Extracellular vesicles derived from M2‐like macrophages alleviate acute lung injury in a miR‐709‐mediated manner

Author:

Yang Jie1,Huang Xiaofang2,Yu Qing1,Wang Shibo3,Wen Xuehuan1,Bai Songjie1,Cao Lanxin1,Zhang Kai1,Zhang Shufang4,Wang Xingang5,Chen Zhanghui6,Cai Zhijian3ORCID,Zhang Gensheng17ORCID

Affiliation:

1. Department of Critical Care Medicine, Second Affiliated Hospital Zhejiang University School of Medicine Hangzhou Zhejiang China

2. Department of Critical Care Medicine Qilu Hospital of Shandong University Jinan Shandong China

3. Department of Orthopedics, Institute of Immunology, the Second Affiliated Hospital Zhejiang University School of Medicine Hangzhou Zhejiang China

4. Department of Cardiology, Second Affiliated Hospital Zhejiang University School of Medicine Hangzhou Zhejiang China

5. Department of Burns & Wound Care Centre, the Second Affiliated Hospital of Zhejiang University School of Medicine the Key Laboratory of Trauma and Burns of Zhejiang University Hangzhou Zhejiang China

6. Zhanjiang Institute of Clinical Medicine, Zhanjiang Central Hospital Guangdong Medical University Zhanjiang Guangdong China

7. Key Laboratory of Multiple Organ Failure (Zhejiang University) Ministry of Education Hangzhou Zhejiang China

Abstract

AbstractAcute lung injury/acute respiratory distress syndrome (ALI/ARDS) is characterised by an uncontrolled inflammatory response, and current treatment strategies have limited efficacy. Although the protective effect of M2‐like macrophages (M2φ) and their extracellular vesicles (EVs) has been well‐documented in other inflammatory diseases, the role of M2φ‐derived EVs (M2φ‐EVs) in the pathogenesis of ALI/ARDS remains poorly understood. The present study utilised a mouse model of lipopolysaccharide‐induced ALI to first demonstrate a decrease in endogenous M2‐like alveolar macrophage‐derived EVs. And then, intratracheal instillation of exogenous M2φ‐EVs from the mouse alveolar macrophage cell line (MH‐S) primarily led to a take up by alveolar macrophages, resulting in reduced lung inflammation and injury. Mechanistically, the M2φ‐EVs effectively suppressed the pyroptosis of alveolar macrophages and inhibited the release of excessive cytokines such as IL‐6, TNF‐α and IL‐1β both in vivo and in vitro, which were closely related to NF‐κB/NLRP3 signalling pathway inhibition. Of note, the protective effect of M2φ‐EVs was partly mediated by miR‐709, as evidenced by the inhibition of miR‐709 expression in M2φ‐EVs mitigated their protective effect against lipopolysaccharide‐induced ALI in mice. In addition, we found that the expression of miR‐709 in EVs derived from bronchoalveolar lavage fluid was correlated negatively with disease severity in ARDS patients, indicating its potential as a marker for ARDS severity. Altogether, our study revealed that M2φ‐EVs played a protective role in the pathogenesis of ALI/ARDS, partly mediated by miR‐709, offering a potential strategy for assessing disease severity and treating ALI/ARDS.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Shandong Province

Key Research and Development Program of Zhejiang Province

Publisher

Wiley

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