Decoction, 1 is paeoniflorin.

e) High performance liquid chromatography of Tongluo Decoction, ginsenoside Rb1 standard.

f) High performance liquid chromatography of Tongluo Decoction, Tongluo Decoction, 1 is ginsenoside Rb1.

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HE staining results of rat myocardium

As shown in Figures 3(a)-3(f), the microembolus were not found in the microvessels of the coronary artery in the blank group. A large number of microembolus were found in the coronary microvessels in the model group, and around the microembolus there were inflammatory cell aggregation. Some of microembolus were found on the low dose group of Tongluo Decoction, the high dose group of Tongluo Decoction, and the Tongxinluo group in the coronary microvessel. The positive microembolization vessels count ratio (PMVR) in the model group was significantly higher than that in the control group (P < 0.05). Compared with the model group, the low dose group of Tongluo Decoction, the high dose group of Tongluo Decoction and the Tongxinluo group were significantly lower than those in the model group (P < 0.05). Compared with the Tongxinluo group, the PMVR in the Tongluo Decoction low dose group was increased while the Tongluo Decoction high dose group was decreased(P > 0.05). The PMVR of high dose group of Tongluo Decoction was lower than that in the low dose group of Tongluo Decoction (P < 0.05). (Figures 4(a)-4(f)).

Figure 3: Comparison of HE staining of myocardial positive microembolic blood vessels of rats in each group(400×). A blank group, B model group, C TLD(LD) group, D TLD(HD) group, E TXL group. F Comparison of HE staining of myocardial positive microembolic blood vessels of rats in each group. (▲)P<0.05, versus model group; (★)P<0.05, TLD(LD) group versus TLD(HD) group. PMVR:Positive microembolization vessel count ratio.

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Figure 4: Comparison of HBFP staining of ischemic myocardium of rats in each group(100×). A blank group, B model group, C TLD(LD) group, D TLD(HD) group, E TXL group, F Comparison of HBFP staining of ischemic myocardium of rats in each group. (▲)P<0.05, versus model group. IMAR:Ischemic myocardial area ratio.

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HBFP staining results of ischemic myocardium

In Figures 5(a)-5(f), almost no red myocardium tissues was found in the blank group. A large number of red myocardium tissues were found in the model group. Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group found some red myocardium tissues. Compared with the blank group, the ratio of ischemic myocardial area ratio in the model group was significantly higher (P < 0.05). Compared with the model group, the ratio of ischemic myocardial area ratio in Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group decreased significantly (P < 0.05). Compared with Tongxinluo group, the ratio of ischemic myocardial area ratio(IMAR) in Tongluo Decoction low dose group, Tongluo Decoction high dose group was decreased, but the difference was not statistically significant (P > 0.05) .

Figure 5: Comparison of TUNEL staining(400×)and apoptosis rate of myocardial cells in each group of rats. A blank group, B model group, C TLD(LD) group, D TLD(HD) group, E TXL group. F Apoptosis rates of cardiomyocytes in TUNEL staining groups were compared, (▲)P<0.05, versus model group; (#)P<0.05, TLD(LD) group versus TXL group; (★)P>0.05, TLD(HD) group versus TXL group. CAR: cardiomyocyte apoptosis ratio.

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Detection of cardiomyocyte apoptosis by TUNEL

As shown in Figure 6, TUNEL staining showed that the normal nuclei were pale blue, the apoptotic nuclei were tan, nuclear chromatin was concentrated, and the nuclei were broken into unequal nucleus fragments, accompanied by the formation of apoptotic bodies. There were almost no tan nuclei in the control group, and a number of tan nuclei in the model group. Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group have some tan nuclei. The apoptosis rate of myocardial cells in the model group was significantly higher than that in the control group (P < 0.05). Compared with the model group, the cardiomyocyte apoptosis rate in Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group decreased significantly (P < 0.05). Compared with Tongxinluo group, the decrease of cardiomyocyte apoptosis rate in Tongluo Decoction low dose group was small (P < 0.05) , but the decrease of cardiomyocyte apoptosis rate in Tongluo Decoction high dose group was much more (P > 0.05).

