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Tharuka, M. D. N.

Publications and source records attributed to Tharuka, M. D. N..

2 recordsLinked to original sources

Immunomodulation of Pancreatic Cancer via Inhibition of SUMOylation and CD155/TIGIT Pathway

Pancreatic ductal adenocarcinoma (PDAC) is the deadliest major cancer and has a profoundly immunosuppressive tumor microenvironment (TME). Previous studies have shown that inhibition of the E1 enzyme, which catalyzes the small ubiquitin-like modifiers (SUMO), with the small molecule TAK-981, can reprogram the TME to enhance immune activation and suppress tumor growth. We found that the CD-155/TIGIT pathway, a key regulator of immune evasion in PDAC, is influenced by SUMOylation. We hypothesized that the combination of SUMO E1 and TIGIT inhibition would synergistically induce anti-tumor immune effects. We used a clinically relevant orthotopic mouse model that consistently develops liver metastases to study this combination therapy alone and in the perioperative setting with surgical resection. The combination of SUMO E1 and TIGIT inhibition significantly prolonged survival. Complete responders exhibited protective immunity and enhanced T cell reactivity to model-specific alloantigens. Complementary immune analyses of resected tumors demonstrated that combination therapy more significantly reduces the abundance of regulatory FOXP3+CD4+ T cells than each monotherapy alone. The findings suggest that SUMO E1 inhibition enhances antibody-mediated elimination of Tregs through innate immune cells, potentially by activation of type I interferon responses. Our results highlight a mechanism to enhance the efficacy of anti-TIGIT therapy. Brief SummarySUMOylation is a post-translational modification process critical for cancer. Inhibition of SUMOylation can improve the sensitivity of pancreatic cancer to immune checkpoint inhibition.

cancer biology↗

SUMO Inhibition Plus CD40 Agonism Increases Anti-Tumor Immunogenicity Through Interferon Mediated Macrophage Activation

Resistance to immunotherapy is a cardinal feature of pancreatic ductal adenocarcinoma (PDAC). Inhibition of Small Ubiquitin-like MOdifier (SUMO), a post-translational modification with important immune regulatory functions, augments responsiveness to immunotherapy in non-PDAC models via pro-immunogenic effects on myeloid cells, cancer cells, and T-cells. Recently, it has been reported that SUMO inhibition has direct immunogenic effects on PDAC. Here, we report that the novel combination of SUMO inhibition with a small molecule, TAK-981, plus antibody-mediated CD40 agonism improves survival in an aggressive orthotopic mouse model of PDAC by enhancing anti-tumoral immunogenicity. This combination amplifies CD8+ T-cell tumor infiltration and induces significant changes among macrophages. TAK-981 also leads to enhanced cancer specific MHC-I expression both in vitro and in vivo by augmenting interferon signaling. We show that the improvement in survival is mediated by macrophages. Our findings show that SUMO inhibition complements CD40 agonism to enhance immune activity in PDAC via interferon signaling, improving survival in an aggressive pre-clinical model of PDAC and translating previous findings to a characteristically immunosuppressive and highly aggressive solid malignancy.

cancer biology↗