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Serger, C.

Publications and source records attributed to Serger, C..

2 recordsLinked to original sources

Longitudinal profiling of tumor-reactive T cells during TIL therapy in metastatic melanoma

Adoptive cell therapy (ACT) with expanded autologous tumor-infiltrating lymphocytes (TILs) can induce durable responses in metastatic melanoma, yet many patients relapse. We profiled tumor-reactive T cell dynamics during TIL therapy using single-cell RNA and TCR sequencing from seven patients to elucidate underlying reasons. We found that tumor-reactive T cells preferentially expanded early during ex vivo TIL culture, transitioning from exhausted to reinvigorated effector states. Particularly, CD8+ exhausted T cells (Tex) and CD4+ follicular helper T cell (Tfh), but not CD4+ Tex, were efficiently reinvigorated. Further, we resolved the heterogeneity of tumor-reactive CD8+ and CD4+ subsets, defining unique signatures for their identification during TIL expansion. In addition, non-responders (NRs) exhibit increased levels of Type 17 T cells in TIL products, suggesting a potential association with resistance to therapy. After transfer, tumor-reactive clones rapidly extravasated and established a stem-like reservoir. However, in NRs, CD4+ regulatory T cells (Tregs) expanded de novo and tumor-reactive CD8+ T cells reacquired exhaustion markers, limiting their functionality. By contrast, responders (Rs) retained a pool of less differentiated, stem-like cells. Collectively, these data provide a comprehensive analysis of T cell fates during TIL-ACT providing the basis for new approaches to enhance therapeutic strategies.

immunology↗

Integrated single cell analysis identifies CD39+ tumor-associated NK cells with cytotoxic potential in lung cancer

Natural killer (NK) cell-targeting immunotherapies are emerging, yet the differentiation and functional states of tumor-infiltrating NK cells remain poorly understood. Using matched single-nucleus RNA and ATAC sequencing of non-small cell lung cancer (NSCLC) specimens, we resolved the transcriptional and epigenetic landscape of intratumoral NK cells. We identified two tumor-associated NK (taNK) cell subsets marked by ITGAE (CD103) and ITGA1 (CD49a) that display features of tissue residency and dysfunction while preserving cytotoxic function. Trajectory and regulon analyses revealed an inflammation-driven transition from early GZMK NKs toward an ENTPD1+ (CD39) effector state characterized by interferon-stimulated gene (ISG) programs. Functional profiling established CD39 taNK as the dominant cytotoxic NK cell population with superior killing capacity that is further potentiated by NKG2A blockade. This study offers mechanistic insights into NK cell differentiation in NSCLC and establishes CD39 taNK cells as a targetable effector population for immunotherapy. One sentence summaryMultiomic analysis identifies CD39+ tumor-associated NK cells as a cytotoxic effector state in NSCLC responsive to NKG2A blockade.

immunology↗