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Biology subjects

Baugh, R. T.

Publications and source records attributed to Baugh, R. T..

2 recordsLinked to original sources

Oncolytic virus-antibody combinations enhance immune-mediated killing of osteosarcoma

A major barrier to effective immunotherapy in osteosarcoma (OS) is the highly immunosuppressive tumour microenvironment (TME), which limits immune recognition and elimination of tumour cells. We evaluated a panel of oncolytic herpes simplex viruses (oHSVs) for their direct oncolytic activity, immune-modulatory properties and capacity to counteract OS-associated immunosuppression using immunologically relevant in vitro models. We demonstrate that established OS cell lines, primary cell cultures and dissociated OS cells from freshly resected tumour samples are susceptible to direct oncolysis by three oHSVs; HSV1716, HSV1716-GMCSF, and HSV47{Delta}, although susceptibility levels varied. Treatment of peripheral blood mononuclear cells from healthy donors and OS patients with oHSVs enhanced natural killer (NK) cell activation and promoted immune-mediated killing of OS cell lines and primary OS cell cultures. Among the three viruses, HSV1716-GMCSF exhibited the strongest immune-stimulatory effects and was uniquely capable of reducing the abundance of CD163+CD206+ immunosuppressive TAMs; use of this oHSV was therefore prioritised. We developed a multicellular spheroid model of OS, incorporating OS cells, mesenchymal stem cells and TAMs, which exhibits resistance to immune-mediated killing, better reflecting the immunosuppressive TME in patients. In this model, pairing HSV1716-GMCSF treatment with either anti-GD2 or anti-EGFR monoclonal antibodies (mAbs), selected according to OS tumour antigen expression, significantly increased immune-mediated tumour cell killing. These findings suggest that personalised combination strategies pairing oHSVs with appropriate mAbs provide a promising therapeutic approach for OS by integrating direct oncolysis, remodelling of the immunosuppressive TME and enhanced immune-mediated tumour destruction.

cancer biology↗

Oncolytic Maraba virus MG1 mediates direct and natural killer cell-dependent lysis of Ewing sarcoma

Ewing sarcoma (EWS) is a rare cancer of the bone and soft tissue, most prevalent in children and young adults. Treatment of EWS has progressed relatively little in over 30 years. Survival rates for patients, particularly those with metastatic and/or relapsed disease, remain poor, highlighting the urgent need for innovative treatment options. We have explored the therapeutic potential of the oncolytic Maraba virus strain MG1. We show that MG1 undergoes productive replication and exerts direct oncolysis of established EWS cell lines, doxorubicin-resistant EWS cell lines and patient-derived Ewing sarcoma (PDES) cell cultures more recently established from tumours. In contrast, primary mesenchymal stem cells (the likely cell of origin of EWS) were resistant to MG1, with IFN-I being a major determinant of tumour cell selectivity. MG1 treated PBMC produced IFN-I and killed EWS cells in vitro, in a natural killer (NK) cell-dependent manner. The ability of MG1 to kill EWS cells directly and to stimulate NK cell cytotoxicity against this tumour suggests that Maraba virus MG1 may provide therapeutic benefit for EWS patients where the efficacy of conventional treatments is currently limited.

cancer biology↗