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Recent Advances in Therapeutic Potential of Dual-Acting Aromatase/COX-2
Ali Aliabadi1, Mobina Tajdari1,2, Sara Fakharinia1
1Department of Medicinal Chemistry, Faculty of Pharmacy, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.
Abstract:
Aromatase, a crucial enzyme assigned for transforming androgen into estrogen, has a vital function in the advancement of drug-resistant breast cancers that respond to endocrine treatments. Aromatase (CYP19A1) is a monooxygenase from the cytochrome P450 family that is involved in the conversion of androgens to estrogens. Breast cancer cells express aromatase activity, indicating that the tumor cells may be able to produce local estrogen. By inhibiting aromatase, serum estrogen levels decrease, which, in turn, hinders estrogen-driven cancer cell growth in hormone receptor-positive breast cancer cases. In this sense, the introduction of novel aromatase inhibitors could be a significant step forward in the fight against cancer. This is especially true in hormone-dependent cancers. Many compounds have been introduced as aromatase inhibitors, classified as steroidal or nonsteroidal. However, it should be noted that these drugs have encountered resistance in numerous cases, particularly in recent years. Thus, the search for new aromatase inhibitor drugs has always been critical. Newly, there seems to be a surge of enthusiasm in the discovery and production of molecules with dual inhibitory effects, which can inhibit two or more enzymes simultaneously. This method enables a significant reduction in potential drug resistance. The design of these compounds has an opportunity to significantly boost the efficacy of anti-cancer treatments by causing synergistic effects. This article offers a review of newly developed aromatase inhibitors with potential anticancer effects.
Insights
Novel aromatase inhibitors are crucial for combating drug-resistant breast cancers. This review explores new dual-acting molecules designed to overcome resistance and enhance anti-cancer treatment efficacy.
Area of Science:
- Biochemistry
- Oncology
- Medicinal Chemistry
Background:
- Aromatase (CYP19A1) converts androgens to estrogens, fueling hormone-dependent breast cancers.
- Estrogen production by tumor cells contributes to endocrine therapy resistance.
- Current aromatase inhibitors face increasing drug resistance, necessitating new therapeutic strategies.
Purpose of the Study:
- To review newly developed aromatase inhibitors with potential anticancer effects.
- To highlight the significance of novel inhibitors in overcoming endocrine resistance.
- To explore dual-inhibitory molecules for enhanced anti-cancer efficacy.
Main Methods:
- Review of recent scientific literature on aromatase inhibitors.
- Analysis of novel molecular designs, including dual-acting compounds.
- Evaluation of potential mechanisms to overcome drug resistance.
Main Results:
- Emerging aromatase inhibitors show promise against resistant breast cancers.
- Dual-inhibitory molecules offer a strategy to reduce drug resistance.
- Synergistic effects of novel compounds may improve treatment outcomes.
Conclusions:
- New aromatase inhibitors are vital for advancing breast cancer treatment.
- Dual-targeting strategies represent a promising approach to combat resistance.
- Continued research into novel aromatase inhibitors is critical for effective cancer therapy.
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