Ge Yong, Zadeh Mojgan, Yang Changjun, Candelario-Jalil Eduardo, Mohamadzadeh Mansour
Department of Microbiology, Immunology & Molecular Genetics, University of Texas Health, San Antonio, TX, USA.
Division of Gastroenterology & Nutrition, Department of Medicine, University of Texas Health, San Antonio, TX, USA.
iScience. 2022 Oct 25;25(11):105437. doi: 10.1016/j.isci.2022.105437. eCollection 2022 Nov 18.
Ischemic stroke critically impacts neurovascular homeostasis, potentially resulting in neurological disorders. However, the mechanisms through which stroke-induced inflammation modifies the molecular and metabolic circuits, particularly in ileal epithelial cells (iECs), currently remain elusive. Using multiomic approaches, we illustrated that stroke impaired the ileal microbiome and associated metabolites, leading to increased inflammatory signals and altered metabolites, potentially deteriorating the iEC homeostasis. Bulk transcriptomic and metabolomic profiling demonstrated that stroke enhanced fatty acid oxidation while reducing the tricarboxylic acid (TCA) cycle in iECs within the first day after stroke. Intriguingly, single-cell RNA sequencing analysis revealed that stroke dysregulated cell-type-specific gene responses within iECs and reduced frequencies of goblet and tuft cells. Additionally, stroke augmented interleukin-17A γδ T cells but decreased CD4 T cells in the ileum. Collectively, our findings provide a comprehensive overview of stroke-induced intestinal dysbiosis and unveil responsive gene programming within iECs with implications for disease development.
缺血性中风严重影响神经血管稳态,可能导致神经功能障碍。然而,中风诱发的炎症改变分子和代谢回路的机制,尤其是在回肠上皮细胞(iECs)中的机制,目前仍不清楚。通过多组学方法,我们表明中风会损害回肠微生物群和相关代谢物,导致炎症信号增加和代谢物改变,可能使iEC稳态恶化。大量转录组学和代谢组学分析表明,中风在中风后的第一天内增强了iECs中的脂肪酸氧化,同时减少了三羧酸(TCA)循环。有趣的是,单细胞RNA测序分析显示,中风使iECs内细胞类型特异性基因反应失调,并降低了杯状细胞和簇状细胞的频率。此外,中风增加了回肠中白细胞介素-17A γδ T细胞,但减少了CD4 T细胞。总的来说,我们的研究结果全面概述了中风诱导的肠道菌群失调,并揭示了iECs内的反应性基因编程及其对疾病发展的影响。