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Differential Effects of Ursolic Acid and Oleanolic Acid on Mitochondrial ATP Generation in H9c2 Cardiomyocytes and Lipopolysaccharide-Induced Cell Proliferation in Mouse Splenocytes: Yang versus Yin

DOI: 10.4236/cm.2021.123005, PP. 37-46

Keywords: Yang, Yin, Ursolic Acid, Oleanolic Acid, Mitochondrial ATP Generation, Splenocytes

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Abstract:

In the present study, two cell-based systems for assessing Yang and Yin activities were for the first time used to investigate the effect of ursolic acid (UA) and oleanolic acid (OA). The results indicated that while UA was only active in the Yang assay, OA produced activity in the Yin assay. The Yang/Yin activity of UA/OA may be attributed to their distinct molecular structures, which confer their differential ability to interact with mitochondrial membrane or cellular membrane lipids, with resultant membrane fluidization and potentiation of biological responses.

References

[1]  Leong, P.K., Chen, J. and Ko, K.M. (2018) Development of Chinese Herbal Health Products for the Prevention of Aging-Associated Diseases. In: Mandal, S.C., Mandal, V. and Konishi, T., Eds., Natural Products and Drug Discovery: An Integrated Approach, Elsevier, Amsterdam, 73-104.
https://doi.org/10.1016/B978-0-08-102081-4.00004-6
[2]  Yim, T.K. and Ko, K.M. (2002) Antioxidant and Immunomodulatory Activities of Chinese Tonifying Herbs. Pharmaceutical Biology, 40, 329-335.
https://doi.org/10.1076/phbi.40.5.329.8457
[3]  Liu, J. (1995) Pharmacology of Oleanolic Acid and Ursolic Acid. Journal of Ethnopharmacology, 49, 57-68.
https://doi.org/10.1016/0378-8741(95)90032-2
[4]  Leong, P.K. and Ko, K.M. (2019) Biomarkers for Quality Control of Chinese Tonifying Herbs and Herbal Health Products. In: Ghosh, D. and Mukherjee, P.K., Eds., Natural Medicines: Clinical Efficacy, Safety, and Quality, CRC Press (Taylor & Francis Group), Boca Raton, Chapter 7, 127-138.
https://doi.org/10.1201/9781315187853-7
[5]  Wong, H.S., Leung, H.Y. and Ko, K.M. (2011) “Yang-Invigorating” Chinese Tonic Herbs Enhance Mitochondrial ATP Generation in H9c2 Cardiomyocytes. Chinese Medicine, 2, 1-5.
[6]  Cooper, R.A. (1978) Influence of Increased Membrane Cholesterol on Membrane Fluidity and Cell Function in Human Red Blood Cells. Journal of Supramolecular Structure, 8, 413-430.
https://doi.org/10.1002/jss.400080404
[7]  Wong, H.S., Leong, P.K., Chen, J., Leung, H.Y., Chan, W.M. and Ko, K.M. (2016) β-Sitosterol Increases Mitochondrial Electron Transport by Fluidizing Mitochondrial Membranes and Enhances Mitochondrial Responsiveness to Increasing Energy Demand by the Induction of Uncoupling in C2C12 Myotubes. Journal of Functional Foods, 23, 253-260.
https://doi.org/10.1016/j.jff.2016.02.045
[8]  Yoshida, K., Nagatoishi, S., Kuroda, D., Suzuki, N., Murata, T. and Tsumoto, K. (2019) Phospholipid Membrane Fluidity Alters Ligand Binding Activity of a G Protein-Coupled Receptor by Shifting the Conformational Equilibrium. Biochemistry, 58, 504-508.
https://doi.org/10.1021/acs.biochem.8b01194
[9]  Gould, S.B. (2018) Membranes and Evolution. Current Biology, 28, R367-R420.
https://doi.org/10.1016/j.cub.2018.01.086
[10]  Neve, J., Wijesekera, H., Duffy, S., Jenkins, I., Ripper, J., Teague, S., et al. (2014) Euodenine A: A Small-Molecule Agonist of Human TLR4. Journal of Medicinal Chemistry, 57, 1252-1275.
https://doi.org/10.1021/jm401321v
[11]  Niu, X., Yu, Y., Guo, H., Yang, Y., Wang, G., Sun, L., Gao, Y., Yu, Z. and Wang, H. (2018) Molecular Modeling Reveals the Inhibition Mechanism and Binding Mode of Ursolic Acid to TLR4-MD2. Computational and Theoretical Chemistry, 1123, 73-78.
https://doi.org/10.1016/j.comptc.2017.11.016

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