Figure 6: Western Blot detection of bcl-2、bax、caspase-3 protein expression in cardiac myocytes.

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Western Blot detect the expression of Bcl-2, Bax and caspase-3

Protein in Cardiac Myocytes

As shown in Figures 3(a)-3(f)) and (Table 2), compared with the control group, the expression of Bcl-2 protein and bcl-2/bax of the model group were decreased, the expression of Bax and Caspase-3 in the model group were significantly increased (P < 0.05). Compared with the model group, the expression of Bcl-2 protein, bcl-2/bax were increased and the expression of Bax and Caspase-3 were decreased in the Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group (P < 0.05). Compared with Tongxinluo group, the expression of Bcl-2 protein, bcl-2/bax increased (P < 0.05), the expression of Bax and caspase-3 protein decreased in the Tongluo Decoction low dose group and the Tongluo Decoction high dose group (P > 0.05). These results indicate that the coronary microembolization(CME) can induce cardiomyocyte apoptosis, and Tongluo Decoction and Tongxinluo can inhibit cardiomyocyte apoptosis.

Table 2: The results of bcl-2/bax ratio in each group of rats (x ± s ).

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Note: Comparison with control group.

aP﹤0.05; Comparing with model group.

bP﹤0.05; Comparing with Tongxinluo group, cP﹤0.05.

Discussion

CME is an common complication in the interventional therapy of coronary heart disease. It is one of the important reasons for the occurrence of “no reflow” and “slow flow” of coronary artery. It is an important factor of poor prognosis and even death in some patients after PCI. The secondary myocardial apoptosis and necrotic myocardium irreversible injury are independent predictors of no reflow and poor prognosis. Research shows [4] that a stable, reliable and economical model of coronary arteria microembolism can be established by injecting autologous thrombus to the aortic root of rat through the right common carotid artery. In this study, we followed this method and established the rat CME model successfully. After the drug intervention 12 days, we found that both Tongluo Decoction and Tongxinluo could contribute to the narrowing of the microembolus, promote the blood circulation of the coronary microembolic vessels and improve the condition of myocardial ischemia. Tongluo Decoction is composed of many kinds of Chinese medicinal materials according to the rule of monarch(Jun), minister(Chen), assistant(Zuo) and guide(Shi). It has the effects of benefiting qi for activating blood circulation and disperse blood stasis and dredge collateral circulation. Among this Chinese medicine compound, Astragali Radix(Huangqi) as the monarch, compatible with Radix ginseng Rubra (Hongshen) can tonify Qi of spleen and Lung significantly. It made QI and blood own a recourse to metaplasia. Compatibility of Radix Paeonia Rubra (Chishao) have an effect on blood stasis runs and relieve pain, cooling blood and subsidence of a swelling. Assistance of Radix Bupleuri(Chaihu), Rhizoma Cimicifugae(Shengma), Radix Platycodonis(Jiegeng) for lifting Yangqi and carrying medicine upgoing. Qi running leads to blood circulation. Then add Fructus Corni(Shanyurou) to nourish the Yin of liver and kidney. Radix Glycyrrhizae(Gancao) as guide plays an harmonization of all drugs role in the compound. All drug compatibility, reflect a efficacy of tonifying qi and yin and promoting blood circulation to remove meridian obstruction. Zhang Zhenguo and other studies [6] found that Tongluo Decoction could inhibit the pathological process of coronary microembolism, reduce myocardial damage, inhibit the expression of inflammatory factors and promote the role of microembolic vascular recanalization.

