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Biology subjects

Sepulveda, F. J.

Publications and source records attributed to Sepulveda, F. J..

2 recordsLinked to original sources

CANNABIDIOL MODULATES CLASSICAL AND NON-CLASSICAL HLA EXPRESSION IN HUMAN CHORIOCARCINOMA CELL LINE

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.

cancer biology↗

Cannabidiol (CBD) as a novel inhibitor of HLA-G expression in human choriocarcinoma cell line (JEG-3)

Cannabinoids have emerged as promising agents in cancer research due to their antitumor properties. While their effects on tumor growth and survival have been widely investigated, their impact on immune checkpoint regulation remains largely unexplored. In this study, we examined the effects of cannabidiol (CBD) and a high-CBD extract (CBD-HCE) on the expression of HLA-G in human choriocarcinoma JEG-3 cells. HLA-G is a non-classical HLA class I molecule associated with immune escape in tumors. Both CBD and CBD-HCE were found to reduce cell proliferation and migration, increase apoptosis, and significantly downregulate HLA-G expression at both the mRNA and protein levels. This inhibitory effect was observed to be both dose- and time-dependent, and it was completely reversible after the treatment was removed, indicating a dynamic and CBD-dependent modulation. These results provide the first experimental evidence of HLA-G downregulation by CBD and CBD-HCE, highlighting a novel immunomodulatory mechanism with potential therapeutic implications. By simultaneously targeting tumor cell viability and immune evasion, CBD-based compounds may enhance antitumor immune responses and improve the efficacy of immunotherapies. Further research involving additional tumor cell lines, in vivo models, and immune-relevant systems are necessary to validate and expand upon these findings.

cancer biology↗