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Spatial Distribution of Immune Cells Drives Resistance to Neoadjuvant Chemotherapy in Triple-Negative Breast Cancer

三阴性乳腺癌 乳腺癌 免疫系统 免疫疗法 转录组 基质 癌症 医学 癌症研究 肿瘤浸润淋巴细胞 肿瘤微环境 肿瘤科 生物 免疫学 内科学 基因表达 免疫组织化学 基因 生物化学
作者
Benedetta Donati,Francesca Reggiani,Federica Torricelli,Giacomo Santandrea,Teresa Rossi,Alessandra Bisagni,Elisa Gasparini,Antonino Neri,Laura Cortesi,Guglielmo Ferrari,Giancarlo Bisagni,Moira Ragazzi,Alessia Ciarrocchi
出处
期刊:Cancer immunology research [American Association for Cancer Research]
卷期号:12 (1): 120-134 被引量:7
标识
DOI:10.1158/2326-6066.cir-23-0076
摘要

Abstract Neoadjuvant chemotherapy (NAC) alone or combined with target therapies represents the standard of care for localized triple-negative breast cancer (TNBC). However, only a fraction of patients have a response, necessitating better understanding of the complex elements in the TNBC ecosystem that establish continuous and multidimensional interactions. Resolving such complexity requires new spatially-defined approaches. Here, we used spatial transcriptomics to investigate the multidimensional organization of TNBC at diagnosis and explore the contribution of each cell component to response to NAC. Starting from a consecutive retrospective series of TNBC cases, we designed a case–control study including 24 patients with TNBC of which 12 experienced a pathologic complete response (pCR) and 12 no-response or progression (pNR) after NAC. Over 200 regions of interest (ROI) were profiled. Our computational approaches described a model that recapitulates clinical response to therapy. The data were validated in an independent cohort of patients. Differences in the transcriptional program were detected in the tumor, stroma, and immune infiltrate comparing patients with a pCR with those with pNR. In pCR, spatial contamination between the tumor mass and the infiltrating lymphocytes was observed, sustained by a massive activation of IFN-signaling. Conversely, pNR lesions displayed increased pro-angiogenetic signaling and oxygen-based metabolism. Only modest differences were observed in the stroma, revealing a topology-based functional heterogeneity of the immune infiltrate. Thus, spatial transcriptomics provides fundamental information on the multidimensionality of TNBC and allows an effective prediction of tumor behavior. These results open new perspectives for the improvement and personalization of therapeutic approaches to TNBCs.
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