首页> 外文OA文献 >Potential Industrial Production of a Well-Soluble, Alkaline-Stable, and Anti-Inflammatory Isoflavone Glucoside from 8-Hydroxydaidzein Glucosylated by Recombinant Amylosucrase of Deinococcus geothermalis
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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:潜在的产业生产来自8-羟基葡萄糖的可溶性,碱性稳定性和抗炎异黄酮葡萄糖苷,由8-羟基Daidzein葡萄糖氧化葡萄糖苷,通过重组淀粉糖基奇糖苷的Deinococcus Geothermalis

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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:已经证明了从一些发酵大豆类食品中分离的大豆异黄酮Daidzein的羟基化衍生物,已经证明了具有效率的抗炎活性的大豆异黄酮Daidzeine的邻羟基化衍生物。然而,在碱性溶液中异黄酮糖苷可溶于溶于且不稳定。为了改善官能异黄酮的含水溶解度和稳定性,8-OHDE用工业蔗糖的Deinococcus Geothermalis(DGAs)的重组淀粉酶(DGA),而不是昂贵的尿苷二磷酸葡萄糖(UDP-葡萄糖)。一种主要产物由生物转化产生,并基于质量和核磁共振谱分析鉴定为8 -OHDE-7-α-葡糖苷。测定异黄酮葡糖苷的水溶性和稳定性,结果表明异黄酮葡糖苷几乎易溶多4倍,比8-OHDE稳定六倍以上。此外,还通过抑制了原始264.7细胞中的脂多糖诱导的一氧化氮产生来确定8-OHDE-7-α-葡糖苷的抗炎活性。结果表明,8小时-OHDE-7-α-葡糖苷对生产一氧化氮产生显着和剂量依赖性抑制,IC50值为173.2μm,其留下了8-OHDE的抗炎活性的20%。总之,通过重组DGA生产的良良好和碱性稳定的8-OHDE-7-α-葡糖苷,其具有廉价的基材,蔗糖,作为糖供体保留中等的抗炎活性,可用于工业应用中未来。

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