Macrophage lipid efflux regulates the tumour microenvironment in early‐stage lung adenocarcinoma

Background Metabolic rewiring influences macrophage functions in tumours. However, metabolic heterogeneity of macrophages in early‐stage lung adenocarcinoma (LUAD) has not been fully understood. Methods Based on single‐cell transcriptomic analysis on lung tissues from human subsolid pulmonary nodules and from Kras G12D and Kras G12D Tgfbr2 −/− mice, we unveiled alterations of macrophage states in LUAD. We applied cell migration and invasion assays to examine effects of ATP binding cassette subfamily A member 1 (ABCA1) in macrophages on tumour progression. In addition, using coculture system, we explored its role in macrophage polarisation. Results Major macrophage subsets underwent shifts during tumourigenesis, as alveolar macrophages reduced sharply and their interstitial counterparts increased. Of note, tumour‐associated macrophages (TAMs) are metabolically rewired, with a subset enhancing lipid efflux predominated in both human and murine tumour. It was characterised by high expression of the lipid transporter, ABCA1. Targeting ABCA1 by its inhibitor probucol suppressed TAM capacity to induce tumour cell migration and invasion. In addition, inhibiting ABCA1 was associated with dampened immunosuppression of TAMs by shifting them to a M1‐like phenotype. Conclusions We uncovered TAM heterogeneity in early‐stage LUAD and proposed ABCA1 as a potential target for metabolic rewiring, which manipulated macrophage polarisation states and its effects on tumour aggressiveness.

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Publication Details

Journal
Clinical and Translational Discovery
Published
2026-08-25
DOI
https://doi.org/10.1002/ctd2.70199
Primary Topic
Immune cells in cancer
Type
article
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article

Macrophage lipid efflux regulates the tumour microenvironment in early‐stage lung adenocarcinoma

Dawei Yang, C. Bethan Powell, Chunxue Bai, Jun Yin et al.
Clinical and Translational Discovery
Immune cells in cancer
article

Macrophage lipid efflux regulates the tumour microenvironment in early‐stage lung adenocarcinoma

Dawei Yang, C. Bethan Powell, Chunxue Bai, Jun Yin, Meng Xiang, Hongyi Xin, Yujie Zheng, Yue Shi, Yong Zhang, Hui Kong, Yalin Wang, Yuanlin Song, Xiangdong Wang, Fred R. Hirsch, Shaohua Lu, Jie Hu, Yuan Wang, Jian Zhou, Qiong Liu
article en

Abstract

Background Metabolic rewiring influences macrophage functions in tumours. However, metabolic heterogeneity of macrophages in early‐stage lung adenocarcinoma (LUAD) has not been fully understood. Methods Based on single‐cell transcriptomic analysis on lung tissues from human subsolid pulmonary nodules and from Kras G12D and Kras G12D Tgfbr2 −/− mice, we unveiled alterations of macrophage states in LUAD. We applied cell migration and invasion assays to examine effects of ATP binding cassette subfamily A member 1 (ABCA1) in macrophages on tumour progression. In addition, using coculture system, we explored its role in macrophage polarisation. Results Major macrophage subsets underwent shifts during tumourigenesis, as alveolar macrophages reduced sharply and their interstitial counterparts increased. Of note, tumour‐associated macrophages (TAMs) are metabolically rewired, with a subset enhancing lipid efflux predominated in both human and murine tumour. It was characterised by high expression of the lipid transporter, ABCA1. Targeting ABCA1 by its inhibitor probucol suppressed TAM capacity to induce tumour cell migration and invasion. In addition, inhibiting ABCA1 was associated with dampened immunosuppression of TAMs by shifting them to a M1‐like phenotype. Conclusions We uncovered TAM heterogeneity in early‐stage LUAD and proposed ABCA1 as a potential target for metabolic rewiring, which manipulated macrophage polarisation states and its effects on tumour aggressiveness.

Clinical and Translational DiscoveryVol. 6(5)
Mount Sinai Health System (US), Shanghai Medical College of Fudan University (CN), University of Shanghai for Science and Technology (CN), Sun Yat-sen University (CN), Shanghai Jiao Tong University (CN), Fudan University (CN), Shanghai FRP Research Institute (China) (CN), Zhongshan Hospital (CN), Tisch Hospital (US), The First Affiliated Hospital, Sun Yat-sen University (CN), Shanghai Institute of Computing Technology (CN), Shanghai Center For Bioinformation Technology (CN), Icahn School of Medicine at Mount Sinai (US)
Openalex Percentile: Top 16%
Immune cells in cancer
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