细胞生物学
肥大细胞
免疫系统
化学
细胞
细胞外基质
巨噬细胞
细胞外
病理
免疫学
生物
颗粒(地质)
表型
神经损伤
吞噬作用
脱颗粒
桅杆(植物学)
子宫内膜异位症
作者
Lilian Salm,Monica Aida Lopez,Edward Jenkins,Raymond Shim,Oscar Tejada,Bayan Abou Mehrem,Song Huang,Parisa Etemadi Nezhad,Afshin Derakhshani,Woo-Yong Lee,Ysbrand Nusse,Jeffrey Mewburn,Nina Noskovičová,J. M. Bayer,Mahamud‐ur Rashid,Xin Li,Zeynep Baltaci,Daniel Young,Matheus Batista Heitor Carneiro,Marco Fritzsche
摘要
There is a higher density of immune cells in peritoneal fluid than is found in blood. Thus, any perturbations, from sterile injury to endometriosis to ovarian cancer, require immune cells to recognize and nucleate to these sites. Using peritoneal injuries as a prototype, we saw a massive recruitment of large peritoneal macrophages (LPMs) interspersed with mast cells. The mast cells were activated by sensory neurons to mobilize their 1-μm granules to the cell surface. Lattice light sheet microscopy unveiled a new step in the mast cell degranulation. After granules fused with the plasma membrane, cytonemes (very thin long filopodia) grabbed the granules from the mast cell surface and deposited them on neighboring LPMs. The granules were membraneless biomolecular condensates and harbored more than 200 different proteins, including MARCO, which mediated rapid LPM aggregation to the injury nidus. The condensates also induced a repair-like phenotype in the macrophages that helped heal the injury site.
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