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The emergence of DNAM-1 as the facilitator of NK cell-mediated killing in Ovarian Cancer

GSE281120 Homo sapiens Expression profiling by high throughput sequencing 9 samples Submitted 2025/01/29 Platform GPL18573
Summary
Ovarian cancer (OC) is the sixth most common malignancy in women and the poor 5-year survival emphasises the need for novel therapies. NK cells play an important role in the control of malignant disease but the nature of tumour-infiltrating and peripheral NK cells in OC remains unclear. We studied the phenotype and function of NK cells in blood, primary tumour and metastatic tissue in 80 women with OC. The proportion of peripheral NK cells was markedly elevated with a highly activated profile and increased cytotoxicity. In contrast, NK cell numbers in primary tumour and metastasis were substantially reduced, with downregulation of activatory receptors together with elevated PD-1 expression. scRNA-Seq identified 5 NK cell subpopulations along with increased exhausted and immature NK cells within tumour tissue compared to normal tissue. These features were attenuated following chemotherapy where higher levels of activated and cytotoxic NK cells associated with improved disease-free survival. Correlation of NK cell phenotype with clinical outcomes revealed high levels of DNAM-1 expression on tissue-localised and peripheral NK cells to be associated with reduced survival. Expression of PVR, the DNAM-1 ligand, was significantly increased on tumours and DNAM-1 mediated NK cell lysis of primary tumour tissue was observed in vitro. These findings reveal profound modulation of the tumour tissue and systemic profile of NK cells which likely contributes to the high rates of local progression and metastasis seen with OC. Immunotherapeutic approaches that overcome local immune suppression and enhance DNAM-1-targeted lysis of OC offer the potential to improve disease control.
Published in
The emergence of DNAM-1 as the facilitator of NK cell-mediated killing in ovarian cancer
Pounds R, Croft W, Pearce H et al. · Frontiers in immunology 2024 · PMID 39835114 · doi:10.3389/fimmu.2024.1477781
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Also filed as BioProject PRJNA1182326 and SRA study SRP543301. Searching any of these in the dataset finder brings you back here.

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