Apoptosis is an active and orderly death process, which is produced by the body in the physiological and pathological conditions to maintain the homeostasis of its own internal environment [7]. Studies have shown that apoptosis is one of the possible mechanisms of ventricular dysfunction induced by coronary microembolization [8]. Anti apoptotic therapy can significantly inhibit the apoptosis of cardiomyocytes after CME in rats [9-11]. Studys showed that Tongxinluo capsule could inhibit cardiomyocyte apoptosis [12, 13]. In our study, Tongxinluo was used as a positive control group to further study the mechanism of Tongluo Decoction from the perspective of apoptosis. Mitochondria mediated apoptosis pathway is one of the most important apoptotic pathways. Numerous studies have shown [14-16] that inhibition of mitochondrial mediated apoptosis plays an important role in improving CME induced myocardial damage and cardiac dysfunction. The regulation of mitochondrial apoptosis is mainly mediated by the regulation of Bcl-2 family proteins [17, 18]. After the destruction of mitochondria, the release of cytochrome C increased. Under the regulation of Bcl-2 family protein, the release of cytochrome C was induced by anti apoptotic members and inducing apoptotic members, eventually causing the activation of Caspase-3, resulting in the apoptosis [19]. Cysteinyl aspartate specific protease (caspase) is the main effector factor of apoptosis.

Wang JiangYou and other studies [20] showed that increased the expression of Caspase-3 in rat cardiomyocytes after CME, and pretreatment with atorvastatin could downregulate the expression of Caspase-3. Liu Tao and other studies [21] found that after CME bcl-2 expression decreased, Bax and Caspase-3 expression increased, silence LOX-1 can reverse Bcl-2, Bax, caspase-3 protein expression. Bcl-2 can inhibit apoptosis, while Bax can promote apoptosis [22]. The ratio of Bcl-2/Bax is an important parameter of mitochondrial signaling pathway, and the ratio between them is one of the important causes of apoptosis [23, 24] Our study showed that the apoptosis rate of myocardial cells in the CME model group was significantly increased. The expression of Bcl-2 protein, bcl-2/bax were decreased and the expression of Bax and Caspase-3 were significantly increased in the model group. It was indicated that CME induced the cardiomyocytes apoptosis. The apoptosis rate of cardiac myocytes in Tongluo Decoction low dose group, Tongluo Decoction high dose group and Tongxinluo group was significantly lower than that of model group (P < 0.05), and the expression of Bcl-2 protein and bcl-2/bax increased, and the expression of Bax and caspase-3 protein decreased (P < 0.05). It indicates that Tongluo Decoction and Tongxinluo capsule can inhibit the cardiomyocytes apoptosis of rat after CME. Compared with Tongxinluo group, the degree of decrease on cardiomyocyte apoptosis rate in Tongluo Decoction low dose group was lower (P < 0.05) while Tongluo Decoction high dose group was higher (P > 0.05). The results of Western Blot showed that, compared with Tongxinluo group, the expression of Bcl-2 protein, bcl-2/bax increased (P < 0.05), the expression of Bax and caspase-3 protein decreased in the Tongluo Decoction low dose group and the Tongluo Decoction high dose group (P > 0.05). It shows that Tongluo Decoction is almost equivalent to Tongxinluo capsule in the treatment of CME, which can inhibit the apoptosis of myocardial cells of rats after CME, and its mechanism may be related to the blocking of mitochondrial apoptosis pathway.

Conclusion

Tongluo Decoction may inhibit the cardiomyocytes apoptosis of CME rats by blocking mitochondrial apoptosis pathway and protect their myocardium.

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Tuesday, September 8, 2020

Lupine Publishers | The Effect of Quran Vocalizations on Pain Relief in Neonates During Treatment Procedures

Lupine Publishers | Open access Journal of Complimentary and Alternative Medicine 



