Company intelligence
Bantam Pharmaceutical
First-in-class small molecule cancer therapeutics for difficult-to-treat hematological and solid tumors
About Bantam Pharmaceutical
Bantam Pharmaceutical is a drug discovery and development company leveraging the power of mitochondrial dynamics to address critical unmet needs in oncology. Using its unique expertise in mitochondrial cellular biology, Bantam is advancing novel, first-in-class oral small molecule therapeutics for difficult-to-treat hematological and solid tumors. The company currently holds an active Investigational New Drug (IND) application in the U.S. and a Clinical Trial Application (CTA) in Canada for its lead candidate, BTM-3566, targeting B-cell malignancies, with plans to expand clinical development into solid tumors. About BTM-3566 BTM-3566 is a novel, orally available small molecule designed to target a wide range of cancers, including both hematologic and solid tumors. Its initial clinical focus is on mature B-cell lymphomas, such as mantle cell lymphoma (MCL), diffuse large B-cell lymphoma (DLBCL), and follicular lymphoma (FL). In preclinical studies, BTM-3566 demonstrated potent anti-cancer activity, driving significant tumor regression – and in many cases, complete tumor elimination – in models resistant to standard treatments, including CAR-T cell therapy. BTM-3566 works by disrupting the mitochondrial function in tumor cells, triggering their natural cell death process (apoptosis). With its unique mechanism of action and strong preclinical data, Bantam also plans to expand clinical development into solid tumors, broadening its potential impact for patients with limited treatment options.
Verified activity
Signals from Bantam Pharmaceutical
2 published signals
Research & Knowledge
Bantam Pharmaceutical published a randomized phase 2 trial comparing azacitidine plus venetoclax to induction chemotherapy in previously untreated, induction-eligible patients with AML.
Reported by Glen Weiss, MD, MBA
Research & Knowledge
Bantam Pharmaceutical is conducting a prospectively evaluating ctDNA after curative-intent treatment for stage II-III gastric, gastroesophageal junction, and esophageal cancers using the ALMA platform.
Reported by Glen Weiss, MD, MBA