Targeting androgen biosynthesis in prostate cancer: implications on endocrine physiology.

Heather Mannuel, Rana Malek, Arif Hussain, Ghazal Kango

Journal: Current opinion in oncology 2024;36(3):195-201

PMID: 38573209

Abstract

PURPOSE OF REVIEW

Targeting specific steroidogenic enzymes is effective in decreasing testosterone synthesis, resulting in significant antitumor effects in prostate cancer. Such treatments result in disruptions of complicated and intertwining pathways with systemic physiologic consequences via effects on the adrenal gland and renin-angiotensin-aldosterone axis. This review highlights some of these aspects that need to be taken into consideration when treating patients with androgen biosynthesis inhibitors.

RECENT FINDINGS

Targeting CYP17A1, a key enzyme involved in androgen biosynthesis, is a well established treatment in prostate cancer. More recently, efforts are underway to target a gatekeeper enzyme of steroidogenesis, CYP11A1. This enzyme mediates conversion of cholesterol to pregnenolone, the first step in steroid hormone biogenesis. Studies are beginning to demonstrate antitumor effects of ODM-208, a CYP11A1 inhibitor in prostate cancer. Although anticipated to have a therapeutic role in prostate cancer, there are potential downstream effects of CYP11A1 targeting arising from suppression of the entire adrenal cortex, including long-term adrenal insufficiency and possibly cardiovascular dysregulation.

SUMMARY

Agents targeting androgen biosynthesis can have systemic implications. Balancing management of prostate cancer with better understanding of the mechanisms associated with potential side effects will allow for patients to obtain improved antitumor benefit while mitigating against treatment-associated adverse effects.

Copyright © 2024 Wolters Kluwer Health, Inc. All rights reserved.

Address: University of Maryland Greenebaum Comprehensive Cancer Center.; Department of Medicine University of Maryland School of Medicine.; Department of Medicine University of Maryland School of Medicine.; Division of Endocrinology.; University of Maryland Greenebaum Comprehensive Cancer Center.; Department of Medicine University of Maryland School of Medicine.; Baltimore VA Medical Center, Baltimore, Maryland, USA.; University of Maryland Greenebaum Comprehensive Cancer Center.; Department of Medicine University of Maryland School of Medicine.; Department of Pathology.; Department of Biochemistry and Molecular Biology.; Baltimore VA Medical Center, Baltimore, Maryland, USA.
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