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Microbiota–gut–brain axis and its therapeutic applications in neurodegenerative diseases

肠-脑轴 微生物群 肠道菌群 神经退行性变 生物 神经科学 人体微生物群 小胶质细胞 疾病 免疫系统 免疫学 生物信息学 医学 炎症 病理
作者
Jian Sheng Loh,Wen Qi Mak,Li Tan,Chu Xin Ng,Hong Hao Chan,Shiau Hueh Yeow,Jhi Biau Foo,Yong Sze Ong,Chee Wun How,Kooi Yeong Khaw
出处
期刊:Signal Transduction and Targeted Therapy [Springer Nature]
卷期号:9 (1) 被引量:181
标识
DOI:10.1038/s41392-024-01743-1
摘要

Abstract The human gastrointestinal tract is populated with a diverse microbial community. The vast genetic and metabolic potential of the gut microbiome underpins its ubiquity in nearly every aspect of human biology, including health maintenance, development, aging, and disease. The advent of new sequencing technologies and culture-independent methods has allowed researchers to move beyond correlative studies toward mechanistic explorations to shed light on microbiome–host interactions. Evidence has unveiled the bidirectional communication between the gut microbiome and the central nervous system, referred to as the “microbiota–gut–brain axis”. The microbiota–gut–brain axis represents an important regulator of glial functions, making it an actionable target to ameliorate the development and progression of neurodegenerative diseases. In this review, we discuss the mechanisms of the microbiota–gut–brain axis in neurodegenerative diseases. As the gut microbiome provides essential cues to microglia, astrocytes, and oligodendrocytes, we examine the communications between gut microbiota and these glial cells during healthy states and neurodegenerative diseases. Subsequently, we discuss the mechanisms of the microbiota–gut–brain axis in neurodegenerative diseases using a metabolite-centric approach, while also examining the role of gut microbiota-related neurotransmitters and gut hormones. Next, we examine the potential of targeting the intestinal barrier, blood–brain barrier, meninges, and peripheral immune system to counteract glial dysfunction in neurodegeneration. Finally, we conclude by assessing the pre-clinical and clinical evidence of probiotics, prebiotics, and fecal microbiota transplantation in neurodegenerative diseases. A thorough comprehension of the microbiota–gut–brain axis will foster the development of effective therapeutic interventions for the management of neurodegenerative diseases.
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