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对肠道微生物群和微小RNA的理解可能有助于开发针对代谢紊乱和精神疾病的创新治疗策略。

Comprehension of gut microbiota and microRNAs may contribute to the development of innovative treatment tactics against metabolic disorders and psychiatric disorders.

作者信息

Nakashima Moeka, Suga Naoko, Fukumoto Akari, Yoshikawa Sayuri, Matsuda Satoru

机构信息

Department of Food Science and Nutrition, Nara Women's University Kita-Uoya Nishimachi, Nara 630-8506, Japan.

出版信息

Int J Physiol Pathophysiol Pharmacol. 2024 Dec 25;16(6):111-125. doi: 10.62347/WAZH2090. eCollection 2024.

Abstract

Metabolic syndrome is a group of pathological disorders increasing the risk of serious diseases including cardiovascular disease, stroke, type 2 diabetes. Global widespread of the metabolic syndrome has put a heavy social burden. Interestingly, a crucial link between the metabolic syndrome and a psychiatric disorder may frequently coexist, in which certain shared mechanisms might play a role for the pathogenesis. In fact, some microRNAs (miRNAs) have been detected in the overlap pathology, suggesting a common molecular mechanism for the development of both disorders. Subsequent studies have revealed that these miRNAs and several metabolites of gut microbiota such as short chain fatty acids (SCFAs) might be involved in the development of both disorders, in which the association between gut and brain might play key roles with engram memory for the modulation of immune cells. Additionally, the correlation between brain and immunity might also influence the development of several diseases/disorders including metabolic syndrome. Brain could possess several inflammatory responses as an information of pathological images termed engrams. In other words, preservation of the engram memory might be achieved by a meta-plasticity mechanism that shapes the alteration of neuron linkages for the development of immune-related diseases. Therefore, it might be rational that metabolic syndrome and psychiatric disorders may belong to a group of immune-related diseases. Disrupting in gut microbiota may threaten the body homeostasis, leading to initiate a cascade of health problems. This concept may contribute to the development of superior therapeutic application with the usage of some functional components in food against metabolic and psychiatric disorders. This paper reviews advances in understanding the regulatory mechanisms of miRNAs with the impact to gut, liver and brain, deliberating the probable therapeutic techniques against these disorders.

摘要

代谢综合征是一组会增加包括心血管疾病、中风、2型糖尿病等严重疾病风险的病理紊乱症。代谢综合征在全球范围内的广泛存在带来了沉重的社会负担。有趣的是,代谢综合征与精神障碍之间可能存在关键联系,二者常同时出现,某些共同机制可能在其发病过程中起作用。事实上,在重叠的病理过程中已检测到一些微小RNA(miRNA),这表明两种疾病的发展存在共同的分子机制。后续研究表明,这些miRNA以及肠道微生物群的几种代谢产物,如短链脂肪酸(SCFA),可能参与了这两种疾病的发展,其中肠道与大脑之间的关联可能通过记忆印迹对免疫细胞的调节发挥关键作用。此外,大脑与免疫之间的相关性也可能影响包括代谢综合征在内的多种疾病/紊乱的发展。大脑可能会产生几种炎症反应,作为称为记忆印迹的病理图像信息。换句话说,记忆印迹的保存可能是通过一种元可塑性机制实现的,这种机制塑造神经元连接的改变以发展免疫相关疾病。因此,代谢综合征和精神障碍可能属于一组免疫相关疾病,这一观点可能是合理的。肠道微生物群的破坏可能会威胁身体的稳态,从而引发一系列健康问题。这一概念可能有助于开发利用食品中的一些功能成分来对抗代谢和精神障碍的卓越治疗应用。本文综述了在理解miRNA对肠道、肝脏和大脑的调节机制方面取得的进展,探讨了针对这些疾病可能的治疗技术。

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