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Efficient enzymatic preparation of esculentoside B following condition optimization by response surface methodology

机译:响应面法优化条件后,高效地进行七叶皂甙B的酶法制备

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Esculentoside B (EsB, also named phytolaccagenin 3-O-beta-D-xylopyranoside), a pentacyclic triterpene isolated from herbal medicine Radix phytolaccae, has been found to possess multiple pharmacological activities. Nonetheless, the low content in nature and the difficulties in the total synthesis of EsB strongly limit its extensive investigations and further development as a drug candidate. This study aims to provide a practical method for highly efficient preparation of EsB using esculentoside A (EsA, phytolaccagenin 3-beta-D-glucopyranosyl (1 -> 4)-beta-D-xylopyranoside) as the starting material. beta-D-glucosidase from snailase was used to catalyze the formation of EsB, and the product was then purified and fully characterized by both HRMS and NMR. To prepare EsB in a more cost-effective way, response surface methodology (RSM) was used to explore the potential effects of the reaction conditions (such as reaction temperature, pH, enzyme load, and reaction time) on the conversion rates of EsA. The highest EsB yield of 0.66 mg/ml was obtained experimentally under optimized conditions as follows: temperature 48.28 degrees C, pH 6.4, enzyme load 4.43%, and reaction time 2.73 h. This result agreed well with the predicted yield of 0.68 mg/ml by RSM. The enzymatic kinetics of this biotransformation was characterized at the optimum pH and temperature. The S-50 value was evaluated as 167.4 mu M, while the Vmax value was 345.6 nmol/min/mg. In summary, this study provided a mild and practical method for the highly efficient preparation of EsB from EsA, which held great promise for large scale production of EsB. (C) 2016 Elsevier B.V. All rights reserved.
机译:七叶皂甙B(EsB,又称植乳素3-O-β-D-吡喃吡喃糖苷),一种从草药黄柏中分离出的五环三萜,具有多种药理活性。尽管如此,由于EsB的自然含量低和全合成困难,极大地限制了其广泛的研究和作为候选药物的进一步开发。这项研究旨在提供一种以七叶皂苷A(EsA,植物皂苷元3-β-D-吡喃葡萄糖基(1-4)-β-D-吡喃吡喃糖苷)为原料高效制备EsB的实用方法。来自蜗牛酶的β-D-葡萄糖苷酶用于催化EsB的形成,然后纯化产物,并通过HRMS和NMR进行全面表征。为了以更具成本效益的方式制备EsB,使用响应表面方法(RSM)探索反应条件(例如反应温度,pH,酶负载和反应时间)对EsA转化率的潜在影响。在以下最佳条件下通过实验获得的最高EsB产量为0.66 mg / ml:温度48.28摄氏度,pH 6.4,酶负载4.43%,反应时间2.73小时。该结果与RSM预测的0.68 mg / ml的收率非常吻合。在最佳的pH和温度下表征了这种生物转化的酶动力学。 S-50值被评估为167.4μM,而Vmax值是345.6nmol / min / mg。总之,本研究为从EsA高效制备EsB提供了温和而实用的方法,为大规模生产EsB带来了广阔的前景。 (C)2016 Elsevier B.V.保留所有权利。

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