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Jules-Clement, G.

Publications and source records attributed to Jules-Clement, G..

2 recordsLinked to original sources

Single-cell trajectories in metastatic urothelial carcinoma reveal tumor-immune reprogramming and macrophage-driven resistance to PD-(L)1 blockade

Immune checkpoint inhibitors (ICI) improved outcomes in metastatic urothelial carcinoma (mUC), but primary and acquired resistance remain poorly understood. We performed single-nuclei RNA sequencing on sequential metastatic biopsies from ICI-treated mUC patients. Tumor cells showed transcriptomic heterogeneity within individual lesions, basal cells being associated with increased immune infiltration and response. Myeloid and lymphoid compartments exhibited features of immune dysfunction in non-responders. Longitudinal analyses revealed convergent adaptive resistance mechanisms, dominated by polarization toward pro-tumoral macrophage states, but also including downregulation of the antigen presentation machinery in tumor cells, increased checkpoint expression with loss of cytotoxicity in T cells. Individual trajectories point to distinct evolutionary routes under ICI pressure. Across pivotal ICI trials, bulk expression of the M2-like macrophage marker HES1 predicted ICI resistance. Our study provides the first single-cell longitudinal atlas of ICI-treated mUC, revealing macrophage reprogramming as a dominant driver of resistance, establishing a framework for individualized immunotherapy strategies.

cancer biology↗

Single-cell Transcriptome Profiling of Post-treatment and Treatment-naive Colorectal Cancer: Insights into Putative Mechanisms of Chemoresistance

Drug resistance remains a major clinical challenge in the treatment of colorectal cancer (CRC) with conventional chemotherapy. Analyzing changes within tumor cells and tumor microenvironment (TME) after treatment and in metastases is essential to understanding how resistance develops. In this study, we analyzed scRNA-seq data from 56 CRCs including treatment-naive tumors and tumors treated with standard chemotherapy with the known response status (18 responders and 6 progressors). In our cohort, primary left-sided CRCs were associated with metastatic potential mesenchymal phenotype and with depleted B cells. In the post-treatment CRC, there was a high prevalence of dendritic cells (DC) in the TME in the response group. The DC-derived signature was associated with better survival in a large CRC cohort from the TCGA. In progressors there was an enrichment of pericyte-like fibroblasts, which appeared to be associated with poor survival in a CRC-TCGA cohort. Progressors also showed elevated fractions of exhausted CD8+ T memory cells suggesting a pro-inflammatory TME. In tumor cells of progressors group, we identified specific expression of chemo-protective markers MTRNR2L1 and CDX1; and their co-expression with stemness-related immune-checkpoint CD24. In summary, scRNA-seq provides a valuable information for the discovery of prognostic markers, and reveals distinct features potentially underlying response to chemotherapy or disease progression in CRC.

cancer biology↗