Pain is one of the most common human problems that has been experienced more or less in all people but the symptoms of it are usually different in different ages [1]. One of the most common misconceptions is that infants do not feel pain because their nervous system has not developed enough. No longer is the experience of pain painful and harmful for infants because they lack memories of pain [2]. Recent research has provided ample evidence that infants, even preterm infants, have a more mature central nervous system than might be thought. The onset of neural pathways myelinated in the fetus is during the second and third trimesters of the fetus, but may begin earlier. Fine or non-myelinated fibers also transmit the stimulation of pain, but only slower the rate of transmission [3]. Stress from pain, even brief and brief, can lead to problems such as (hypermetabolic status, cardiac arrhythmias) and even complications and delay in neonatal recovery. In infants, behavioral and physiological symptoms of pain are the only way to express it. For this reason, less research has been done to try and quantify neonatal pain and to facilitate the identification of pain intensity by nurses [2]. In study by Poznanski, infants responded to circumcision ISSN: 2644-1217 DOI: 10.32474/OAJCAM.2020.02.000137 Abstract Introduction: Pain is a destructive one and remains in the mind of the child suffering from it Pain management in newborns through pharmaceutical and complementary medicine, including Quran recitation is done. Hence the aim of this study was to effect of Quran vocalizations on pain relief in neonates during treatment procedures in Imam Hossain hospital of Shahroud in 2014. Methods and Materials: This cross-sectional study that compared with study of Quran audio impact in reducing neonatal pain during medical procedures performed. Sample size was estimated to be about 120, and this number of the subjects was selected in six months period. The data were recorded in check list prepared according to also, theory of development and Lawrence s NeonateInfant pain scale [NIPS]. Results: In the intervention group, 28 patients (46.7%) were female and the rest were male while 29 patients in the control group (48.3%) were male and the rest female that were not significant differences. The results of this study showed that the experimental group, the mean number of breathing, crying, movements of arms and legs as well as the mean state of consciousness at the end of treatment compared to baseline that this differences were significant (p<0.001), while in the control group this difference was not seen. So the results showed that the highest impact Quran was the end of the procedure started 10 minutes to reach its maximum impact. Conclusion: According to the results can be obtained from more appropriate to examine the behavioral pain symptoms of physiological performance of this tool to promote and Quran recitation to reduce pain in newborns help, but it is necessary to determine the duration of the sound of heavenly research did more. Keywords: Pain; Neonatal; Quran vocalizations; Behavioral sign’s; Treatment procedure Citation: Pouneh Z, Maryam F, Elahe E, Elahe Y, Mohammad B S. The Effect of Quran Vocalizations on Pain Relief in Neonates During Treatment Procedures. Open Acc J Comp & Alt Med 2(3) - 2020. OAJCAM.MS.ID.000137. DOI: 10.32474/OAJCAM.2020.02.000137. Open Acc J Comp & Alt Med Volume 2 - Issue 3 Copyrights @ Mohammad Bagher Sohrabi, et al. 153 pain with screams and limb movements [4]. Other studies have also shown that in neonates, pain reactions can occur in the form of leg pulling, upper and lower limb flexion, facial tearing, and crying [2, 4]. Also in Kuner & Fuller study, it was found that nurses’ work experience and experience are directly related to their diagnosis and rating of neonatal pain [5]. Nurses’ experience and skills, especially those working in the neonatal ward, are vital. It was also found that these pain symptoms in infants can be altered by altering the vital signs of their infants, so that Beaver has shown in a study that elevated heart rate and blood pressure and is decreasing in blood oxygen levels indicate pre-term neonatal pain [6]. Whichever of these diagnostic symptoms is present, neonatal pain should be controlled as soon as possible after diagnosis. Different methods such as drug therapy, massage therapy and complementary medicine are used to control neonatal pain. One of the most important methods of complementary medicine is music and vowel therapy and one of the most beautiful sounds is the beautiful sound of reciting the verses of the Holy Quran with its own order which is considered as one of the most magnificent aspects of the Holy Quran miracle [7]. In the verses of the Holy Quran, the letters are uniquely aligned, so that when they hear, there is no rhythm or weight, no