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Updated: Jun 4, 2025

Assessment of Respiratory Function in Conscious Mice by Double-chamber Plethysmography
Published on: July 10, 2018
CD147 mitochondria translocation induced airway remodeling in asthmatic mouse models by regulating M2 macrophage
Guiyin Zhu1, Haiyang Yu1, Xiaoming Li1
1Department of Respiratory Medicine, Xinhua Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, People's Republic of China.
Abstract:
CD147 has the potential to serve as a specific target with therapeutic characteristics in several respiratory diseases. Studies have demonstrated that CD147 regulates levels of oxidative phosphorylation (OXPHOS) through the process of mitochondrial translocations. However, there is still limited insight in the distinct mechanism of CD147 in asthmatic macrophages. Here, we found that CD147 expression levels increased significantly both in vivo and in vitro. CD147 undergoes mitochondrial translocation in M2 macrophages. Reducing the expression of CD147 resulted in a decline in M2 polarization levels within macrophages, as well as a decrease in the levels of mitochondrial respiratory chain complexes I, II, and IV proteins. This effect may be attained by interacting with adenine nucleotide translocase 1 (ANT1), subsequently impacting the levels of mitophagy. We also discovered that CD147 knockdown significantly reduced airway remodeling and inflammation in addition to lowering the polarization level of M2 in the lung tissues of chronic asthmatic model mice. The findings represent the first evidence of the distinct function of CD147 in the process of airway remodeling in asthma.NEW & NOTEWORTHY The interaction between CD147 and ANT1 in M2 macrophages occurs via mitochondrial translocation, resulting in alterations in ANT1 expression levels. This, in turn, triggers the activation of the mitophagy pathway, leading to modifications in OXPHOS levels. Ultimately, these changes contribute to the enhancement of M2 polarization, thereby exacerbating airway remodeling in asthma.
Insights
CD147 protein levels increase in asthma, driving M2 macrophage polarization and airway remodeling via mitochondrial interactions. Reducing CD147 alleviates asthma symptoms by decreasing M2 polarization and inflammation.
Area of Science:
- Immunology
- Cell Biology
- Respiratory Medicine
Background:
- CD147 is implicated in respiratory diseases and regulates oxidative phosphorylation (OXPHOS) via mitochondrial translocation.
- Limited understanding exists regarding CD147's specific role in asthmatic macrophages.
Purpose of the Study:
- To elucidate the distinct mechanism of CD147 in asthmatic macrophages.
- To investigate the role of CD147 in airway remodeling and inflammation in asthma.
Main Methods:
- Assessed CD147 expression in vivo and in vitro.
- Investigated CD147 mitochondrial translocation in M2 macrophages.
- Analyzed the impact of CD147 knockdown on M2 polarization, mitochondrial respiratory chain complexes, and airway remodeling in a mouse asthma model.
Main Results:
- CD147 expression was significantly elevated in asthma models.
- CD147 translocated to mitochondria in M2 macrophages, interacting with ANT1.
- CD147 knockdown reduced M2 polarization, mitochondrial complex levels, airway remodeling, and inflammation.
Conclusions:
- CD147 plays a critical role in M2 macrophage polarization and mitochondrial function in asthma.
- CD147-ANT1 interaction influences mitophagy and OXPHOS, exacerbating airway remodeling.
- CD147 represents a potential therapeutic target for asthma treatment.
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