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CETP pushes macrophages toward the M2 phenotype and worsens elastase-induced emphysema in mice, an unexpected lung-disease link (Front Immunol 2021)

Original title: Cholesterol-Ester Transfer Protein Alters M1 and M2 Macrophage Polarization and Worsens Experimental Elastase-Induced Pulmonary Emphysema

Front Immunol · · 5

Santana KG, Righetti RF, Breda CNS, Domínguez-Amorocho OA, Ramalho T, Dantas FEB, Nunes VS, Tibério IFLC, Soriano FG, Câmara NOS, Quintão ECR, Cazita PM

CETP contributes to macrophage plasma concentration and has known roles in atherosclerosis, endotoxaemia and sepsis. This study tested whether CETP shapes macrophage polarisation and its consequences for elastase-induced pulmonary emphysema, a model of COPD, in human CETP-expressing transgenic mice compared with wild-type littermates. Bone-marrow-derived macrophages from CETP-transgenic mice showed reduced M1 polarisation but increased IL-10. After elastase exposure, CETP-transgenic mice had worse lung function, with a larger mean linear intercept reflecting airspace enlargement, and higher expression of the M2 markers arginase-1 and IL-10. Plasma IL-6 and TNF and bronchoalveolar IL-10 were also elevated compared with elastase-treated wild-type mice, and elastase raised VLDL-C while lowering HDL-C in the CETP group. The authors conclude CETP promotes an M2-like lung macrophage phenotype with a detrimental effect in experimental COPD, a novel pulmonary application of the inflammatory role of CETP.

Read the paper (DOI)PubMed

Original abstract

Cholesterol-ester transfer protein (CETP) plays a role in atherosclerosis, the inflammatory response to endotoxemia and in experimental and human sepsis. Functional alterations in lipoprotein (LP) metabolism and immune cell populations, including macrophages, occur during sepsis and may be related to comorbidities such as chronic obstructive pulmonary disease (COPD). Macrophages are significantly associated with pulmonary emphysema, and depending on the microenvironment, might exhibit an M1 or M2 phenotype. Macrophages derived from the peritoneum and bone marrow reveal CETP that contributes to its plasma concentration. Here, we evaluated the role of CETP in macrophage polarization and elastase-induced pulmonary emphysema (ELA) in human CETP-expressing transgenic (huCETP) (line 5203, C57BL6/J background) male mice and compared it to their wild type littermates. We showed that bone marrow-derived macrophages from huCETP mice reduce polarization toward the M1 phenotype, but with increased IL-10. Compared to WT, huCETP mice exposed to elastase showed worsened lung function with an increased mean linear intercept (Lm), reflecting airspace enlargement resulting from parenchymal destruction with increased expression of arginase-1 and IL-10, which are M2 markers. The cytokine profile revealed increased IL-6 in plasma and TNF, and IL-10 in bronchoalveolar lavage (BAL), corroborating with the lung immunohistochemistry in the huCETP-ELA group compared to WT-ELA. Elastase treatment in the huCETP group increased VLDL-C and reduced HDL-C. Elastase-induced pulmonary emphysema in huCETP mice promotes lung M2-like phenotype with a deleterious effect in experimental COPD, corroborating the in vitro result in which CETP promoted M2 macrophage polarization. Our results suggest that CETP is associated with inflammatory response and influences the role of macrophages in COPD.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.