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First-in-Class Small Molecule to Inhibit CYP11A1 and Steroid Hormone Biosynthesis
Mari Karimaa1, Reetta Riikonen1, Henna Kettunen1
1Orion Corporation Orion Pharma, Espoo, Finland.
Abstract:
Binding of steroid hormones to their cognate receptors regulates the growth of most prostate and breast cancers. We hypothesized that CYP11A inhibition might halt the synthesis of all steroid hormones, because CYP11A is the only enzyme that catalyses the first step of steroid hormone biosynthesis. We speculated that a CYP11A inhibitor could be administered safely provided that the steroids essential for life are replaced. Virtual screening and systematic structure-activity relationship optimization were used to develop ODM-208, the first-in-class, selective, nonsteroidal, oral CYP11A1 inhibitor. Safety of ODM-208 was assessed in rats and Beagle dogs, and efficacy in a VCaP castration-resistant prostate cancer (CRPC) xenograft mouse model, in mice and dogs, and in six patients with metastatic CRPC. Blood steroid hormone concentrations were measured using liquid chromatography-mass spectrometry. ODM-208 binds to CYP11A1 and inhibited its enzymatic activity. ODM-208 administration led to rapid, complete, durable, and reversible inhibition of the steroid hormone biosynthesis in an adrenocortical carcinoma cell model in vitro, in adult noncastrated male mice and dogs, and in patients with CRPC. All measured serum steroid hormone concentrations reached undetectable levels within a few weeks from the start of ODM-208 administration. ODM-208 was well tolerated with steroid hormone replacement. The toxicity findings were considered related to CYP11A1 inhibition and were reversed after stopping of the compound administration. Steroid hormone biosynthesis can be effectively inhibited with a small-molecule inhibitor of CYP11A1. The findings suggest that administration of ODM-208 is feasible with concomitant corticosteroid replacement therapy.
Insights
A new drug, ODM-208, effectively inhibits all steroid hormone synthesis by targeting CYP11A1. This approach shows promise for treating hormone-driven cancers like castration-resistant prostate cancer when essential steroids are replaced.
Area of Science:
- Endocrinology
- Oncology
- Drug Discovery
Background:
- Steroid hormone receptor binding drives growth in many prostate and breast cancers.
- CYP11A1 catalyzes the crucial initial step in all steroid hormone biosynthesis.
- Targeting CYP11A1 offers a potential strategy to halt steroidogenesis.
Purpose of the Study:
- To develop a selective, orally available inhibitor of CYP11A1.
- To assess the safety and efficacy of the developed inhibitor, ODM-208.
- To evaluate the feasibility of inhibiting steroid hormone biosynthesis in cancer patients.
Main Methods:
- Virtual screening and structure-activity relationship optimization were employed to design ODM-208.
- Safety and efficacy studies were conducted in animal models (rats, dogs, mice) and human patients.
- Liquid chromatography-mass spectrometry was used to measure blood steroid hormone concentrations.
Main Results:
- ODM-208 was identified as the first selective, nonsteroidal, oral CYP11A1 inhibitor.
- ODM-208 demonstrated rapid, complete, durable, and reversible inhibition of steroid hormone biosynthesis in vitro and in vivo.
- Serum steroid hormone levels became undetectable within weeks, with good tolerability when essential steroids were replaced.
Conclusions:
- Small-molecule inhibition of CYP11A1 can effectively suppress steroid hormone biosynthesis.
- ODM-208 is a feasible therapeutic agent for hormone-dependent cancers, particularly when combined with corticosteroid replacement therapy.
- This strategy holds potential for managing castration-resistant prostate cancer and other steroid-driven malignancies.
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