肠道菌群与缺血性脑卒中的相互作用机制——基于“菌-肠-脑轴”的16S rRNA测序联合粪菌移植研究
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1)西安医学院卫生管理学院,西安 710021;2)陕西中医药大学第二临床医学院,咸阳 712046;3)西安医学院第二附属医院,西安 710038

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西安医学院博士科研启动专项(2025BS29),陕西省脑疾病防治重 点实验室开放基金(20NBZD02), 西安市科技支撑项目 (22YXYJ0096), 吴阶平医学基金会科研专项资助基金 (320.6750.2024-01-14),西安医学院第二附属医院国科金面上培育 项目(23KY0101),“步长杯”脑心同治科研基金重大科研项目 (NXTZ20221101) 和陕西省大学生创新创业训练计划项目 (S202410716106,S202411840081) 资助。


Interaction Mechnisms Between Gut Microbiota and Ischemic Stroke* ——A Study Based on the “Microbiota-Gut-Brain Axis” Integrating 16S rRNA Sequencing with Fecal Microbiota Transplantation
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Affiliation:

1)School of Health Services Management, Xi’an Medical University, Xi’an 710021, China;2)The Second School of Clinical Medicine, Shaanxi University of Chinese Medicine, Xianyang 712046, China;3)The Second Affiliated Hospital of Xi’an Medical University, Xi’an 710038, China

Fund Project:

This work was supported by grants from Xi’an Medical University Doctoral Research Startup Special Program (2025BS29), the Open Fund Project of Shaanxi Key Laboratory of Brain Disease Prevention and Control (20NBZD02), Xi’an Science and Technology Support Project (22YXYJ0096), Wu Jieping Medical Foundation Research Special Fund (320.6750.2024-01-14), National Science Foundation Incubation Program of the Second Affiliated Hospital of Xi’an Medical University (23KY0101), the Major Scientific Research Project of the “Buchang Cup” Brain-Heart Collaborative Research Fund (NXTZ20221101), and Shaanxi Province College Students Innovation and Entrepreneurship Training Program (S202410716106, S202411840081).

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    摘要:

    目的 通过建立缺血性脑卒中大鼠模型并应用粪菌移植(fecal microbiota transplantation,FMT)技术,探究肠道菌群失调与缺血性脑卒中之间的相互作用机制。方法 预实验通过抗生素处理建立抗生素(antibiotics,ABX)伪无菌大鼠模型,大脑中动脉闭塞(middle cerebral artery occlusion,MCAO)法制备脑缺血模型,通过FMT技术移植卒中患者和健康人粪便菌群,然后进行行为学测试,采用16S rRNA测序技术对微生物群落进行分析,通过苏木精-伊红(hematoxylin and eosin,HE)染色观察组织病理状态,透射电子显微术(transmission electron microscopy,TEM)观察小肠紧密连接结构,同时使用酶联免疫吸附分析(enzyme-linked immunosorbent assay,ELISA)方法检测炎症因子及肠道屏障相关标志物的水平。结果 小鼠16S rRNA测序显示,与空白对照组和甲硝唑组相比,四联抗生素组粪便微生物丰度和种类明显减少,表明ABX模型建立成功;卒中患者粪便移植至ABX大鼠后,肠道菌群发生了明显变化。行为学结果显示,MCAO模型组水平运动和垂直探索能力均明显下降;ELISA检测显示,抗生素处理+卒中模型粪菌移植(ABX+mFMT)组白介素-17(interleukin-17,IL-17)浓度较抗生素处理+健康对照粪菌移植(ABX+cFMT)组下降,提示IL-17可能成为评估卒中干预影响肠道菌群的关键炎症指标;氯化三苯基四氮唑(triphenyltetrazolium chloride,TTC)染色结果显示,通过干预肠道菌群可能会加重卒中风险。HE染色显示,除对照组外,各组大鼠脑组织均呈现缺血性改变及炎症浸润;TEM显示,ABX-mFMT组小肠上皮细胞微绒毛较ABX-cFMT组稀疏,表明菌群干预影响肠屏障功能。结论 广谱抗生素建立的ABX模型在生理特征上与正常大鼠无显著性差异,其所得的研究结果与无菌大鼠模型的研究结果相吻合;卒中预后可能受肠道紊乱影响,促炎因子IL-17水平明显升高,并可通过“菌-肠-脑轴”加重神经损伤;行为学实验提示通过移植卒中大鼠肠道菌群会降低认知功能;肠道菌群改变后,IL-17对肠道菌群变化敏感,或成为卒中干预的关键靶点。

