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Retinoids and rexinoids in cancer prevention: from laboratory to clinic
Iván P Uray1, Ethan Dmitrovsky1, Powel H Brown1
1Department of Clinical Cancer Prevention, The University of Texas, MD Anderson Cancer Center, Houston, TX, USA.
Abstract:
Early in the age of modern medicine the consequences of vitamin A deficiency drew attention to the fundamental link between retinoid-dependent homeostatic regulation and malignant hyperproliferative diseases. The term "retinoid" includes a handful of endogenous and a large group of synthetic derivatives of vitamin A. These multifunctional lipid-soluble compounds directly regulate target genes of specific biological functions and critical signaling pathways to orchestrate complex functions from vision to development, metabolism, and inflammation. Many of the retinoid activities on the cellular level have been well characterized and translated to the regulation of processes like differentiation and cell death, which play critical roles in the outcome of malignant transformation of tissues. In fact, retinoid-based differentiation therapy of acute promyelocytic leukemia was one of the first successful examples of molecularly targeted treatment strategies. The selectivity, high receptor binding affinity and the ability of retinoids to directly modulate gene expression programs present a distinct pharmacological opportunity for cancer treatment and prevention. However, to fully exploit their potential, the adverse effects of retinoids must be averted. In this review we provide an overview of the biology of retinoid (activated by nuclear retinoic acid receptors [RARs]) and rexinoid (engaged by nuclear retinoid X receptors [RXRs]) action concluded from a long line of preclinical studies, in relation to normal and transformed states of cells. We will also discuss the past and current uses of retinoids in the treatment of malignancies, the potential of rexinoids in the cancer prevention setting, both as single agents and in combinations.
Insights
Retinoids, vitamin A derivatives, regulate cell functions and are key in treating cancers like leukemia. Understanding retinoid and rexinoid biology can improve cancer treatment and prevention while minimizing side effects.
Area of Science:
- Molecular Biology
- Oncology
- Pharmacology
Background:
- Vitamin A deficiency highlighted the link between retinoid regulation and cancer.
- Retinoids are vitamin A derivatives that regulate gene expression, impacting cell differentiation and death.
- Successful retinoid differentiation therapy for acute promyelocytic leukemia demonstrates their targeted treatment potential.
Purpose of the Study:
- To review the biology of retinoid and rexinoid action in normal and malignant cells.
- To discuss current and past uses of retinoids in cancer treatment.
- To explore the potential of rexinoids in cancer prevention.
Main Methods:
- Review of preclinical studies on retinoid and rexinoid biology.
- Analysis of existing literature on retinoid applications in oncology.
- Discussion of combination strategies for retinoids and rexinoids.
Main Results:
- Retinoids modulate gene expression, influencing cell differentiation and apoptosis, critical in cancer.
- Retinoid-based therapies have shown success in specific hematological malignancies.
- RXR agonists (rexinoids) show promise for cancer prevention.
Conclusions:
- Retinoids offer significant pharmacological opportunities for cancer treatment and prevention.
- Further research is needed to harness retinoid potential while mitigating adverse effects.
- Combination therapies involving retinoids and rexinoids may enhance efficacy and broaden applications.
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