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Roswell Park And Generate Biomedicines Announce First Patient Dosed In First-In-Human Clinical Trial Evaluating GB-5267, Investigational, Autologous IL-18 Armored CAR T-Cell Therapy
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Engineered with AI to optimize T-cell function in solid tumors, GB-5267 is the first next-generation cell therapy for ovarian cancer to enter clinical trials

First patient treated in new clinical trial underway at Roswell Park

Treatment is designed to avoid pre-infusion chemotherapy and its side effects

GB-5267 targets MUC16, a biomarker over-expressed in +80% of ovarian tumors

BUFFALO, N.Y. and SOMERVILLE, Mass., Oct. 01, 2026 (GLOBE NEWSWIRE) -- Roswell Park Comprehensive Cancer Center ("Roswell Park") and Generate Biomedicines, Inc. ("Generate") today announced that the first patient has been dosed in a first-in-human clinical trial evaluating GB-5267, an investigational, autologous IL-18 armored CAR T-cell therapy designed to overcome key barriers that have limited the success of cellular therapies in ovarian cancer and other solid tumors. GB-5267 targets the antigen MUC16, which is over-expressed by more than 80% of ovarian tumors and helps them grow, spread, and hide from the immune system. The trial is recruiting patients whose disease has returned after treatment or does not respond to platinum-based chemotherapy, the standard first-line treatment.

Led by Principal Investigator Emese Zsiros, MD, PhD, FACOG, Chair of Gynecologic Oncology at Roswell Park, the phase 1 clinical trial (NCT07489287) will evaluate the safety and tolerability of GB-5267.

Each patient’s T cells, immune cells capable of killing cancer cells, will be collected, genetically engineered, and expanded in Roswell Park’s GMP Engineering & Cell Manufacturing Facility before being returned to the patient to target an attack against the tumor.

While T-cell therapies have revolutionized the treatment of blood cancers, leading to long-term remission or even cure for many patients, solid tumors — cancers that grow in organs or tissue — have posed more of a challenge. That’s because the tumor’s microenvironment, a protective cocoon that surrounds it, prevents immune cells from entering the tumor or even being able to recognize it. But investigators believe they have found a way around that roadblock.

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