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Ernexa Therapeutics develops cell therapies for advanced cancer and autoimmune disease using engineered induced pluripotent stem cells that are transformed into synthetic allogeneic induced mesenchymal stem cells. News about the company centers on ERNA-101, its lead iMSC candidate for ovarian cancer, including preclinical tumor-model results, immuno-oncology combinations and scientific discussions of the ovarian cancer treatment landscape.
Company updates also cover ERNA-201 for autoimmune inflammation, regulatory interactions tied to cell-therapy development, investor presentations, collaboration or market-entry programs, and capital-structure actions such as common-stock reverse splits and Nasdaq listing compliance.
Eterna Therapeutics Inc. (Nasdaq: ERNA) presents at the ASGCT 27th Annual Meeting on the development of a beta 2 microglobulin-knockout (B2M-KO) iMSC line with enhanced immunosuppressive activity and stealthing features. The innovation aims to improve MSCs' therapeutic potential by addressing issues related to variability, in vivo persistence, and effector function. The presentation highlights the promising role of B2M-KO iMSCs in treating inflammatory diseases.
Eterna Therapeutics Inc. (Nasdaq: ERNA) appoints Dr. Mahendra Rao, an expert in regenerative medicine and cell engineering, to its Scientific Advisory Board. Dr. Rao brings extensive experience in clinical trials and stem cell research to support Eterna's mRNA cell engineering initiatives.
Eterna Therapeutics Inc. (ERNA) is set to present at the ASGCT 27th Annual Meeting on the development of a mRNA-engineered iPSC line mimicking native B2M expression by inserting HLA-E at the B2M locus. The technology aims to enhance safety and efficacy in developing therapeutics, providing potential benefits for the medical field.
Eterna Therapeutics Inc. will present at the ASGCT 27th Annual Meeting on the development of a beta 2 microglobulin-knockout (B2M-KO) iMSC line with enhanced immunosuppressive activity and stealthing features, potentially improving the therapeutic potential of MSCs in treating inflammatory diseases. The presentation aims to address challenges such as variability in therapeutic responses and in vivo persistence of MSCs, offering promising solutions for autoimmune and inflammatory indications.
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