Synthesis and characterization of targeted 17β-hydroxysteroid dehydrogenase type 7 inhibitors

Jean-Yves Sancéau1, René Maltais1, Ming Zhou2

  • 1Organic Synthesis Service, CHU de Québec Research Center-Université Laval, Québec, QC G1V 4G2, Canada; Endocrinology and Nephrology Unit, CHU de Québec Research Center-Université Laval, Québec, QC G1V 4G2, Canada.

Insights

Novel carbamate derivatives were synthesized and evaluated as inhibitors of 17β-hydroxysteroid dehydrogenase type 7 (17β-HSD7). Compound 4, featuring a C17-spiranic E-ring, demonstrated superior inhibitory activity against 17β-HSD7, offering a promising avenue for hormone-dependent cancer treatment.

Area of Science:

  • Medicinal Chemistry
  • Enzyme Inhibition
  • Hormone-Dependent Cancers

Background:

  • Sex steroid hormones like estradiol (E2) and dihydrotestosterone (DHT) are implicated in hormone-dependent cancers.
  • 17β-hydroxysteroid dehydrogenase type 7 (17β-HSD7) is a key enzyme regulating E2 and DHT levels.
  • Targeting 17β-HSD7 offers a dual approach to decrease E2 and increase DHT, making it a potential therapeutic target for breast cancer.

Purpose of the Study:

  • To synthesize and characterize novel carbamate derivatives as potential 17β-HSD7 inhibitors.
  • To evaluate the in vitro inhibitory activity of these novel compounds against 17β-HSD7.
  • To compare the efficacy of different structural modifications on 17β-HSD7 inhibition.

Main Methods:

  • Chemical synthesis of novel carbamate derivatives (compounds 3 and 4) based on a 4-aza-5α-androstane nucleus.
  • Molecular characterization of the synthesized compounds.
  • In vitro enzymatic assays to determine the inhibitory activity (IC50 values) against 17β-HSD7-mediated transformation of estrone (E1) to estradiol (E2).

Main Results:

  • Both novel carbamate derivatives (3 and 4) inhibited 17β-HSD7 in vitro.
  • Compound 4, featuring a (17R)-spirocarbamate, exhibited significantly higher inhibitory potency (IC50 = 63 nM) compared to compound 3 (IC50 = 900 nM).
  • Compound 4 was 14 times more potent than compound 3 and comparable in activity to the reference inhibitor 1 (IC50 = 111 nM), with a modified hydrophobic side chain presentation.

Conclusions:

  • The introduction of a (17R)-spirocarbamate moiety is a more effective strategy for enhancing 17β-HSD7 inhibition than replacing the C-2 methylene with oxygen.
  • Novel carbamate derivatives, particularly compound 4, show promising potential as 17β-HSD7 inhibitors for breast cancer therapy.
  • Structural modifications, including the C17-spiranic E-ring, can optimize inhibitory activity without compromising efficacy.

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