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Biology subjects

Markowitz, G. J.

Publications and source records attributed to Markowitz, G. J..

2 recordsLinked to original sources

Tumor-draining lymph node derived CD8⁺ T cells sustain durable systemic immunity after neoadjuvant IL-15 and PD-1 blockade.

The tumor-draining lymph node (tdLN) serves as a critical reservoir of tumor-reactive T cells, yet its contribution to preventing metastatic recurrence remains poorly understood. In this study, we investigate CD8 T cell clonal dynamics and memory responses induced by neoadjuvant anti-PD-1 therapy. We demonstrate that PD-1 blockade promotes the emergence of protective CD8 T cell memory, enriched with tumor-relevant clones that persist in the lymph nodes of long-term survivors. Furthermore, we show that combination of a neoadjuvant IL-15 superagonist with PD-1 blockade significantly increases clonal diversity, cytotoxicity, and clonal persistence in non-draining lymph nodes. These changes result in enhanced systemic antitumor immunity and durable memory that prevents tumor relapse. Our findings establish the tdLN as a critical immunologic hub that can be therapeutically targeted by IL-15 to augment PD-1 blockade efficacy and support a rationale for a phase II neoadjuvant combination immunotherapy trial in early-stage NSCLC. One sentence summaryNeoadjuvant IL-15 with PD-1 blockade expands lymph node clonal diversity and preserves stem-like CD8 T cell features, yielding superior antitumor efficacy, durable memory, and reduced metastatic recurrence.

immunology↗

Acquisition of discrete immune suppressive barriers contributes to the initiation and progression of preinvasive to invasive human lung cancer.

Computerized chest tomography (CT)-guided screening in populations at risk for lung cancer has increased the detection of preinvasive subsolid nodules, which progress to solid invasive adenocarcinoma. Despite the clinical significance, there is a lack of effective therapies for intercepting the progression of preinvasive to invasive adenocarcinoma. To uncover determinants of early disease emergence and progression, we used integrated single-cell approaches, including scRNA-seq, multiplexed imaging mass cytometry and spatial transcriptomics, to construct the first high-resolution map of the composition, lineage/functional states, developmental trajectories and multicellular crosstalk networks from microdissected non-solid (preinvasive) and solid compartments (invasive) of individual part-solid nodules. We found that early disease initiation and subsequent progression are associated with the evolution of immune-suppressive cellular phenotypes characterized by decreased cytotoxic CD8 T and NK cells, increased T cell exhaustion and accumulation of immunosuppressive regulatory T cells (Tregs) and M2-like macrophages expressing TREM2. Within Tregs, we identified a unique population of 4-1BB+ Treg subset enriched for the IL2-STAT5 suppressive pathway with transcription profiles supporting discrete metabolic alterations. Spatial analysis showed increased density of suppressive immune cells around tumor cells, increased exhaustion phenotype of both CD4 and CD8 T cells expressing chemokine CXCL13, and spatial micro-complex of endothelial and lymphocyte interactions within tertiary lymphoid structures. The single-cell architecture identifies determinants of early disease emergence and progression, which may be developed not only as diagnostic/prognostic biomarkers but also as targets for disease interception. Additionally, our dataset constitutes a valuable resource for the preinvasive lung cancer research community.

cancer biology↗