纳米颗粒
巨噬细胞
膜
材料科学
肺
纳米技术
纳米毒理学
化学
化学工程
医学
生物化学
内科学
工程类
体外
作者
Xinyu Lin,Qian‐Fang Meng,Yuanwei Pan,Xiaoying Hu,Zhuo Dong,Jihong Wang,Xianzhu Yang,Lang Rao,Peng She
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-08-13
卷期号:25 (34): 13003-13013
标识
DOI:10.1021/acs.nanolett.5c03271
摘要
Acute lung injury (ALI) involves a vicious cycle of excessive reactive oxygen species (ROS) and inflammatory cytokines that current therapies have failed to address comprehensively. Here, we developed an inhalable biomimetic nanoplatform (M2M-SNPs) by coating ROS-responsive nanoparticles (SNPs) with M2 macrophage membranes (M2Ms), creating a dual-action platform that simultaneously scavenges ROS and neutralizes cytokines. More importantly, the M2M shell mediates targeted delivery to inflamed pulmonary tissues via natural homing properties, and the SNP core maintains receptor activity by preventing oxidative damage. In lipopolysaccharide (LPS)-induced ALI animal models, inhaled M2M-SNPs exhibited 2-fold-greater pulmonary accumulation than uncoated nanoparticles and achieved 58% ROS scavenging and 62-92% cytokine adsorption, significantly improving inflammatory infiltration and pulmonary edema. Transcriptome sequencing analysis further confirmed that M2M-SNPs mitigated ALI through systemic modulation of immune-inflammatory networks, particularly in IL-17 and TNF signaling pathways. This study provides a promising nanotherapeutic strategy for inflammatory respiratory diseases.
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