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Production of Minor Ginenosides from Panax notoginseng by Microwave Processing Method and Evaluation of Their Blood-Enriching and Hemostatic Activity

机译:三七由微波处理法生产次要人参皂苷及其富血止血活性的评价

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摘要

A green solvent extraction technology involving a microwave processing method was used to increase the content of minor ginsenosides from Panax notoginseng. This article aims to investigate the optimization of preparation of the minor ginsenosides by this microwave processing method using single-factor experiments and response surface methodology (RSM), and discuss the blood-enriching activity and hemostatic activity of the extract of microwave processed P. notoginseng (EMPN) The RSM for production of the minor ginsenosides was based on a three-factor and three-level Box-Behnken design. When the optimum conditions of microwave power, temperature and time were 495.03 W, 150.68 °C and 20.32 min, respectively, results predicted that the yield of total minor ginsenosides (Y9) would be 93.13%. The actual value of Y9 was very similar to the predicted value. In addition, the pharmacological results of EMPN in vivo showed that EMPN had the effect of enriching blood in N-acetylphenylhydrazine (APH) and cyclophosphamide (CTX)-induced blood deficient mice because of the increasing content of white blood cells (WBCs) and hemoglobin (HGB) in blood. Hemostatic activity in vitro of EMPN showed that it had significantly shortened the clotting time in PT testing (p < 0.05). The hemostatic effect of EMPN was mainly caused by its components of Rh4, 20(S)-Rg3 and 20(R)-Rg3. This microwave processing method is simple and suitable to mass-produce the minor ginsenosides from P. notoginseng.
机译:使用涉及微波处理方法的绿色溶剂提取技术来增加三七中次要人参皂苷的含量。本文旨在探讨利用单因素实验和响应面法(RSM)通过微波处理方法优化次要人参皂苷的制备工艺,并探讨微波处理的三七提取物的富血和止血活性。 (EMPN)用于生产次要人参皂苷的RSM基于三因素和三级Box-Behnken设计。当微波功率,温度和时间的最佳条件分别为495.03 W,150.68°C和20.32 min时,结果预测人参总皂苷(Y9)的总收率为93.13%。 Y9的实际值与预测值非常相似。此外,EMPN的体内药理结果表明,由于白细胞(WBCs)和血红蛋白含量的增加,EMPN具有使N-乙酰苯基肼(APH)和环磷酰胺(CTX)引起的血虚小鼠充血的作用。 (HGB)血液中。 EMPN的体外止血活性表明,它在PT测试中显着缩短了凝血时间(p <0.05)。 EMPN的止血作用主要由其Rh4、20(S)-Rg3和20(R)-Rg3的成分引起。这种微波处理方法简单,适合于从三七中大量生产次要人参皂苷。

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