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Targeting REV-ERBα for therapeutic purposes: promises and challenges
Shuai Wang1,2, Feng Li3, Yanke Lin1
1College of Pharmacy, Jinan University, Guangzhou, 510632, China.
Abstract:
REV-ERBα (NR1D1) is a circadian clock component that functions as a transcriptional repressor. Due to its role in direct modulation of metabolic genes, REV-ERBα is regarded as an integrator of cell metabolism with circadian clock. Accordingly, REV-ERBα is first proposed as a drug target for treating sleep disorders and metabolic syndromes (e.g., dyslipidaemia, hyperglycaemia and obesity). Recent years of studies uncover a rather broad role of REV-ERBα in pathological conditions including local inflammatory diseases, heart failure and cancers. Moreover, REV-ERBα is involved in regulation of circadian drug metabolism that has implications in chronopharmacology. In the meantime, recent years have witnessed discovery of an array of new REV-ERBα ligands most of which have pharmacological activities in vivo. In this article, we review the regulatory role of REV-ERBα in various types of diseases and discuss the underlying mechanisms. We also describe the newly discovered ligands and the old ones together with their targeting potential. Despite well-established pharmacological effects of REV-ERBα ligands in animals (preclinical studies), no progress has been made regarding their translation to clinical trials. This implies certain challenges associated with drug development of REV-ERBα ligands. In particular, we discuss the potential challenges related to drug safety (or adverse effects) and bioavailability. For new drug development, it is advocated that REV-ERBα should be targeted to treat local diseases and a targeting drug should be locally distributed, avoiding the adverse effects on other tissues.
Insights
REV-ERBα (NR1D1) regulates metabolism and circadian rhythms, making it a target for metabolic disorders. New ligands show promise, but clinical translation faces safety and bioavailability challenges.
Area of Science:
- Chronobiology
- Molecular Endocrinology
- Pharmacology
Background:
- REV-ERBα (NR1D1) is a core circadian clock component acting as a transcriptional repressor.
- It integrates cellular metabolism with the circadian clock, influencing metabolic genes.
- REV-ERBα is implicated in metabolic syndromes, inflammatory diseases, heart failure, and cancers.
Purpose of the Study:
- To review the regulatory roles of REV-ERBα in diverse diseases.
- To discuss the mechanisms underlying REV-ERBα's functions.
- To summarize newly discovered and existing REV-ERBα ligands and their therapeutic potential.
Main Methods:
- Literature review of REV-ERBα's role in disease pathology.
- Analysis of preclinical data on REV-ERBα ligand efficacy.
- Discussion of challenges in clinical translation and drug development.
Main Results:
- REV-ERBα ligands demonstrate significant in vivo pharmacological activities.
- Preclinical studies show established effects, but clinical trials have not progressed.
- Key challenges include drug safety, adverse effects, and bioavailability.
Conclusions:
- Targeting REV-ERBα offers potential for treating metabolic and other diseases.
- Local drug distribution is recommended to mitigate systemic adverse effects.
- Further research is needed to overcome drug development hurdles for clinical application.
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