肠道菌群
免疫系统
失调
细胞生物学
下调和上调
功能(生物学)
生物
脚手架
心肌细胞
支架蛋白
免疫学
化学
炎症
电池类型
基因表达
微生物学
微生物群
信号转导
HEK 293细胞
细菌
基因表达调控
细胞因子
生物吸附支架
免疫
先天免疫系统
作者
Natalie Rutkowski,Brenda Yang,Elise Gray-Gaillard,Anna Ruta,Joscelyn C. Mejías,Michael Patatanian,Christopher Cherry,Nazmiye Celik,Katlin B. Stivers,S. Ramanujam,Nathan L. Price,Franck Housseau,Drew M. Pardoll,C. L. Sears,Jennifer H. Elisseeff
标识
DOI:10.1073/pnas.2510841122
摘要
Therapeutic biological scaffolds promote tissue repair primarily through the induction of type 2 immunity. However, systemic immunological factors, including aging, sex, and previous infections, can modulate this response. The gut microbiota is a well-established modulator of immune function across organ systems, yet its influence on type 2-mediated repair remains underexplored. Here, we establish a bidirectional relationship between the gut microbiota and biological scaffold-mediated tissue repair. Utilizing a conventionalized germ-free mouse, we demonstrate that scaffold implantation induces compositional and functional changes in the gut microbiome, particularly affecting amino acid biosynthesis. Additionally, in a model of antibiotic-induced microbiota depletion, we show that dysbiosis disrupts key immune regulators of type 2 immunity, including reductions in eosinophils, proregenerative macrophages, and interleukin-4 (IL-4)-producing CD4 + T cells. At 6 wk post–scaffold implantation, we observed a significant decrease in myocytes with centrally located nuclei alongside an upregulation in profibrotic gene expression with antibiotic treatment. These findings provide insights into the influence of the gut microbiota on type 2-mediated tissue repair.
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