Perivascular Niche-Resident Alveolar Macrophages Promote Interstitial Pneumonitis Related to Trastuzumab Deruxtecan Treatment
- PMID: 40300097
- DOI: 10.1158/0008-5472.CAN-24-2021
Perivascular Niche-Resident Alveolar Macrophages Promote Interstitial Pneumonitis Related to Trastuzumab Deruxtecan Treatment
Abstract
Trastuzumab deruxtecan (T-DXd) is a transformative HER2-targeting antibody-drug conjugate (ADC) for treating breast cancer. Unfortunately, T-DXd has also been implicated in causing fatal interstitial lung disease (ILD) in multiple clinical trials. A better understanding of the mechanistic basis of these ADC-induced adverse effects could enable development of strategies to prevent or treat T-DXd-related ILD. In this study, we determined that T-DXd-induced ILD represents an off-target adverse event rather than an on-target off-tumor adverse event. To further investigate this phenomenon, an immunocompetent murine model that recapitulates T-DXd-induced ILD events was developed, facilitating in-depth mechanistic studies. Single-cell RNA sequencing in this model implicated alveolar macrophages (AM) as the primary cell type impacted by T-DXd in the lung microenvironment. Intravital microscopy further revealed that AMs resident in perivascular niches directly engulfed blood-circulating T-DXd via Fc-FcγR engagement. This Fc-FcγR interaction with T-DXd triggered a phenotypic shift in AMs from an immunosuppressive to a pro-ILD state, characterized by inflammation and immune activation, mediated through the SPP1 pathways. Finally, mitigating nonspecific T-DXd uptake in the lung by preconditioning perivascular AMs with IgG1 or the parental antibody of T-DXd significantly reduced unintended ADC absorption. These findings elucidate a mechanism by which T-DXd ignites the lung immune microenvironment and underscore the importance of off-target endocytosis by innate immune cells in the development of ADC-related toxicities. Significance: Preconditioning the perivascular niche can prevent lung inflammation induced by antibody-drug conjugate phagocytosis by alveolar macrophages and subsequent SPP1high macrophage differentiation, providing a clinically viable strategy for mitigating interstitial lung disease.
©2025 American Association for Cancer Research.
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Grants and funding
- 82303963/National Natural Science Foundation of China (NSFC)
- 82074245/National Natural Science Foundation of China (NSFC)
- 82172598/National Natural Science Foundation of China (NSFC)
- 2023YFC3404003/National Key Research and Development Program of China (NKPs)
- 2021YFA0910100/National Key Research and Development Program of China (NKPs)
- 2024SDYXS0001/Key Research and Development Program of Zhejiang Province (Key R&D plan of Zhejiang Province)
- LZ22H310001/Natural Science Foundation of Zhejiang Province (ZJNSF)
- 2022ZDSJ0474/Agricultural and Social Development Research Project of Hangzhou Municipal Science and Technology Bureau
- 2022R01006/The Zhejiang Leading Innovation and Entrepreneurship Team
- 2022E10021/The Key Laboratory of Prevention, Diagnosis and Therapy of Upper Gastrointestinal Cancer of Zhejiang Province
- JBZX-202006/Zhejiang Provincial Research Center for Upper Gastrointestinal Track Center
- 2023SKLDRS0118/State Key Laboratory of Drug Regulatory Science projection
- 82373782/National Natural Science Foundation of China (NSFC)
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