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Risi, G.

Publications and source records attributed to Risi, G..

2 recordsLinked to original sources

The anti-metabolite KAT/3BP has in vitro and in vivo anti-tumor activity in lymphoma models

Reprogramming of cellular metabolism is a hallmark of cancer, offering therapeutic opportunities to target cancer cell vulnerabilities for therapeutic purposes. 3-Bromopyruvate (3BP), a small alkylating agent, acts as an anti-metabolite to vital substrates in cancer metabolism and exhibits antitumor activity across various cancer types, but the unformulated 3BP can cause high toxicity. This study explores the efficacy of the 3BP clinical derivative KAT/3BP, currently in phase 1 for patients with hepatocellular carcinoma, in lymphoma models. In vitro, KAT/3BP demonstrated cytotoxicity across 12 lymphoma cell lines, including diffuse large B-cell lymphoma and mantle cell lymphoma, with a median IC50 of 3.7 M. KAT/3BP was also effective against lymphoma cell lines with acquired resistance to FDA-approved therapies. In vivo, we observed reduced tumor size in a syngeneic mouse model, with the combination of oral and intratumoral administration proving most effective. Additionally, KAT/3BP exhibited synergistic activity when combined with lymphoma therapies, including bendamustine and R-CHOP. These findings underscore the potential of KAT/3BP as a novel therapeutic option for a single agent or a combination of lymphomas.

cancer biology↗

Assessment of lisavanbulin (BAL101553) as an anti-lymphoma agent

Microtubules are major components of the cellular cytoskeleton, ubiquitously founded in all eukaryotic cells. They are involved in mitosis, cell motility, intracellular protein and organelle transport, and maintenance of cytoskeletal shape. Avanbulin (BAL27862) is a microtubule-targeted agent (MTA) that promotes tumor cell death by destabilization of microtubules. Due to its unique binding to the colchicine site of tubulin, differently from other MTAs, avanbulin has previously shown activity in solid tumor cell lines. Its prodrug, lisavanbulin (BAL101553), has shown early signs of clinical activity, especially in tumors with high EB1 expression. Here, we assessed the preclinical anti-tumor activity of avanbulin in diffuse large B cell lymphoma (DLBCL) and the pattern of expression of EB1 in DLBCL cell lines and clinical specimens. Avanbulin showed a potent in vitro anti-lymphoma activity, which was mainly cytotoxic with potent and rapid apoptosis induction. Median IC50 was around 10nM in both activated B cell like (ABC) and germinal center B cell like (GCB) DLBCL. Half of the cell lines tested showed an induction of apoptosis already in the first 24h of treatment, the other half in the first 48h. EB1 showed expression in DLBCL clinical specimens, opening the possibility for a cohort of patients that could potentially benefit from treatment with lisavanbulin. These data show the basis for further preclinical and clinical evaluation of lisavanbulin in the lymphoma field.

cancer biology↗