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Macrophages in Lung Injury, Repair, and Fibrosis

Peiyong Cheng, Shuangyan Li, Huaiyong Chen

2021Cells440 citationsDOIOpen Access PDF

Abstract

Fibrosis progression in the lung commonly results in impaired functional gas exchange, respiratory failure, or even death. In addition to the aberrant activation and differentiation of lung fibroblasts, persistent alveolar injury and incomplete repair are the driving factors of lung fibrotic response. Macrophages are activated and polarized in response to lipopolysaccharide- or bleomycin-induced lung injury. The classically activated macrophage (M1) and alternatively activated macrophage (M2) have been extensively investigated in lung injury, repair, and fibrosis. In the present review, we summarized the current data on monocyte-derived macrophages that are recruited to the lung, as well as alveolar resident macrophages and their polarization, pyroptosis, and phagocytosis in acute lung injury (ALI). Additionally, we described how macrophages interact with lung epithelial cells during lung repair. Finally, we emphasized the role of macrophage polarization in the pulmonary fibrotic response, and elucidated the potential benefits of targeting macrophage in alleviating pulmonary fibrosis.

Topics & Concepts

Pulmonary fibrosisLungBleomycinMedicineMacrophage polarizationMacrophageIdiopathic pulmonary fibrosisFibrosisAlveolar macrophageLipopolysaccharidePyroptosisCancer researchImmunologyPathologyBiologyInflammationInflammasomeInternal medicineIn vitroChemotherapyBiochemistryInterstitial Lung Diseases and Idiopathic Pulmonary FibrosisRespiratory Support and MechanismsNeonatal Respiratory Health Research
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