BioVaxys to Present New Data on its DPX Immune Educating Platform at Personalized Cancer Vaccine Summit

On September 4, 2024 BioVaxys Technology Corp. (CSE: BIOV) (FRA: 5LB) (OTCQB: BVAXF) ("BioVaxys" or the Company") reported that it has been invited to present "A Novel Delivery System for Personalized Peptide & mRNA Vaccines for More Targeted Therapies" at The Personalized Cancer Vaccine Summit (formerly known as the mRNA Cancer Vaccine Summit) to be held December 3-5, 2024, in Boston, MA (Press release, BioVaxys Technology, SEP 4, 2024, View Source [SID1234646353]).

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The 3-day program brings together top industry players developing individualized approaches in mRNA, DNA, peptide, viral, dendritic cells, and optimizing personalized cancer vaccine approaches with immune-checkpoint inhibitor combinations to combat multiple tumor specific pathways and minimize off-target effects. In addition to BioVaxys, other companies and organizations invited to present include BioNTec, CureVac, ImVax, The Mayo Clinic, and NEC Biotherapeutics.

BioVaxys Chief Medical Officer David Berd, MD, will present new data from recent in vivo studies of DPX conducted by Pramrod K. Srivastava, Ph.D., M.D., Professor, Department of Immunology, Director, Center for Immunotherapy of Cancer (SITC) (Free SITC Whitepaper) and Infectious Diseases and the Carole and Ray Neag Comprehensive Cancer Center at UConn Health, University of Connecticut, and Hakimeh Ebrahimi-Nik, DVM, Ph.D., Assistant Professor, Medical Oncology, The Ohio State University Comprehensive Cancer Center.

BioVaxys President and Chief Operating Officer Kenneth Kovan stated, "We will be withholding detailed disclosure on potential new therapeutic roles for DPX and neoepitopes until the conference, but suffice to say, the data suggests DPX has a significant role in the delivery of tumor neoepitope vaccines that induce tumor rejection, and DPX on its own appears to have an anti-tumor capacity."

BioVaxys is advancing additional studies with Dr. Nik and her research team on DPX delivering tumor neoepitope vaccines that induce tumor rejection, and DPX anti-tumor capacity.