AI Article Synopsis

  • * Four main phloroglucinols were isolated during the study, with flavaspidic acid AP exhibiting the strongest inhibitory effect on XO, showing an effectiveness comparable to the standard drug allopurinol.
  • * The presence of specific acetyl groups in these compounds is essential for their XO inhibitory activity, and the high concentration of these potent inhibitors in the rhizomes suggests potential for developing treatments for gout.

Article Abstract

rhizomes are used as a traditional medicine in Asia. The EtOAc extract of these roots has shown potent xanthine oxidase (XO) inhibitory activity. However, the main phloroglucinols in rhizomes have not been analyzed. Thus, we investigated the major constituents responsible for this effect. Bioassay-guided purification isolated four compounds: flavaspidic acid AP (), flavaspidic acid AB (), flavaspidic acid PB (), and flavaspidic acid BB (). Among these, showed the most potent inhibitory activity with a half-maximal inhibitory concentration (IC) value of 6.3 µM, similar to that of allopurinol (IC = 5.7 µM) and better than that of oxypurinol (IC = 43.1 µM), which are XO inhibitors. A comparative activity screen indicated that the acetyl group at C3 and C3' is crucial for XO inhibition. For example, showed nearly 4-fold higher efficacy than (IC = 20.9 µM). Representative inhibitors (-) in the rhizomes of showed reversible and noncompetitive inhibition toward XO. Furthermore, the potent inhibitors were shown to be present in high quantities in the rhizomes by a UPLC-QTOF-MS analysis. Therefore, the rhizomes of could be used to develop nutraceuticals and medicines for the treatment of gout.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7796287PMC
http://dx.doi.org/10.3390/molecules26010122DOI Listing

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