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Biology subjects

Kharfan-Dabaja, M.

Publications and source records attributed to Kharfan-Dabaja, M..

2 recordsLinked to original sources

Single CAR-Dual target: Intracranial Delivery of Anti-PD-L1 CAR T Cells Effectively Eradicates Glioma and Immunosuppressive Cells in the Tumor Microenvironment.

With the goal to overcome the limited treatment options and poor prognosis of glioblastoma (GBM), we have developed a PD-L1-targeting CAR T cell therapy, MC9999. In vitro experiments with MC9999 CAR T cells derived from GBM patients exhibited potent, antigen-specific cytotoxicity against autologous tumor cells and immunosuppressive cells within the tumor microenvironment (TME). In an orthotopic GBM model using patient-derived brain tumor-initiating cells, the intracranial delivery of MC9999 CAR T cells eradicated established tumors and improved survival. Single-cell RNA sequencing indicated that MC9999 CAR T cells activate interferon pathways, leading to GBM cell apoptosis. Multi-immunohistochemistry confirmed localized PD-L1 expression on tumor cells and TME-residing macrophages, but not in neurons or glia in patient tissue. The local delivery of MC9999 CAR T cells may be a safe, effective approach for simultaneously targeting PD-L1-positive GBM and its immunosuppressive TME and a strategy to overcome immune evasion and enhance the therapeutic potency of CAR T cell therapy against GBM.

cancer biology↗

CAR T-cell therapy- Paving the way for sensitized kidney transplant patients.

Anti-HLA donor specific antibodies have been extensively documented for their critical role in kidney transplant rejection and resulting adverse outcomes. Several approaches have been employed to desensitize these patients; however, none of these explored therapeutic approaches has exhibited enduring clinical benefits. In this study, we explore a novel strategy of utilizing chimeric antigen receptor T cells (CAR T-cells) to target B cells in sensitized kidney transplant recipients. Specifically, we investigate the potential of our innovative MC10029 CAR T-cells, which are designed to recognize the B cell activating factor receptor (BAFF-R). BAFF-R is predominantly expressed on mature B cells and plays a crucial role in their survival, as well as in the promotion of autoreactive B cell. Our data revealed that sensitized patients B cells exhibited high levels of BAFF-R expression. We have successfully generated patient-derived MC10029 CAR T-cells from 6 sensitized patients. All these patient-derived MC10029 CAR T-cells consistently exhibited antigen-specific cytotoxicity against autologous B cells, accompanied by the release of cytotoxic granules. We have recently obtained FDA approval of an Investigational New Drug application for MC10029 CAR T-cell therapy in B-cell hematological diseases. This significant milestone paves the way for the pioneering launch of a human clinical trial, marking the first-ever application of CAR T-cell therapy in sensitized patients waiting for life-saving organ transplants.

immunology↗