Enzymatic synthesis of puerarin glucosides using cyclodextrin glucanotransferase with enhanced antiosteoporosis activity

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Abstract

Puerarin (PU) is the most abundant isoflavone from the root of Pueraria lobata and exhibits a broad range of pharmacological activities. However, poor water solubility and low bioavailability limit its use. Enzymatic transglycosylation is emerging as a new strategy to improve the pharmacodynamic and pharmacokinetic properties of natural products for drug development. In this study, three PU glucosides (PU-G, PU-2G, and PU-3G) were synthesized by using a cyclodextrin glucanotransferase from Bacillus licheniformis with PU as the acceptor and α-cyclodextrin as the sugar donor. The transglycosylation products were isolated and structurally identified by mass spectrometry and nuclear magnetic resonance. The water solubilities of PU-G, PU-2G, and PU-3G were 15.6, 100.9, and 179.1 times higher than that of PU, respectively. Moreover, the antiosteoporosis activities of these glucosides were tested, and PU-G was found to show much more potent antiosteoporosis activity as compared to the original PU.

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Huang, W., He, Q., Zhou, Z. R., He, H. B., & Jiang, R. W. (2020). Enzymatic synthesis of puerarin glucosides using cyclodextrin glucanotransferase with enhanced antiosteoporosis activity. ACS Omega, 5(21), 12251–12258. https://doi.org/10.1021/acsomega.0c00950

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