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Couts, K. L.

Publications and source records attributed to Couts, K. L..

2 recordsLinked to original sources

Decitabine reverses innate immune gene suppression in rare melanomas

Rare melanoma subtypes, including acral, mucosal, and uveal melanomas, exhibit limited responses to immune checkpoint inhibitors (ICIs), yet the molecular mechanisms of immune resistance remain poorly defined. Here, we performed transcriptomic profiling of patient-derived xenografts (PDXs) and publicly available tumor datasets to systematically compare intratumoral gene expression across cutaneous and rare melanoma subtypes. We identified a convergent downregulation of innate immune pathogen sensing (IIPS) and type I interferon signaling pathways in rare melanomas compared to cutaneous, with lower expression also observed in anti-PD-1 non-responder tumors. CIBERSORT deconvolution of immune populations revealed that lower IIPS gene-expressing tumors exhibited reduced CD8 T cell and memory CD4 T cell infiltration, and enrichment of M2 macrophages, consistent with a more immunosuppressive tumor microenvironment. In vitro screening of epigenetic and immunomodulatory compounds revealed that the DNA hypomethylating agent decitabine robustly induced IIPS and adaptive immune gene expression in rare melanoma cell lines. In vivo treatment of mucosal and uveal melanoma xenograft models with decitabine resulted in durable upregulation of IIPS and antigen presentation genes, and whole transcriptome analysis confirmed that IIPS gene re-expression was the dominant transcriptional consequence of decitabine treatment. These findings highlight silencing of IIPS genes as a recurrent immune evasion mechanism in rare melanomas and nominate decitabine as a potential immunomodulatory strategy for enhancing immune responsiveness.

cancer biology↗

Profiling serum oxylipin metabolites across melanoma subtypes and immunotherapy responders

ObjectivesThis study investigates the relationship between serum oxylipin profiles and response to immune checkpoint inhibitor therapy in melanoma subtypes to identify potential metabolic biomarkers for treatment response. MethodsIn a retrospective cohort study, serum samples from 43 stage III and stage IV melanoma patients treated at the University of Colorado Hospital from 2010 to 2023 were analyzed via ultra-high-pressure liquid chromatography-mass spectrometry. Melanoma patients were treated anti-PD-1 monotherapy or combination immune checkpoint inhibitor therapy and response was assessed using RECIST 1.1 criteria. ResultsUsing mass spectroscopy, we determined global oxylipin metabolite profiles are largely uniform pre-and post-treatment across melanoma subtypes including cutaneous, acral, mucosal, and uveal melanoma. Across subtypes, 33 oxylipin metabolites were analyzed, with limited variation observed overall. Prostaglandin J2 was more abundant in rare melanoma subtypes including acral, mucosal, and uveal melanoma compared to cutaneous melanoma. ConclusionsDespite limited variation of serum oxylipin molecular species by subtype and response status, we observed significant differences in Prostaglandin J2 which could serve as a potential biomarker for immune checkpoint inhibitor therapy response in melanoma. However, further investigation is warranted to explore the role of oxylipins in immune response modulation.

cancer biology↗