rhythm or weight, no rhythmic rhythm is heard, so that no text is loud Reading, like the Holy Quran, is not compact and effective [8]. In Iran, many studies have been done on the effect of the Quran’s sound on patients in various fields and positive results have been obtained. For example, the results of the study [7], to investigate the effect of the Holy Quran on vital signs of patients before cardiac surgery showed a significant difference in heart rate and respiratory rate in the intervention group compared to the control group [9]. In Khatoni study to investigate the effect of the holy Quran on the level of anxiety in patients admitted to ICU in one of Tehran hospitals, Khatoni concluded that listening to the Holy Quran may reduce anxiety in patients [10]. Regarding the necessity of neonatal pain control when performing medical and therapeutic procedures to prevent neurobehavioral complications and given the positive effects of Quran phonics on the control of physical and psychological problems in a number of patients and also because there has been no study on the effect of the Holy Quran on pain control during neonatal treatment procedures, the aim of this study was to effect of Quran vocalizations on pain relief in neonates during treatment procedures in Imam Hossain hospital of Shahroud in 2014. Materials and Methods This study was a case-control study that was conducted in the first half of 2014. The study population included 120 neonates admitted to the neonatal ward of Imam Hossein hospital in Shahroud. In this study continuous sampling method was used. The researcher, after obtaining the necessary authorization for the research from Shahroud University of Medical Sciences, was present in the study environment for several consecutive days and selected samples from the neonates who were eligible to participate in the study. A written letter from parents was included in the study. Samples were randomly divided into two groups using four randomized blocks. The children were divided into two equal case groups (Quran voice broadcasting) and control groups (without Quran voice broadcasting). Inclusion criteria for neonates included: Iranian nationality, fetal age 34-38 weeks at birth, weight over 2500 g, Apgar score of 7 and above at first and fifth minutes of birth, lying in bed, breast feeding, evidence of auditory system health and no history of severe response to sound stimulation in nursing reports, lack of intrauterine growth retardation, absence of anomalies and nervous system problems (hydrocephalus, microcephaly, meningo mycelium, intrahepatic rheumatoid arthritis, spina bifida, cerebral palsy), absence of acute disease (neonatal infection, asphyxia, severe hypoxia, intestinal necrosis, acute pulmonary disease), anemia and lack of sedative drugs such as phenobarbital and my mother had a history of addiction to drugs. Exclusion criteria included: Severe reaction to voice stimulation during intervention [including: hiccup symptoms, tilted mouth, eye squeeze, eye rolling, tongue twitching, finger opening, motor scrambling, crying, screaming and stuttering], abnormal physiological parameters such as heart rate greater than 200, reduction in arterial oxygen saturation were less than 80% during the intervention, and infant’s need for any medical or nursing or touch intervention during the study. For the infants of the case group while performing the medical procedures, the Quran voice transmission via A4TECH model EST2010 was used. The sound level of the audio player was determined in dBel by the sound level meter and under expert supervision. For the control group no Quranic sounds were broadcast. Before the intervention, the infant’s medical record was reviewed by the researcher and demographic information including variables such as type of delivery, date of birth, sex, gestational age, chronological age (number of days past the baby’s birth), birth weight, inclusion weight and minute Apgar The first and fifth were recorded in the data collection form. Then the neonate’s hearing was confirmed by observing the startle reflex and response to the acoustic stimulus and the baby’s weight was determined by digital scales. Before attaching the baby to the monitor, the researcher made sure that the baby received, changed, and needed no nutritional intervention and care during the next 40 minutes. Then, the hands were washed, the infant was laid back on the couch, and hair neutrodes were attached to the infant for evaluation of physiological indices. The oxygen saturation electrodes were mounted on the anterior and posterior surfaces of the foot and covered with carbon to increase the accuracy of the device and to prevent light effects. To record heart rate and respiratory rate, three electrodes were mounted on the infant’s chest in a triangular fashion and fixed with anti-allergic adhesive to