Date published: 2025-9-15

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AKR1D1 Inhibitors

AKR1D1 inhibitors, in the context of this list, are primarily focused on chemicals that indirectly inhibit the activity of AKR1D1 by modulating steroid hormone metabolism. AKR1D1 plays a significant role in the reduction of steroids, which is crucial for the production of biologically active steroids. The chemicals listed, such as Finasteride and Dutasteride, are known for their ability to inhibit the 5α-reductase enzyme, leading to decreased production of dihydrotestosterone (DHT). This reduction in DHT levels can have a downstream effect on the activity of AKR1D1, as the balance and availability of steroid hormones are altered.

Other chemicals like Ketoconazole and Abiraterone work by inhibiting enzymes involved in steroid synthesis, such as CYP17A1. This results in altered steroid hormone levels, which could potentially influence the activity of AKR1D1. Aromatase inhibitors like Letrozole and Anastrozole specifically target estrogen synthesis. By altering estrogen levels, they may indirectly impact the activity of enzymes involved in steroid hormone metabolism, including AKR1D1. In addition, antiandrogens such as Flutamide and Bicalutamide, by modulating androgen levels, can have an indirect effect on the steroid metabolism pathways in which AKR1D1 is involved. Steroidal compounds like Spironolactone and Eplerenone, known for their antimineralocorticoid activity, may also influence the steroid hormone milieu, potentially affecting AKR1D1 activity. Lastly, Mifepristone, with its anti-progestational and anti-glucocorticoid properties, might also have an indirect influence on AKR1D1 through its broad spectrum of action in steroid hormone regulation.

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