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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Integrated Utilization of Red Radish for the Efficient Production of High-Purity Procyanidin Dimers
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Integrated Utilization of Red Radish for the Efficient Production of High-Purity Procyanidin Dimers

机译:红萝卜的综合利用高效生产高纯度胰岛素二聚体

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摘要

Red radish was extracted by methanol to obtain crude radish procyanidin extracts. The purity of procyanidin (PP) and procyanidin dimers (PD) of crude radish procyanidin extracts under different ratios of methanol to radish was optimized to achieve the best extraction performance. Then the crude radish procyanidin extracts was, respectively, processed six macroporous resins separation to separate radish procyanidin oligomers (RPO) and polymers (RPP). Depolymerization of radish procyanidin polymers (RPP) into oligomers was then conducted. N-Acetylneuraminate lyase (NAL) was first used as the enzyme to depolymerize RPP. The depolymerization yield (DY) under different depolymerized conditions was also investigated. Results showed the DY of RPP would achieve 53.24 +/- 0.35% at the best conditions. Then the high-purity procyanidin dimers was prepared by depolymerized procyanidin oligomers and PRO. Additionally, the chemical structure of the preparative radish procyanidin dimers was elucidated by high-resolution mass spectrometry and one- and two-dimensional NMR.
机译:通过甲醇提取红萝卜,得到粗萝卜原霉素提取物。优化了在不同比例下粗萝卜原霉素提取物的原酸盐蛋白(PP)和原霉素二聚体(Pd)的纯度得到了优化,以达到最佳的提取性能。然后分别将粗萝卜原霉素提取物加工六种大孔树脂分离,以分离萝卜原霉素低聚物(RPO)和聚合物(RPP)。然后进行萝卜原霉素聚合物(RPP)将萝卜原霉素聚合物(RPP)进行寡聚体。首先使用N-乙酰脲酸盐酶(NAL)作为解聚RPP的酶。还研究了不同解聚条件下的解聚产率(Dy)。结果显示RPP的DY在最佳条件下达到53.24 +/- 0.35%。然后通过脱聚丙氨酰胺寡聚蛋白和Pro制备高纯度原霉素二聚体。另外,通过高分辨率质谱和单一和二维NMR阐明了制备萝卜原霉素二聚体的化学结构。

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