Anti-PD-1 treatment response is associated with the influx of circulating myeloid and T-cell subsets into the metastatic melanoma tumor microenvironment

Publication date

2025-11

Authors

Van Dam, S
Krijgsman, DORCID 0000-0001-6101-7146
Küçükköse, Emre
Verdonschot, M E L
Amini, Mojtaba
Blokx, Willeke A MORCID 0000-0002-4647-8830
Van Eijs, M J MORCID 0000-0002-9763-6704
Verheijden, Rik JORCID 0000-0003-1966-1063
Kranenburg, OnnoORCID 0000-0002-2112-4390ISNI 0000000395167454
Suijkerbuijk, Karijn P MORCID 0000-0003-3604-5430ISNI 0000000388512483

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Article

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cc_by

Abstract

BACKGROUND: Immune checkpoint inhibition (ICI) significantly improves the survival of metastatic melanoma patients; however, a substantial proportion of patients does not respond to these breakthrough therapies. METHODS: To improve our understanding of this response variability, we developed high-plex panels for protein imaging of a discovery cohort and validation with RNAseq analyses to examine myeloid and T-cell subsets in pre-anti-PD-1-treatment samples of 14 metastatic melanoma patients (7 responders and 7 non-responders). RESULTS: We demonstrate that a higher abundance of circulating monocyte-derived macrophages (MDMs) and cytotoxic T-cell subsets in the tumor microenvironment (TME) at baseline distinguishes metastatic melanoma patients with a favorable response to anti-PD1 treatment from non-responders, who featured co-localization of suppressive macrophages (M2) and T-cells. Additionally, MDMs expressed high levels of immune checkpoints, and MDM infiltration into the TME was linked to both ICI response and survival. CONCLUSION: These findings highlight the potential of MDM infiltration as a predictive biomarker for ICI response in metastatic melanoma.

Keywords

Oncology, Cancer Research, Journal Article

Citation

Van Dam, S, Krijgsman, D, Küçükköse, E, Verdonschot, M E L, Amini, M, Blokx, W A M, Van Eijs, M J M, Verheijden, R J, Kranenburg, O, Suijkerbuijk, K P M, Leusen, J H W & Vercoulen, Y 2025, 'Anti-PD-1 treatment response is associated with the influx of circulating myeloid and T-cell subsets into the metastatic melanoma tumor microenvironment', British Journal of Cancer, vol. 133, no. 9, pp. 1250-1264. https://doi.org/10.1038/s41416-025-03137-8