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Aromatase inhibitors--mechanisms for non-steroidal inhibitors

H V Vanden Bossche1, H Moereels, L M Koymans

  • 1Department of Comparative Biochemistry, Janssen Research Foundation, Beerse, Belgium.

Insights

Aromatase inhibitors, crucial for treating hormone-dependent cancers, are being refined for greater selectivity and reduced side effects. Research focuses on developing potent, targeted drugs like triazole derivatives to inhibit estrogen synthesis effectively.

Area of Science:

  • Biochemistry
  • Endocrinology
  • Pharmacology

Background:

  • Estrogen biosynthesis, catalyzed by aromatase (CYP19A1), is vital in various tissues and implicated in hormone-dependent cancers like breast and endometrial adenocarcinoma.
  • Extragonadal estrogen production, particularly from adipose tissue, plays a significant pathophysiological role.
  • Aromatase, an endoplasmic reticulum enzyme, comprises cytochrome P450 (P450 Arom) and NADPH cytochrome P450 reductase.

Purpose of the Study:

  • To explore the development of selective aromatase inhibitors.
  • To identify novel drug candidates with improved potency and reduced off-target effects compared to earlier inhibitors like aminoglutethimide.

Main Methods:

  • Analysis of amino acid sequences of human P450 19 to understand its unique structure.
  • Synthesis and evaluation of structural analogues of nonsteroidal aromatase inhibitors.
  • Computer modeling to study the interaction of inhibitors with the P450 19 enzyme.

Main Results:

  • Aminoglutethimide (AG) was the first reversible, nonsteroidal aromatase inhibitor, but lacked specificity and had tolerability issues.
  • Structural modifications led to analogues like rogletimide and fadrozole, with varying potency and side effect profiles.
  • Potent triazole derivatives, such as vorozole (the (+)-S-enantiomer of R 76 713), demonstrated selective aromatase inhibition with specific interactions modeled within the P450 19 active site.

Conclusions:

  • The unique structure of P450 19 makes it a promising target for selective inhibitor development.
  • Newer generations of aromatase inhibitors, particularly triazole derivatives like vorozole, offer improved selectivity and potency.
  • Understanding enzyme-inhibitor interactions through modeling aids in designing more effective and safer therapeutic agents.

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