    Abstract:

    Objective This Study was conducted to investigate the interaction mechemisms between gut microbiota dysregulation and ischemic stroke by establishing a rat model of ischemic stroke and employing fecal microbiota transplantation (FMT).Methods A preliminary experiment was conducted to establish an antibiotic-induced pseudo-sterile (ABX) rat model through antibiotic treatment, and a cerebral ischemia model was prepared using the middle cerebral artery occlusion (MCAO) method. Fecal microbiota from stroke patients and healthy individuals were transplanted via FMT, followed by behavioral testing. 16S rRNA sequencing was used to analyze the microbial community, hematoxylin and eosin (HE) staining to observe histopathological status, transmission electron microscopy (TEM) to examine the tight junction structure of the small intestine, and enzyme-linked immunosorbent assay (ELISA) to detect levels of inflammatory factors and intestinal barrier-related markers.Results 16S rRNA sequencing of fecal samples showed that compared with the normal control group and the metronidazole group, the abundance and diversity of fecal microorganisms in the quadruple antibiotic group were significantly reduced, indicating successful establishment of the ABX model. After transplanting fecal microbiota from stroke patients into ABX rats, significant changes in gut microbiota composition were observed. Behavioral tests revealed that the MCAO model group showed significant decreases in both horizontal movement and vertical exploration abilities. ELISA results indicated that IL-17 concentration in the ABX+mFMT (antibiotic-treated+control fecal microbiota transplantation) group was lower than in the ABX+cFMT (antibiotic-treated+model fecal microbiota transplantation) group, suggesting that IL-17 may serve as a key inflammatory indicator for evaluating the impact of stroke intervention on gut microbiota. Triphenyltetrazolium chloricle staining (TTC) staining suggested that gut microbiota intervention may increase the risk of stroke. HE staining showed that, except for the control group, all groups exhibited ischemic changes and inflammatory infiltration in brain tissues. TEM revealed that microvilli of small intestinal epithelial cells in the ABX+mFMT group were sparser than those in the ABX+cFMT group, indicating that microbial intervention affects intestinal barrier function.Conclusion The ABX model established using broad-spectrum antibiotics showed no significant differences in physiological characteristics compared to normal rats, and the findings were consistent with those from germ-free rat models. Stroke prognosis appears to be influenced by intestinal dysbiosis, accompanied by significantly elevated levels of the pro-inflammatory cytokine IL-17, which may exacerbate neural injury via the gut-brain axis. Behavioral experiments indicated that transplantation of gut microbiota from stroke rats impaired cognitive function. Furthermore, IL-17 demonstrated sensitivity to alterations in the gut microbiota, suggesting its potential as a key therapeutic target for stroke intervention.

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王婷,张景皓,姜超.肠道菌群与缺血性脑卒中的相互作用机制——基于“菌-肠-脑轴”的16S rRNA测序联合粪菌移植研究[J].生物化学与生物物理进展,2026,53(2):470-484 WANG Ting, ZHANG Jing-Hao, JIANG Chao. Interaction Mechnisms Between Gut Microbiota and Ischemic Stroke* ——A Study Based on the “Microbiota-Gut-Brain Axis” Integrating 16S rRNA Sequencing with Fecal Microbiota Transplantation[J]. Progress in Biochemistry and Biophysics,2026,53(2):470-484

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  • 收稿日期:2025-05-16
  • 最后修改日期:2026-01-14
  • 录用日期:2025-12-30
  • 在线发布日期: 2025-12-30
  • 出版日期: 2026-02-28
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