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A Compound That Inhibits Glycolysis in Prostate Cancer Controls Growth of Advanced Prostate Cancer. | LitMetric

AI Article Synopsis

  • Metastatic castration-resistant prostate cancer is still incurable, despite recent treatments, and tumors show increased glycolysis as they progress.
  • The study introduces BKIDC-1553, a new small-molecule compound that inhibits glycolysis specifically in prostate cancer cells without causing severe toxicity, and demonstrates promising results in preclinical models.
  • BKIDC-1553 shows effective growth inhibition in various prostate cancer models and has safety and pharmacokinetic properties that suggest it’s ready for clinical trials to treat advanced prostate cancer.

Article Abstract

Metastatic castration-resistant prostate cancer remains incurable regardless of recent therapeutic advances. Prostate cancer tumors display highly glycolytic phenotypes as the cancer progresses. Nonspecific inhibitors of glycolysis have not been utilized successfully for chemotherapy, because of their penchant to cause systemic toxicity. This study reports the preclinical activity, safety, and pharmacokinetics of a novel small-molecule preclinical candidate, BKIDC-1553, with antiglycolytic activity. We tested a large battery of prostate cancer cell lines for inhibition of cell proliferation, in vitro. Cell-cycle, metabolic, and enzymatic assays were used to demonstrate their mechanism of action. A human patient-derived xenograft model implanted in mice and a human organoid were studied for sensitivity to our BKIDC preclinical candidate. A battery of pharmacokinetic experiments, absorption, distribution, metabolism, and excretion experiments, and in vitro and in vivo toxicology experiments were carried out to assess readiness for clinical trials. We demonstrate a new class of small-molecule inhibitors where antiglycolytic activity in prostate cancer cell lines is mediated through inhibition of hexokinase 2. These compounds display selective growth inhibition across multiple prostate cancer models. We describe a lead BKIDC-1553 that demonstrates promising activity in a preclinical xenograft model of advanced prostate cancer, equivalent to that of enzalutamide. BKIDC-1553 demonstrates safety and pharmacologic properties consistent with a compound that can be taken into human studies with expectations of a good safety margin and predicted dosing for efficacy. This work supports testing BKIDC-1553 and its derivatives in clinical trials for patients with advanced prostate cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11219269PMC
http://dx.doi.org/10.1158/1535-7163.MCT-23-0540DOI Listing

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