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Optimum Conversion of Major Ginsenoside Rb1 to Minor Ginsenoside Rg3(S) by Pulsed Electric Field-Assisted Acid Hydrolysis Treatment

机译:脉冲电场辅助酸水解法优化人参皂甙Rb1向人参皂甙Rg3(S)的最佳转化

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AbstractGinsenoside Rg3(S) is a primary bioactive component in ginseng, which has pharmacological effects and nutritional activities. In the present study, pulsed electric field (PEF)-assisted acid hydrolysis processing was used to convert major ginsenoside Rb1 to minor ginsenoside Rg3(S). The optimum parameters of PEF assisted acid hydrolysis were analyzed by response surface methodology (RSM). The optimum processing conditions were: electric field intensity, 20 kVcm?1; acid concentration, 0.25 mol/L; pulse number, 10. The conversion rate of ginsenoside Rg3(S) achieved 68.58%, in accordance to the predicted value. The structure of hydrolyzed product was confirmed by 13C-NMR. The results suggested that PEF-assisted acid hydrolysis significantly enhanced conversion rate of ginsenoside Rg3(S).
机译:摘要人参皂苷Rg3(S)是人参中的主要生物活性成分,具有药理作用和营养活性。在本研究中,脉冲电场(PEF)辅助酸水解处理用于将主要人参皂甙Rb1转化为次要人参皂甙Rg3(S)。用响应面法(RSM)分析了PEF辅助酸水解的最佳参数。最佳处理条件为:电场强度为20kVcm?1。酸浓度0.25 mol / L;脉冲数为10。人参皂苷Rg3(S)的转化率达到了68.58%,与预测值一致。通过13 C-NMR确认水解物的结构。结果表明PEF辅助酸水解显着提高了人参皂苷Rg3(S)的转化率。

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