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HTRA1+ Macrophages Induce T-cell Egress through CRIP1/NF-κB/CXCL12 to Limit the Effects of Immunotherapy in
Jialei Weng1,2,3, Wenxin Xu4, Fu Wang5
1Department of Surgical Oncology, Sir Run Run Shaw Hospital Affiliated to Zhejiang University School of Medicine, Hangzhou, China.
Abstract:
The variation in immunotherapy responses among patients with triple-negative breast cancer (TNBC) is attributed to the high heterogeneity of tumor immune components, in which macrophages play a key role. Hence, identification of key macrophage subpopulations associated with immunotherapy efficacy could provide important biological and therapeutic insights. In this study, using single-cell and spatial transcriptomes, we identified, at the single-cell level, a subpopulation of macrophages related to T-cell expansion during immunotherapy, characterized by high expression of high-temperature requirement A1 (HTRA1), and correlated with clinical and immunotherapy outcomes in TNBC. Loss of macrophage-specific Htra1 in transgenic mice resulted in delayed TNBC growth, improved immunotherapy efficacy, and increased CD8+ T-cell infiltration. Mechanistically, HTRA1 associated with cysteine-rich protein 1 (CRIP1) to facilitate CRIP1 binding to NF-κB, thereby activating the NF-κB pathway and downstream CXCL12 transcription, leading to T-cell exit from tumors. Endothelial cell-derived CX3CL1 was implicated in the recruitment of HTRA1+ macrophages to tumor sites. Pharmacologic antagonism of the CXCL12/CXCR4 axis potentiated the immunotherapy efficacy in orthotopic TNBC mouse models. In conclusion, this study highlights an HTRA1+ macrophage subpopulation that can limit T-cell infiltration and immunotherapy efficacy via the CXCL12/CXCR4 axis, which offers new leads to improve immunotherapeutic interventions in TNBC.
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