prevent displacement during physiological index recording. To reduce infant manipulation, the indices were measured continuously and only the information recorded at the desired time was used to calculate and compare differences between groups. Earphones were used to prevent the effects of sound on other neonates during audio playback. The handset was connected to the MP3 Player, the volume was controlled on the device, and then the handset was placed on the baby’s ear. After the baby was no longer Open Acc J Comp & Alt Med Volume 2 - Issue 3 Copyrights @ Mohammad Bagher Sohrabi, et al. Citation: Pouneh Z, Maryam F, Elahe E, Elahe Y, Mohammad B S. The Effect of Quran Vocalizations on Pain Relief in Neonates During Treatment Procedures. Open Acc J Comp & Alt Med 2(3) - 2020. OAJCAM.MS.ID.000137. DOI: 10.32474/OAJCAM.2020.02.000137. 154 in need of touch or manipulation, information recording began. Physiological responses were recorded every 10 minutes in three stages immediately before the intervention, during the intervention (10-20 minutes after the intervention) and 10 minutes after the intervention. The first stage of recording the infant’s physiological responses was performed just before the infant started and did not manipulate based on the numbers that the monitor displayed. Then, if the infant belonged to the intervention group, the Holy Qur’an’s voice would begin to be broadcast to him and he would continue to record physiological responses at 10-minute intervals. The Quran sound was transmitted to the intervention group for 20 minutes and at 20 minutes after recording the physiological responses, the sound player was switched off and the last recording was performed 10 minutes after the mute. The infants in the control group, like the intervention group, were attached to the monitor and their physiological responses were recorded every 10 minutes. In order to eliminate the confounding effect of headphones in the control group, infants were put on earphones, with the exception that no sound was delivered. Room temperature was maintained in the range of 27-28 °C. All infants in both groups were followed for 6 months during medical procedures including blood sampling, venipuncture, intramuscular injection, gastric catheterization, and cerebrospinal fluid (LP) ingestion. Instruments for measuring changes included neonatal balance, cardiac monitor, arterial oxygen saturation device, and continuous monitoring of experienced nurses during procedures. Simultaneous observation was used to avoid measurement error. Two trained colleagues were asked to simultaneously monitor the heart rate, respiratory rate, and oxygen saturation percentage at the desired time on the monitor and to record in separate questionnaires for each infant. The mean of these numbers was then used to report changes in each infant. Neonatal pain assessment tools have been used to assess behavioral symptoms of neonatal pain. This tool (Neonatal Infant Pain Scale) consists of 6 options that only have zero, one, and two scoring options, and five options, namely face states, respiratory patterns, hand movements, leg movements and level of consciousness, with scores of zero and one. The score range will be between zero and seven. These changes are recorded in the specific form of each baby. After collecting, the isolates were entered into SPSS 16 software and analyzed by statistical tests. In case of nonnormality of variables, Mann-Whitney test was used to compare the means between the two groups and Wilcoxon was used to compare means within groups. In normal distribution, independent t-test was used to compare the means between the two groups. Parents of infants who participated in the study were provided with complete information about the research and its aims and importance. Parents were assured that participation in the study was voluntary and not participating in the study would not affect their infant care services and information, and that information would be kept confidential. If parents wish to participate in the study, a consent form is provided for them to read and sign. Results Of the 120 neonates who were randomly divided into two equal groups of case and control, the demographic and contextual information (gender, type of delivery, neonatal apgar score at 1 and 5 minutes at birth, fetal age, age, birth weight and neonatal weight at the time of study) no significant difference was observed between two groups. These results are shown in Table 1. Based on independent t-test in the intervention group, mean difference in breathing rate, crying intensity, hand and foot movements and also in Mann-Whitney test mean difference in consciousness status at the end of the intervention was significantly different from the baseline level (p <0.001). This difference was not observed in the control group. The results are shown in