巨噬细胞极化
巨噬细胞
细胞生物学
炎症
表型
泡沫电池
生物
脂多糖
分泌物
免疫学
体外
基因
生物化学
作者
Ryan M. Allen,Danielle L. Michell,Ashley Cavnar,Wanying Zhu,Neil Makhijani,Danielle Contreras,Chase Raby,Elizabeth M. Semler,Carlisle R. DeJulius,Mark Castleberry,Youmin Zhang,Marisol Ramirez‐Solano,Shilin Zhao,Craig L. Duvall,Amanda C. Doran,Quanhu Sheng,MacRae F. Linton,Kasey C. Vickers
标识
DOI:10.1038/s41556-022-01030-7
摘要
Macrophages present a spectrum of phenotypes that mediate both the pathogenesis and resolution of atherosclerotic lesions. Inflammatory macrophage phenotypes are pro-atherogenic, but the stimulatory factors that promote these phenotypes remain incompletely defined. Here we demonstrate that microbial small RNAs (msRNA) are enriched on low-density lipoprotein (LDL) and drive pro-inflammatory macrophage polarization and cytokine secretion via activation of the RNA sensor toll-like receptor 8 (TLR8). Removal of msRNA cargo during LDL re-constitution yields particles that readily promote sterol loading but fail to stimulate inflammatory activation. Competitive antagonism of TLR8 with non-targeting locked nucleic acids was found to prevent native LDL-induced macrophage polarization in vitro, and re-organize lesion macrophage phenotypes in vivo, as determined by single-cell RNA sequencing. Critically, this was associated with reduced disease burden in distinct mouse models of atherosclerosis. These results identify LDL-msRNA as instigators of atherosclerosis-associated inflammation and support alternative functions of LDL beyond cholesterol transport.
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