The Effect of Aerobic Training With the Consumption of Probiotics on the Myelination of Nerve Fibers in Cuprizone-induced Demyelination Mouse Model of Multiple Sclerosis.

IF 1 Q4 NEUROSCIENCES Basic and Clinical Neuroscience Pub Date : 2023-01-01 DOI:10.32598/bcn.2022.3104.1
Donya Sajedi, Ramin Shabani, Alireza Elmieh
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Abstract

Introduction: Extensive human and animal research shows that exercise has beneficial effects on multiple clinical outcomes for patients suffering from multiple sclerosis (MS). This research was conducted to examine the effect of aerobic exercise with probiotic consumption on the myelination of nerve fibers in a cuprizone-induced demyelination mouse model of MS.

Methods: Rats exposed to cuprizone (CPZ) for 13 weeks were subjected to motor and balance tests in week 5. They (5 people in each group) were assigned to five groups of control (C), MS, MS with exercise (MS+Exe), MS with probiotic (MS+Pro), and MS with probiotic and exercise (MS+Pro+Exe) randomly. The exercise groups conducted aerobic exercises 5 days a week for 60 days. The rats received probiotics by gavage. Performance and balance tests were repeated when the eight-week protocol of exercise and probiotic consumption was finished. One day after these interventions, they were sacrificed to undergo biochemical and molecular biology assays.

Results: The results showed that Myelin basic protein (MBP) was increased in the MS+Pro+Exe, MS+Pro, and MS+Exe compared to the MS group (P<0.05).The nestin mRNA showed an increase in MS+Pro+Exe, MS+Exe, and MS+Pro groups compared to the MS group, but this increase was not significant in MS+Pro+Exe and MS+Exe groups compared to the control and MS groups (P>0.05).

Conclusion: According to the results, lifestyle interventions can effectively alleviate demyelinating-inflammatory processes that happen in the brains of MS patients.

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消耗益生菌的有氧训练对Cuprizone诱导的多发性硬化脱髓鞘小鼠模型神经纤维髓鞘形成的影响。
引言:广泛的人类和动物研究表明,运动对多发性硬化症(MS)患者的多种临床结果有有益影响。本研究旨在检测摄入益生菌的有氧运动对铜硫酮诱导的MS脱髓鞘小鼠模型中神经纤维髓鞘形成的影响。方法:暴露于铜硫酮(CPZ)13周的大鼠在第5周接受运动和平衡测试。他们(每组5人)被随机分为五组,即对照组(C)、MS、MS伴运动组(MS+Exe)、MS伴益生菌组(MS+Pro)和MS伴益生菌伴运动组。运动组每周进行5天有氧运动,持续60天。大鼠通过灌胃方式接受益生菌。在完成为期八周的运动和益生菌摄入方案后,重复进行性能和平衡测试。在这些干预措施后的一天,将它们处死,进行生化和分子生物学测定。结果:与MS组相比,MS+Pro+Exe、MS+Pro和MS+Exe组的髓鞘碱性蛋白(MBP)升高(P0.05)。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
64
审稿时长
4 weeks
期刊介绍: BCN is an international multidisciplinary journal that publishes editorials, original full-length research articles, short communications, reviews, methodological papers, commentaries, perspectives and “news and reports” in the broad fields of developmental, molecular, cellular, system, computational, behavioral, cognitive, and clinical neuroscience. No area in the neural related sciences is excluded from consideration, although priority is given to studies that provide applied insights into the functioning of the nervous system. BCN aims to advance our understanding of organization and function of the nervous system in health and disease, thereby improving the diagnosis and treatment of neural-related disorders. Manuscripts submitted to BCN should describe novel results generated by experiments that were guided by clearly defined aims or hypotheses. BCN aims to provide serious ties in interdisciplinary communication, accessibility to a broad readership inside Iran and the region and also in all other international academic sites, effective peer review process, and independence from all possible non-scientific interests. BCN also tries to empower national, regional and international collaborative networks in the field of neuroscience in Iran, Middle East, Central Asia and North Africa and to be the voice of the Iranian and regional neuroscience community in the world of neuroscientists. In this way, the journal encourages submission of editorials, review papers, commentaries, methodological notes and perspectives that address this scope.
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