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Cannabidiol Modulates Classical And Non-Classical Hla Expression In Human Choriocarcinoma Cell Line

Martinez, K. I.; Palma, M. B.; Sepulveda, F. J.; Carosella, E. D.; Garcia, M. N.; Riccillo, F. L.

2025-12-02 cancer biology
10.64898/2025.11.28.691248 bioRxiv
Show abstract

Cannabidiol (CBD) modulates diverse signaling pathways with potential relevance to tumor immune escape, however its impact on the regulation of classical and non-classical HLA class I molecules remains incompletely understood. Here, we examined the mechanisms by which CBD regulates HLA expression in JEG-3 choriocarcinoma cells, focusing on cannabinoid-related receptors and intracellular Ca{superscript 2} signaling. CBD increased the expression of classical HLA class I genes--most notably HLA-C--while reducing HLA-G levels, a non-classical HLA class I molecule that acts as a local immunosuppressor. Receptor profiling revealed constitutive expression of CB1 and CB2, whereas GPR55 and PPAR{gamma} expression became detectable only after CBD exposure. Functional inhibition assays showed that HLA-G downregulation was selectively attenuated by CB1 blockade, with no meaningful contribution from CB2 or GPR55. In contrast, CBD-induced HLA-C upregulation required GPR55 and CB2 activity, while being unaffected by CB1 inhibition, indicating distinct receptor pathways for classical and non-classical HLA regulation. Calcium chelation using BAPTA further demonstrated that HLA-G modulation is highly sensitive to intracellular Ca{superscript 2} reduction, whereas classical HLA expression required higher BAPTA concentrations to be affected. Altogether, these findings identify CBD as a dual immunomodulatory agent capable of enhancing tumor immune visibility while limiting immunotolerant HLA-G expression through receptor-specific and Ca{superscript 2}-dependent mechanisms.

Published in Human Immunology · not in our set (fewer than 10 published preprints to learn from) · training set

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