Tumor microenvironment-derived S100A8/A9 is a novel prognostic biomarker for advanced melanoma patients and during immunotherapy with anti-PD-1 antibodies

BackgroundPredicting metastasis in melanoma patients is important for disease management and could help to identify those who might benefit from adjuvant treatment. The aim of this study was to investigate whether the tumor microenvironment-derived protein S100A8/A9 qualifies as prognostic marker fo...

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Veröffentlicht in:Journal for immunotherapy of cancer 2019-12, Vol.7 (1), p.343-343, Article 343
Hauptverfasser: Wagner, Nikolaus B., Weide, Benjamin, Gries, Mirko, Reith, Maike, Tarnanidis, Kathrin, Schuermans, Valerie, Kemper, Charlotte, Kehrel, Coretta, Funder, Anne, Lichtenberger, Ramtin, Sucker, Antje, Herpel, Esther, Holland-Letz, Tim, Schadendorf, Dirk, Garbe, Claus, Umansky, Viktor, Utikal, Jochen, Gebhardt, Christoffer
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Sprache:eng
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Zusammenfassung:BackgroundPredicting metastasis in melanoma patients is important for disease management and could help to identify those who might benefit from adjuvant treatment. The aim of this study was to investigate whether the tumor microenvironment-derived protein S100A8/A9 qualifies as prognostic marker for melanoma patients, also in the setting of immunotherapy.MethodsS100A8/A9 gene and protein expression were analyzed on melanocytic nevi, primary melanomas and metastases using a cDNA library and three independent tissue-microarrays (TMA). Serum levels of S100A8/A9 were measured using a specific ELISA in two independent cohorts of 354 stage III and stage IV melanoma patients as well as in two independent cohorts of patients treated with the PD-1 antibody pembrolizumab.ResultscDNA analysis revealed an upregulation of S100A8 and S100A9 gene expression in melanoma metastases compared to primary melanomas. Significantly higher numbers of infiltrating S100A8/A9 positive cells were found in tissue samples of metastasizing primary melanomas compared to non-metastasizing melanomas (P 
ISSN:2051-1426
2051-1426
DOI:10.1186/s40425-019-0828-1