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Molecular Mechanisms of Priming Innate Immunity by Small Extracellular Vesicles Released during Infection with Gram-negative Bacteria

先天免疫系统 细胞生物学 生物 启动(农业) 免疫系统 免疫 胞外囊泡 细胞外 信号转导 细胞因子 巨噬细胞 髓样 免疫学 细胞分化 p38丝裂原活化蛋白激酶 获得性免疫系统 微生物学 细胞信号 炎症 细胞 单核细胞 下调和上调 树突状细胞 髓系细胞 先天性淋巴细胞
作者
Adam Fleming,Heather E. Hobbs,Graham Matulis,Weidong Zhou,Valerie Calvert,Hunter G Mason,Samson Omole,Shivam Gaikwad,Cameron C. Ellis,E III Petricoin,Igor C. Almeida,Ramin M. Hakami
出处
期刊: [Cold Spring Harbor Laboratory]
标识
DOI:10.64898/2025.12.30.697125
摘要

Abstract Much still remains to understand about the underlying molecular mechanisms by which the trafficking of small extracellular vesicles (sEVs) modulates innate immune responses during infection with pathogenic Gram-negative bacteria. To address this significant gap in knowledge, we used two infection models to investigate innate immune regulation by the sEVs released from cells infected with either Yersinia pestis (Yp) or Burkholderia thailandensis (Bt), designated as EXi-Yp and EXi-Bt respectively. The EXi induced differentiation of naïve human monocytes to macrophages and triggered robust pro- inflammatory cytokine release, including release of IL-6, mirroring direct bacterial infection effects. Comprehensive cell signaling analyses revealed that the EXi modulate a small set of host signaling proteins, with p38 activation being primarily responsible for the observed protective effects. EXi-induced p38 activation leads to increased IL-6 release, which in turn is responsible for decreased bacterial survival within recipient immune cells that are subsequently infected. Consistent with the in vitro results, mice administered with EXi-Yp exhibited elevated serum IL-6 levels and were protected from Yp infection. Furthermore, using our microfluidic chip platform that allows functional interrogation of EV effects under physiologically relevant conditions, we have demonstrated that EXi exchange between Yp-infected cells and naive recipient monocytes leads to differentiation of the recipient cells to macrophages. Together, our findings reveal a largely unexplored aspect of innate immunity and provide a mechanistic model in which EXi prime local and distant naïve monocytes via p38-induced differentiation and IL-6 production to protect against infection with Gram-negative bacteria.

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