Table 2. So the results also showed that the maximum effect of the Quranic phoneme started at 10 min and reached its maximum effect at the end of the procedure (min of 20). Table 1: Demographic characteristics of neonates in two groups at baseline. Variable Intervention group (n=60) Control group Gender (girls / boys) 32/28 31/29 0.213 Type of Delivery (Normal / Cesarean) 41/19 39/21 0.178 Apgar minute 1 8.17±0.45 8.23±0.59 0.235 Apgar minute 5 9.41±0.75 9.35±0.68 0.088 Fetal Age (Week) 33.28±5.12 34.08±4.88 0.109 Calendar Age (days) 3.85±4.25 4.10±4.30 0.075 Birth Weight (g) 2750±350 2690±438 0.146 Study Weight (g) 2990±523 2630±450 0.144 Table 2: Comparison of mean score of physiological variables and mean state of consciousness at the end and baseline in the intervention and control groups. Points Intervention group (n=60) Control group Before intervention 6.4±1.5 6.2±1.8 0.452 After intervention 3.5±3.8 5.7±0.5 0.001 Discussion The results of this study showed that there was a significant difference between the two groups in terms of changes in physiological symptoms before and after the intervention. Among the physiological symptoms, the most common symptoms were facial flares. Seymour et al., in their study suggested that nurses were more concerned with sweating and discoloration than physiological symptoms among infants [11]. The most commonly observed behavioral signs are facial changes and then changes in respiratory pattern and crying. This indicates that during behavioral procedures, changing facial expressions, crying, and changing the respiratory pattern are key clues to assess neonatal pain. Many studies have been done to evaluate the pain of infants and also how nurses and parents have used and interpreted the pain, which have yielded similar results. One of these studies is Bore et al., Which has been conducted to investigate neonatal reactions to painful stimuli. Results showed that preterm infants use more physiological symptoms, especially increasing of heart Citation: Pouneh Z, Maryam F, Elahe E, Elahe Y, Mohammad B S. The Effect of Quran Vocalizations on Pain Relief in Neonates During Treatment Procedures. Open Acc J Comp & Alt Med 2(3) - 2020. OAJCAM.MS.ID.000137. DOI: 10.32474/OAJCAM.2020.02.000137. Open Acc J Comp & Alt Med Volume 2 - Issue 3 Copyrights @ Mohammad Bagher Sohrabi, et al. 155 rate, respiratory rate and blood resure, and term infants use behavioral symptoms such as crying and facial changes to express pain [6]. In Jones’ study, restlessness, crying, and frustration were reported as the most behavioral symptoms of pain [12]. In their study, Throbbed and Howard stated that nurses often identified restlessness, frowning, crying, hypertension, and respiratory distress as both behavioral symptoms in term and preterm infants [2]. In both of these studies, a pain assessment tool was used, and it is noteworthy that although in the Howard and Thurber study, the neonatal intensive care unit nurses used more equipments than the Jones research, similar symptoms were observed. And the other point is that out of the selected symptoms, only the heart rate monitor needs a special device. These results suggest that nurses with the least equipment needed can use their observational skills to assess neonatal pain. Lawrence states that the standard form of infant pain assessment has high internal validity and can be used to demonstrate the severity of infant pain by referring to behavioral symptoms during the procedure and even after the procedure. The results of the present study also showed a decrease in physiological stress in the intervention group compared to the control group. While Coleman and Pratt found in a study that playing music in premature infants increased the rate of breathing and decreased heart rate [12]. A study by Calabro et al., showed that music had no significant effect on neonatal respiratory rate and heart rate [13]. According to the study by Arnon et al., The mean heart rate in the live music group was significantly lower than the two recorded and control groups. They concluded that playing live music had a greater impact on the physiological and behavioral responses of preterm infants than recorded music [14]. In a study conducted by Majidi to investigate the effect of the holy Quran on the level of stress in patients, the results showed a decrease in breathing and pulse rate after the intervention in the holy Quran compared to the control group [15]. The present study is consistent. The findings of this study are in agreement with the study of Collins, Kak and Chaw. In the study of Chaw et al., Neonates who received music therapy during endotracheal suctioning had higher oxygen saturation levels than the control group [16]. In the Cassidy and Stendley study, in neonates receiving lullaby music, the arterial oxygen saturation level was significantly higher