1型糖尿病相关肠道微生物群的变化通过丁酸-MyD88途径影响小鼠的微胶质细胞极化,从而加重脑缺血损伤。

IF 4.6 2区 医学 Q1 NEUROSCIENCES Molecular Neurobiology Pub Date : 2025-03-01 Epub Date: 2024-09-26 DOI:10.1007/s12035-024-04514-9
Xianzhang Zeng, Can Ma, Wenchao Fu, Yongmei Xu, Rui Wang, Dan Liu, Lijuan Zhang, Narisu Hu, Dongmei Li, Wenzhi Li
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引用次数: 0

摘要

1 型糖尿病(T1D)患者罹患中风的风险明显升高,但 T1D 加剧缺血性中风的机制仍不清楚。本研究旨在探讨与 T1D 相关的肠道微生物群变化在加重缺血性中风中的作用及其内在机制。粪便 16SrRNA 测序表明,T1D 小鼠和移植 T1D 小鼠肠道微生物群的丁酸生产者 f_Erysipelotrichaceae 和 g_Allobaculum 的相对丰度较低,粪便中丁酸的含量也较低。在大脑中动脉闭塞(MCAO)后,这些小鼠的神经功能较差,炎症更严重,但缺血半影中髓系分化因子88(MyD88)的表达较高;此外,小胶质细胞倾向于向促炎型极化。给T1D小鼠饮用水中添加丁酸盐可减轻MCAO后的神经损伤。丁酸盐影响了BV2的反应和极化,并减少了缺氧-葡萄糖/复氧后通过MyD88产生的炎性细胞因子。通过移植 T1D 小鼠肠道微生物群,敲除大脑中的 MyD88 可缓解中风后小鼠的神经系统预后,并降低大脑中炎症细胞因子的浓度。T1D小鼠缺血性脑卒中后神经系统预后不佳和炎症反应加重的部分原因可能是肠道微生物群-丁酸-MyD88途径介导的微胶质细胞极化的差异。这些发现为减轻 T1D 小鼠缺血性中风后的神经损伤提供了新的思路和潜在的干预目标。
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Changes in Type 1 Diabetes-Associated Gut Microbiota Aggravate Brain Ischemia Injury by Affecting Microglial Polarization Via the Butyrate-MyD88 Pathway in Mice.

People with type 1 diabetes (T1D) have a significantly elevated risk of stroke, but the mechanism through which T1D worsens ischemic stroke remains unclear. This study was aimed at investigating the roles of T1D-associated changes in the gut microbiota in aggravating ischemic stroke and the underlying mechanism. Fecal 16SrRNA sequencing indicated that T1D mice and mice with transplantation of T1D mouse gut microbiota had lower relative abundance of butyric acid producers, f_Erysipelotrichaceae and g_Allobaculum, and lower content of butyric acid in feces. After middle cerebral artery occlusion (MCAO), these mice had poorer neurological outcomes and more severe inflammation, but higher expression of myeloid differentiation factor 88 (MyD88) in the ischemic penumbra; moreover, the microglia were inclined to polarize toward the pro-inflammatory type. Administration of butyrate to T1D mice in the drinking water alleviated the neurological damage after MCAO. Butyrate influenced the response and polarization of BV2 and decreased the production of inflammatory cytokines via MyD88 after oxygen-glucose deprivation/reoxygenation. Knocking down MyD88 in the brain alleviated neurological outcomes and decreased the concentrations of inflammatory cytokines in the brain after stroke in mice with transplantation of T1D mouse gut microbiota. Poor neurological outcomes and aggravated inflammatory responses of T1D mice after ischemic stroke may be partly due to differences in microglial polarization mediated by the gut microbiota-butyrate-MyD88 pathway. These findings provide new ideas and potential intervention targets for alleviating neurological damage after ischemic stroke in T1D.

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来源期刊
Molecular Neurobiology
Molecular Neurobiology 医学-神经科学
CiteScore
9.00
自引率
2.00%
发文量
480
审稿时长
1 months
期刊介绍: Molecular Neurobiology is an exciting journal for neuroscientists needing to stay in close touch with progress at the forefront of molecular brain research today. It is an especially important periodical for graduate students and "postdocs," specifically designed to synthesize and critically assess research trends for all neuroscientists hoping to stay active at the cutting edge of this dramatically developing area. This journal has proven to be crucial in departmental libraries, serving as essential reading for every committed neuroscientist who is striving to keep abreast of all rapid developments in a forefront field. Most recent significant advances in experimental and clinical neuroscience have been occurring at the molecular level. Until now, there has been no journal devoted to looking closely at this fragmented literature in a critical, coherent fashion. Each submission is thoroughly analyzed by scientists and clinicians internationally renowned for their special competence in the areas treated.
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