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Ramesh-Kumar, D.

Publications and source records attributed to Ramesh-Kumar, D..

2 recordsLinked to original sources

Co-targeting MERTK and EGFR with a Bispecific Antibody Overcomes Drug Resistance Across Mutations in Exons 19, 20, and 21

Resistance of lung cancer to EGFR-specific tyrosine kinase inhibitors (TKIs), such as osimertinib, often arises from secondary mutations or the activation of bypass signaling pathways. We noted elevated levels of GAS6 and its receptor, MERTK, in patients acquiring resistance to osimertinib, hence hypothesized that the GAS6-MERTK axis can serve as a therapeutic target. GAS6 promoted cell survival and an anti-GAS6 antibody we generated delayed tumor relapses in a xenograft model. Likewise, MERTK ablation sensitized lung cancer cells to osimertinib due to a newly described EGFR-to-MERTK crosstalk. Hence, we developed Bis3, a bispecific antibody targeting both MERTK and EGFR and promoting their degradation. Bis3 plus TKIs cooperatively inhibited the growth of TKI-resistant lung cancer spheroids and markedly delayed relapses of patient-derived xenografts harboring the clinically challenging exon-20 mutations. These findings establish the GAS6-MERTK axis as a driver of drug resistance and provide a rationale for clinical development of Bis3.

cancer biology↗

Sensitizing Immune-Refractory Ovarian Tumors via p53 Mutation-Tailored Immunotherapy

High-grade serous ovarian cancer demonstrates limited responsiveness to immune checkpoint inhibitors, owing in part to immunosuppressive environments shaped by nearly universal p53 aberrations. Utilizing an immunocompetent mouse model and individual p53 mutations, we identified a dependence of the p53-R270H mutation (equivalent of human R273H) on regulatory T cells (Tregs) and the PD-1/PD-L1 axis. Analysis of patient datasets associated R273H with elevated levels of two p53 targets, PD-L1 and amphiregulin (AREG), a Tregs growth factor. In contrast to p53-R172H tumors, where there was limited activity, dual antibody therapy targeting AREG and PD-L1 selectively and effectively inhibited R270H tumors. This involved polarization toward M1 macrophages, infiltration of CD8+ T cells, diminished Ly6G+ neutrophils and downregulation of interleukin-4. In patient-derived R273C organoids, the combination treatment reduced the CD4/CD8 ratio. This study is the first to establish a mutation-tailored therapeutic approach that leverages the capacity of p53 to modulate immunosuppressive mechanisms.

cancer biology↗