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Cancer vaccine: Moderna/Merck begin late-stage study

Merck and Moderna on Wednesday announced the initiation of the late-stage trial evaluating V940 (mRNA-4157), an investigational individualized neoantigen therapy (INT), in combination with KEYTRUDA, Merck’s anti-PD-1 therapy, as a vaccine for cancer.

Global recruitment in V940-001 has begun, and the first patients are now enrolling in Australia.

“As we continue our efforts to advance novel treatment options for patients with high-risk Stage IIB-IV melanoma, the initiation of the V940-001 Phase 3 trial represents an important step forward in these efforts and our study of individualized neoantigen therapy,” said Dr. Marjorie Green, senior vice president and head of late-stage oncology, global clinical development, Merck Research Laboratories. “We look forward to continuing to collaborate with Moderna to evaluate this promising new approach with V940 (mRNA-4157), while also building on a standard of care laid by KEYTRUDA.”

“The initiation of the V940-001 Phase 3 trial is an exciting and important milestone for us as we work with our colleagues at Merck and the melanoma patient community to investigate how individualized neoantigen therapy may potentially transform the treatment of the most serious form of skin cancer,” said Kyle Holen, M.D., Moderna’s Senior Vice President and Head of Development, Therapeutics and Oncology. “We thank the patients, investigators, and clinical trial sites across the world for helping us advance our efforts in this area.”

V940-001 is a Phase 3 global, randomized, double-blind, placebo- and active-comparator-controlled study designed to evaluate the safety and efficacy of V940 (mRNA-4157) in combination with KEYTRUDA in people with resected high-risk (Stage IIB-IV) melanoma compared to KEYTRUDA alone. The trial is slated to enroll approximately 1,089 patients at more than 165 sites in over 25 countries around the world. The primary endpoint of the study is recurrence-free survival (RFS), and secondary endpoints include distant metastasis-free survival (DMFS), overall survival (OS), and safety.

Based on data from the Phase 2b KEYNOTE-942/mRNA-4157-P201 study, the U.S. Food and Drug Administration and European Medicines Agency granted Breakthrough Therapy Designation and the Priority Medicines (PRIME) scheme, respectively, for V940 (mRNA-4157) in combination with KEYTRUDA for the adjuvant treatment of patients with high-risk melanoma. The companies presented the study’s primary endpoint, RFS, in April 2023 at the American Association for Cancer Research (AACR) Annual Meeting and presented the study’s key secondary endpoint, DMFS, in June 2023 at the American Society of Clinical Oncology (ASCO) Annual Meeting. The companies also plan to expand the development program to additional tumor types, including non-small cell lung cancer.

About V940 (mRNA-4157)

V940 (mRNA-4157) is a novel investigational messenger ribonucleic acid (mRNA)-based individualized neoantigen therapy (INT) consisting of a single synthetic mRNA coding for up to 34 neoantigens that is designed and produced based on the unique mutational signature of the DNA sequence of the patient’s tumor. Upon administration into the body, the algorithmically derived and RNA-encoded neoantigen sequences are endogenously translated and undergo natural cellular antigen processing and presentation, a key step in adaptive immunity.

Individualized neoantigen therapies are designed to train and activate the immune system so that a patient can generate an antitumor response specific to their tumor mutation signature. V940 (mRNA-4157) is designed to stimulate an immune response by generating specific T-cell responses based on the unique mutational signature of a patient’s tumor. KEYTRUDA is an immunotherapy that works by increasing the ability of the body’s immune system to help detect and fight tumor cells. Based on early clinical studies and data from the Phase 2b KEYNOTE-942/mRNA-4157-P201 trial, combining V940 (mRNA-4157) with KEYTRUDA may provide an additive benefit over KEYTRUDA alone.

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