Yuk Heung Joo, Ryu Hyung Won, Kim Dong-Seon
KM Science Research Division, Korea Institute of Oriental Medicine (KIOM), Daejeon 34054, Republic of Korea.
Natural Medicine Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Cheong-ju 28116, Republic of Korea.
Foods. 2023 Jan 28;12(3):573. doi: 10.3390/foods12030573.
The aerial parts of are used as a food material and traditional medicine in Asia. A 50% ethanol extract exhibited potent xanthine oxidase (XO) inhibitory activity (IC = 32.4 µg/mL). To investigate the major components responsible for this effect, seven known compounds were identified from ; among these, salvianolic acid B () was isolated from this plant for the first time. Moreover, acacetin () exhibited the most potent inhibitory activity with an IC value of 0.58 µM, lower than that of allopurinol (IC = 4.2 µM), which is commonly used as a XO inhibitor. Comparative activity screening revealed that the C6-bonded monosaccharides () or sugars substituted with acetyl or malonyl groups (-) are critical for XO inhibition when converted to aglycone (). The most potent inhibitor () in the extract (ARE) exhibited mixed-type inhibition kinetics and reversible inhibition toward XO. Furthermore, the hydrolysis of ARE almost converted to an inhibitor (), which displayed the highest efficacy; UPLC-qTof MS revealed an increased content, up to five times more compared with that before treatment. This study will contribute to the enhancement in the industrial value of ARE hydrolysates as a functional ingredient and natural drug toward the management of hyperuricemia and treatment of gout.
[植物名称]的地上部分在亚洲被用作食品原料和传统药物。50%乙醇提取物表现出较强的黄嘌呤氧化酶(XO)抑制活性(IC = 32.4 µg/mL)。为了研究造成这种效果的主要成分,从[植物名称]中鉴定出了七种已知化合物;其中,丹酚酸B([具体名称])首次从该植物中分离得到。此外,刺槐素([具体名称])表现出最强的抑制活性,IC值为0.58 µM,低于常用的XO抑制剂别嘌呤醇(IC = 4.2 µM)。比较活性筛选表明,当转化为苷元([具体名称])时,C6键合的单糖([具体名称])或被乙酰基或丙二酰基取代的糖([具体名称])对XO抑制至关重要。[植物名称]提取物(ARE)中最有效的抑制剂([具体名称])对XO表现出混合型抑制动力学和可逆抑制。此外,ARE的水解几乎完全转化为一种抑制剂([具体名称]),其显示出最高的功效;超高效液相色谱-四极杆飞行时间质谱显示其含量增加,与处理前相比增加了多达五倍。本研究将有助于提高ARE水解产物作为功能性成分和天然药物在高尿酸血症管理和痛风治疗方面的工业价值。