Harnessing Oleanolic Acid and Its Derivatives as Modulators of Metabolic Nuclear Receptors

Author:

Radwan Mohamed O.1ORCID,Kadasah Sultan F.2ORCID,Aljubiri Salha M.3,Alrefaei Abdulmajeed F.4ORCID,El-Maghrabey Mahmoud H.5ORCID,El Hamd Mohamed A.67ORCID,Tateishi Hiroshi1ORCID,Otsuka Masami18,Fujita Mikako1ORCID

Affiliation:

1. Medicinal and Biological Chemistry Science Farm Joint Research Laboratory, Faculty of Life Sciences, Kumamoto University, Kumamoto 862-0973, Japan

2. Department of Biology, Faculty of Science, University of Bisha, Bisha 61922, Saudi Arabia

3. Department of Chemistry, College of Science, University of Bisha, Bisha 61922, Saudi Arabia

4. Department of Biology, Umm Al-Qura University, Makkah 21955, Saudi Arabia

5. Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Mansoura University, Mansoura 35516, Egypt

6. Department of Pharmaceutical Sciences, College of Pharmacy, Shaqra University, Shaqra 11961, Saudi Arabia

7. Department of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, South Valley University, Qena 83523, Egypt

8. Department of Drug Discovery, Science Farm Ltd., Kumamoto 862-0976, Japan

Abstract

Nuclear receptors (NRs) constitute a superfamily of ligand-activated transcription factors with a paramount role in ubiquitous physiological functions such as metabolism, growth, and reproduction. Owing to their physiological role and druggability, NRs are deemed attractive and valid targets for medicinal chemists. Pentacyclic triterpenes (PTs) represent one of the most important phytochemical classes present in higher plants, where oleanolic acid (OA) is the most studied PTs representative owing to its multitude of biological activities against cancer, inflammation, diabetes, and liver injury. PTs possess a lipophilic skeleton that imitates the NRs endogenous ligands. Herein, we report a literature overview on the modulation of metabolic NRs by OA and its semi-synthetic derivatives, highlighting their health benefits and potential therapeutic applications. Indeed, OA exhibited varying pharmacological effects on FXR, PPAR, LXR, RXR, PXR, and ROR in a tissue-specific manner. Owing to these NRs modulation, OA showed prominent hepatoprotective properties comparable to ursodeoxycholic acid (UDCA) in a bile duct ligation mice model and antiatherosclerosis effect as simvastatin in a model of New Zealand white (NZW) rabbits. It also demonstrated a great promise in alleviating non-alcoholic steatohepatitis (NASH) and liver fibrosis, attenuated alpha-naphthol isothiocyanate (ANIT)-induced cholestatic liver injury, and controlled blood glucose levels, making it a key player in the therapy of metabolic diseases. We also compiled OA semi-synthetic derivatives and explored their synthetic pathways and pharmacological effects on NRs, showcasing their structure-activity relationship (SAR). To the best of our knowledge, this is the first review article to highlight OA activity in terms of NRs modulation.

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry

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