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Potential Industrial Production of a Well-Soluble Alkaline-Stable and Anti-Inflammatory Isoflavone Glucoside from 8-Hydroxydaidzein Glucosylated by Recombinant Amylosucrase of Deinococcus geothermalis

机译:由地热球菌的重组淀粉糖核酸酶对8-羟基黄豆苷元进行糖基化的可溶性好碱性稳定和抗炎的异黄酮葡糖苷的工业生产潜力

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摘要

8-Hydroxydaidzein (8-OHDe), an ortho-hydroxylation derivative of soy isoflavone daidzein isolated from some fermented soybean foods, has been demonstrated to possess potent anti-inflammatory activity. However, the isoflavone aglycone is poorly soluble and unstable in alkaline solutions. To improve the aqueous solubility and stability of the functional isoflavone, 8-OHDe was glucosylated with recombinant amylosucrase of Deinococcus geothermalis (DgAS) with industrial sucrose, instead of expensive uridine diphosphate-glucose (UDP-glucose). One major product was produced from the biotransformation, and identified as 8-OHDe-7-α-glucoside, based on mass and nuclear magnetic resonance spectral analyses. The aqueous solubility and stability of the isoflavone glucoside were determined, and the results showed that the isoflavone glucoside was almost 4-fold more soluble and more than six-fold higher alkaline-stable than 8-OHDe. In addition, the anti-inflammatory activity of 8-OHDe-7-α-glucoside was also determined by the inhibition of lipopolysaccharide-induced nitric oxide production in RAW 264.7 cells. The results showed that 8-OHDe-7-α-glucoside exhibited significant and dose-dependent inhibition on the production of nitric oxide, with an IC50 value of 173.2 µM, which remained 20% of the anti-inflammatory activity of 8-OHDe. In conclusion, the well-soluble and alkaline-stable 8-OHDe-7-α-glucoside produced by recombinant DgAS with a cheap substrate, sucrose, as a sugar donor retains moderate anti-inflammatory activity, and could be used in industrial applications in the future.
机译:从某些发酵大豆食品中分离得到的大豆异黄酮大豆苷元的邻羟基化衍生物8-羟黄豆苷元(8-OHDe)具有有效的抗炎活性。但是,异黄酮糖苷配基在碱性溶液中溶解性差且不稳定。为了提高功能性异黄酮的水溶性和稳定性,用工业蔗糖代替地热球菌(DgAS)的重组淀粉酶将8-OHDe糖基化,而不是使用昂贵的尿苷二磷酸葡萄糖(UDP-葡萄糖)。根据质量和核磁共振光谱分析,从生物转化中产生了一种主要产物,并鉴定为8-OHDe-7-α-葡萄糖苷。测定了异黄酮葡糖苷的水溶性和稳定性,结果表明,异黄酮葡糖苷的溶解度比8-OHDe高出近4倍,而碱稳定性高出6倍以上。此外,还可以通过抑制RAW 264.7细胞中脂多糖诱导的一氧化氮生成来确定8-OHDe-7-α-葡萄糖苷的抗炎活性。结果表明,8-OHDe-7-α-葡萄糖苷对一氧化氮的产生具有显着的剂量依赖性,IC50值为173.2 µM,仍然是8-OHDe消炎活性的20%。总而言之,由重组DgAS生产的具有良好可溶性的碱稳定型8-OHDe-7-α-葡萄糖苷具有廉价的底物蔗糖作为糖供体,保留了中等的抗炎活性,可用于工业应用中。未来。

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