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Recent progress in development of aromatase inhibitors
1Department of Medicine, Pennsylvania State University College of Medicine, Milton S. Hershey Medical Center, Hershey, PA 17033.
Abstract:
In postmenopausal women with breast cancer, aromatase, which is the enzyme converting androstenedione to estrone and testosterone to estradiol, is the rate-limiting step in estrogen biosynthesis. The currently available aromatase inhibitor, aminoglutethimide, effectively blocks estrogen production and products tumor regression in patients previously treated with tamoxifen. This drug, however, produces frequent side effects and blocks steroidogenic steps other than the aromatase enzyme. Thus, newer aromatase inhibitors with greater potency and specificity are under intense study. More than 20 such compounds have recently been developed. In several clinical trials, 4-hydroxyandrostenedione, given parenterally, has been highly active and specific for aromatase inhibition in patients with breast cancer. In two large recent studies, one-third of heavily pretreated woman experienced objective tumor regression with this therapy. CGS 16949A, a newer agent, is also in Phase III clinical trials. This compound is an imidazole derivative with nearly 1000-fold greater potency than aminoglutethimide. An initial Phase I study compared the potency of 0.6-16 mg daily in 12 postmenopausal women and found maximal suppression of urinary and plasma estrogens with 2 mg daily. The degree of inhibition was similar to that induced by aminoglutethimide or by surgical adrenalectomy. No CNS, hematologic or biochemical toxicity was observed. A larger Phase II study in 54 patients confirmed this high degree of potency of CGS since a plateau effect was observed at the 1.8, 2 and 4 mg daily doses. The endocrine effects were not absolutely specific as a blunting of ACTH-stimulated but not basal aldosterone levels were observed. This and other emerging aromatase inhibitors offer promise as pharmacologic methods to inhibit estrogen production specifically and without side effects.
Insights
Newer aromatase inhibitors show promise for treating postmenopausal breast cancer by potently and specifically blocking estrogen production, offering an alternative to aminoglutethimide with fewer side effects.
Area of Science:
- Endocrinology
- Oncology
- Pharmacology
Background:
- Aromatase is key in estrogen biosynthesis, a critical factor in postmenopausal breast cancer.
- Aminoglutethimide, a current aromatase inhibitor, has limitations including side effects and lack of specificity.
- Development of novel, potent, and specific aromatase inhibitors is crucial for improved breast cancer treatment.
Purpose of the Study:
- To evaluate the efficacy and safety of novel aromatase inhibitors, specifically CGS 16949A.
- To compare the potency and specificity of CGS 16949A with existing treatments.
- To assess the potential of new aromatase inhibitors as targeted therapies for breast cancer.
Main Methods:
- Clinical trials (Phase I and II) involving postmenopausal women with breast cancer.
- Administration of varying doses of CGS 16949A to assess estrogen suppression.
- Monitoring of hormonal levels (estrogens, aldosterone) and toxicity (CNS, hematologic, biochemical).
Main Results:
- CGS 16949A demonstrated potent inhibition of plasma and urinary estrogens, comparable to aminoglutethimide and surgical adrenalectomy at low doses (2 mg daily).
- Maximal estrogen suppression was observed with CGS 16949A at doses of 1.8-4 mg daily, indicating a plateau effect.
- No significant CNS, hematologic, or biochemical toxicity was noted with CGS 16949A; however, a blunting of ACTH-stimulated aldosterone levels was observed.
Conclusions:
- Emerging aromatase inhibitors like CGS 16949A offer a promising, specific, and well-tolerated approach to inhibiting estrogen production in breast cancer.
- These newer agents represent a significant advancement over older treatments, potentially leading to improved patient outcomes.
- Further research and clinical trials are warranted to fully establish the role of these inhibitors in breast cancer therapy.