作者
Luis E Muñoz, Rostyslav Bilyy, Mona HC Biermann, Deborah Kienhöfer, Christian Maueröder, Jonas Hahn, Jan M Brauner, Daniela Weidner, Jin Chen, Marina Scharin-Mehlmann, Christina Janko, Ralf P Friedrich, Dirk Mielenz, Tetiana Dumych, Maxim D Lootsik, Christine Schauer, Georg Schett, Markus Hoffmann, Yi Zhao, Martin Herrmann
发表日期
2016/10/4
期刊
Proceedings of the National Academy of Sciences
卷号
113
期号
40
页码范围
E5856-E5865
出版商
National Academy of Sciences
简介
The critical size for strong interaction of hydrophobic particles with phospholipid bilayers has been predicted to be 10 nm. Because of the wide spreading of nonpolar nanoparticles (NPs) in the environment, we aimed to reveal the ability of living organisms to entrap NPs via formation of neutrophil extracellular traps (NETs). Upon interaction with various cell types and tissues, 10- to 40-nm-sized NPs induce fast (<20 min) damage of plasma membranes and instability of the lysosomal compartment, leading to the immediate formation of NETs. In contrast, particles sized 100–1,000 nm behaved rather inertly. Resulting NET formation (NETosis) was accompanied by an inflammatory reaction intrinsically endowed with its own resolution, demonstrated in lungs and air pouches of mice. Persistence of small NPs in joints caused unremitting arthritis and bone remodeling. Small NPs coinjected with antigen exerted adjuvant …
引用总数
20162017201820192020202120222023202421115232724172011
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LE Muñoz, R Bilyy, MHC Biermann, D Kienhöfer… - Proceedings of the National Academy of Sciences, 2016