揭开从肠道到大脑的旅程:解码帕金森病中神经变性与肠道的联系。

IF 4.1 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY ACS Chemical Neuroscience Pub Date : 2024-06-19 DOI:10.1021/acschemneuro.4c00293
Kritika Bhardwaj, Aditya A. Singh and Hemant Kumar*, 
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引用次数: 0

摘要

帕金森病是一种影响大脑多巴胺能系统的典型运动性疾病,一直被认为是大脑疾病,但现在人们对这一经典概念有了不同的看法,因为病理变化始于肠道,然后逐渐上移到大脑区域。肠道中的微生物在维持肠道生理功能方面起着至关重要的作用,从维持屏障的完整性到分泌微生物产物以维持健康的肠道状态。病理学随后改变了肠道微生物的正常组成,并造成有害影响,最终引发强烈的神经炎症和非运动症状以及特征性突触病,这是该病的病理标志。研究人员的首要目标是在独特而成熟的临床前模型中了解复杂的病理机制,以破译肠道病理究竟是如何产生中心效应的。我们总结了流行的观点和一些相反的看法,以及针对胃肠系统的治疗策略的简明步骤。
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Unveiling the Journey from the Gut to the Brain: Decoding Neurodegeneration–Gut Connection in Parkinson’s Disease

Parkinson’s disease, a classical motor disorder affecting the dopaminergic system of the brain, has been as a disease of the brain, but this classical notion has now been viewed differently as the pathology begins in the gut and then gradually moves up to the brain regions. The microorganisms in the gut play a critical role in maintaining the physiology of the gut from maintaining barrier integrity to secretion of microbial products that maintain a healthy gut state. The pathology subsequently alters the normal composition of gut microbes and causes deleterious effects that ultimately trigger strong neuroinflammation and nonmotor symptoms along with characteristic synucleopathy, a pathological hallmark of the disease. Understanding the complex pathomechanisms in distinct and established preclinical models is the primary goal of researchers to decipher how exactly gut pathology has a central effect; the quest has led to many answered and some open-ended questions for researchers. We summarize the popular opinions and some contrasting views, concise footsteps in the treatment strategies targeting the gastrointestinal system.

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来源期刊
ACS Chemical Neuroscience
ACS Chemical Neuroscience BIOCHEMISTRY & MOLECULAR BIOLOGY-CHEMISTRY, MEDICINAL
CiteScore
9.20
自引率
4.00%
发文量
323
审稿时长
1 months
期刊介绍: ACS Chemical Neuroscience publishes high-quality research articles and reviews that showcase chemical, quantitative biological, biophysical and bioengineering approaches to the understanding of the nervous system and to the development of new treatments for neurological disorders. Research in the journal focuses on aspects of chemical neurobiology and bio-neurochemistry such as the following: Neurotransmitters and receptors Neuropharmaceuticals and therapeutics Neural development—Plasticity, and degeneration Chemical, physical, and computational methods in neuroscience Neuronal diseases—basis, detection, and treatment Mechanism of aging, learning, memory and behavior Pain and sensory processing Neurotoxins Neuroscience-inspired bioengineering Development of methods in chemical neurobiology Neuroimaging agents and technologies Animal models for central nervous system diseases Behavioral research
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