than the control group [17-20], however, Calabrera et al., did not report a significant difference in the effect of music on the level of saturated oxygen saturation [13], which is different from the results of the present study. Also in a study by Neil et al., the effect of music and sound recorded in neonatal intensive care units was compared, with no difference in arterial oxygen saturation [2]. The differences in the results of studies that examined the effect of music on preterm infants may be due to differences in the number of samples, the use of different types of music in different ways, the effects of confounding variables, different methods of data collection, and so on. So far, no study has been done on the effect of the holy Quran on infants, but the results of this study are in line with the studies on the effect of the holy Quran on the level of anxiety and physiological responses of the patients. For example, the results of a study by Nasrabadi showed that listening to the Qur’an reduces the severity of pain and its associated behavioral symptoms in patients after abdominal surgery [17]. In another study by Majidi to investigate the effect of Quran phonation on the level of anxiety in patients admitted for angiography, the results showed a decrease in personality and situational anxiety, as well as a decrease in systolic and diastolic blood pressure, and pulse and respiratory rate in the Quran group [7]. In a study by Elder Abadi et al., to investigate the effect of the holy Quran on vital signs of patients before cardiac surgery, there was a significant difference in heart rate and respiratory rate between the intervention and control groups. They concluded that listening to the Holy Quran recalls stress- dependent physiological responses in patients [9]. Despite the contradictory findings regarding the effect of music on the physiological responses of preterm infants, the results of all studies in Iran show the positive effect of the holy Quran on reducing pain and anxiety in adults. Since most of these studies used the verses of surah Yusuf, so according to the expert advisor, verses 7-23 of surah Yusuf were chosen for this study by the voice of Master Mohammad Shayta Anwar. Undoubtedly, the use of other verses of the holy Qur’an can pave the way for further research into the effect of this heavenly calling. Music and tunes reduce the activity of the neuroendocrine and sympathetic systems and allow the parasympathetic to overcome the sympathetic, resulting in relaxation and sleep, decreased heart rate, deep breathing regulation, relaxation of the muscles and induction. The state of consciousness is calming. The neuroendocrine system is affected by music in three ways: 1-The secretion of endorphins from the pituitary gland which relieves pain and affects mood and memory. 2- Decreased secretion of catecholamines, such as epinephrine and epinephrine light from the adrenal gland, which decrease heart rate, metabolism, blood pressure, free fatty acids and oxygen consumption. 3- Decrease in adrenal corticosteroids that are released during stress [17]. Another mechanism for how music works is that music may distract the infant from distracting noise and thereby reduce the baby’s stress responses. This response has been suggested as a tool to relax the central nervous system and reduce stress responses [7]. Finally, it can be concluded that the sound of the Holy Quran may have reduced stress in neonates with the mechanism of decreased sympathetic activity and secretion of catecholamines and increased parasympathetic activity and endorphins secretion. Conclusion According to the results of this study, behavioral and physiologic observable symptoms can be used to assess neonatal pain. Of course, health care providers and nurses may also pay less attention to physiological symptoms than behavioral symptoms. But as the makers and users of pain assessment tools state, the combinations of a behavioral pain assessment form with physiological symptoms of pain increases its content validity. Since there was no negative effect on infants’ physiological parameters in the intervention group, so further research can be done to reduce stress and improve physiological status of neonates in hospitalized infants was used Open Acc J Comp & Alt Med Volume 2 - Issue 3 Copyrights @ Mohammad Bagher Sohrabi, et al. Citation: Pouneh Z, Maryam F, Elahe E, Elahe Y, Mohammad B S. The Effect of Quran Vocalizations on Pain Relief in Neonates During Treatment Procedures. Open Acc J Comp & Alt Med 2(3) - 2020. OAJCAM.MS.ID.000137. DOI: 10.32474/OAJCAM.2020.02.000137. 156 in the hospital. Limitations of this study include the inability to measure the intensity of ambient noises, the lack of a monitor with a printer, and the presence of unwanted ambient noises. 


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