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Clinical trials with retinoids for breast cancer chemoprevention
S Zanardi1, D Serrano, A Argusti
1Department of Medical and Preventive Oncology, E.O. Ospedali Galliera, Mura delle Cappuccine 14, 16128 Genoa, Italy.
Abstract:
Retinoids have been studied as chemopreventive agents in clinical trials due to their established role in regulating cell growth, differentiation and apoptosis in preclinical models. Experimental evidence suggests that retinoids affect gene expression both directly, by activating and/or repressing specific genes, and indirectly, by interfering with different signal transduction pathways. Induction of apoptosis is a unique feature of fenretinide, the most widely studied retinoid in clinical trials on breast cancer chemoprevention due to its selective accumulation in breast tissue and to its favourable toxicological profile. In a phase III breast cancer prevention trial, fenretinide showed a durable trend to a reduction of second breast malignancies in premenopausal women. This pattern was associated with a favourable modulation of circulating IGF-I and its main binding protein (IGF-binding protein-3, IGFBP-3), which have been associated with breast cancer risk in premenopausal women in different prospective studies. In a subsequent biomarker study on premenopausal women who had participated in the phase III trial, high IGF-I and low IGFBP-3 baseline levels were found to predict second breast cancer risk, although the magnitude of their changes during treatment did not fulfil the requirements for suitable surrogate end-point biomarkers. In postmenopausal women, fenretinide did not reduce second breast cancer incidence, nor did it induce significant modulation of the IGF system. Similarly, fenretinide was not found to affect risk biomarkers significantly in early postmenopausal women on hormone replacement therapy, who are at increased risk of developing breast cancer. Biomarker studies of fenretinide alone or in combination with different nuclear receptor ligands are being conducted. In particular, clinical trials of fenretinide and tamoxifen have proved to be feasible, and this combination appears to be safe and well tolerated in high-risk women, especially when low-dose tamoxifen is employed. Novel retinoid X receptor-selective retinoids, or rexinoids, have been shown to suppress the development of breast cancer in several animal models with minimal toxicity, and are being intensively studied either alone or in combination with selective oestrogen receptor modulators, both in vitro and in vivo. The rexinoid, bexarotene, has recently been approved for the treatment of patients with cutaneous T-cell lymphoma, and a biomarker trial with bexarotene in women with high breast cancer risk is currently underway.
Insights
Fenretinide showed a trend in reducing second breast malignancies in premenopausal women, linked to changes in IGF-I and IGFBP-3. However, it did not significantly impact postmenopausal women or those on hormone therapy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Retinoids regulate cell growth, differentiation, and apoptosis, showing potential in cancer chemoprevention.
- Fenretinide, a widely studied retinoid, selectively accumulates in breast tissue and has a favorable toxicological profile.
- The insulin-like growth factor (IGF) system, including IGF-I and IGF-binding protein-3 (IGFBP-3), is implicated in breast cancer risk.
Purpose of the Study:
- To evaluate the efficacy of fenretinide in breast cancer chemoprevention and its effects on biomarkers.
- To investigate the role of the IGF system in fenretinide's chemopreventive effects.
- To explore novel retinoids (rexinoids) and combination therapies for breast cancer prevention.
Main Methods:
- Phase III clinical trial of fenretinide in premenopausal and postmenopausal women.
- Biomarker studies analyzing circulating IGF-I and IGFBP-3 levels.
- Preclinical studies and clinical trials of rexinoids and combination therapies (e.g., fenretinide with tamoxifen).
Main Results:
- Fenretinide demonstrated a trend towards reducing second breast malignancies in premenopausal women, associated with favorable modulation of IGF-I and IGFBP-3.
- High baseline IGF-I and low IGFBP-3 predicted second breast cancer risk in premenopausal women.
- Fenretinide did not significantly reduce breast cancer incidence or affect IGF biomarkers in postmenopausal women or those on hormone replacement therapy.
Conclusions:
- Fenretinide shows promise for breast cancer chemoprevention in premenopausal women, potentially through modulation of the IGF system.
- The IGF system serves as a risk biomarker but changes during fenretinide treatment did not meet surrogate endpoint criteria.
- Novel rexinoids and combination therapies with tamoxifen are promising avenues for breast cancer prevention in high-risk women.
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