首页> 美国卫生研究院文献>Molecules >Multi-Response Optimization of Ultrasonic Assisted Enzymatic Extraction Followed by Macroporous Resin Purification for Maximal Recovery of Flavonoids and Ginkgolides from Waste Ginkgo biloba Fallen Leaves
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Multi-Response Optimization of Ultrasonic Assisted Enzymatic Extraction Followed by Macroporous Resin Purification for Maximal Recovery of Flavonoids and Ginkgolides from Waste Ginkgo biloba Fallen Leaves

机译:超声波辅助酶提取再大孔树脂纯化的多响应优化可最大程度地从废银杏落叶中回收黄酮和银杏内酯。

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摘要

In the present study, the process of ultrasonic assisted enzymatic extraction (UAEE), followed by macroporous resin purification, was successfully developed to achieve maximal recovery of flavonoids and ginkgolides from Ginkgo biloba fallen leaves (GBFL). Three effective extracted factors, including UAE power, EtOH%, and the amount of cellulase were screened by Plackett–Burman design (PBD). The important variables were further optimized by rotatable central composite design (RCCD). After the combination of PBD and RCCD, the resulting optimal UAEE conditions were as follows: UAE power of 218 W; EtOH% of 68%; the amount of cellulase of 8.4 mg; UAE temperature of 40 °C; UAE time of 20 min; pH of 5.0; and, sample particle size of 40 mesh. Under the optimum conditions; the yields of flavonoids were 0.74 ± 0.05% (n = 3) and ginkgolides was 0.42 ± 0.06% (n = 3), which were close to the predicted values. Moreover, the further enriching flavonoids and ginkgolides from the obtained GBFL extracts using the above optimum UAEE condition was successfully achieved by macroporous resin DA-201. After column adsorption and desorption on DA-201; the percentage of total flavonoids was (25.36 ± 1.03)%; ginkgolides was (12.43 ± 0.85)% and alkylphenols was (0.003 ± 0.0005)% from the obtained dry extracts of GBFL which were complied with Chinese pharmacopoeias. Therefore, the present study provided a convenient and efficient method for extraction and purification of flavonoids and ginkgolides from waste GBFL.
机译:在本研究中,成功​​开发了超声辅助酶提取(UAEE),然后纯化大孔树脂的方法,以实现从银杏落叶(GBFL)中最大程度地回收黄酮和银杏内酯。通过Plackett-Burman设计(PBD)筛选了三个有效提取因子,包括阿联酋功率,EtOH%和纤维素酶的量。重要变量通过可旋转中央复合设计(RCCD)进一步优化。将PBD和RCCD组合后,得到的最佳UAEE条件如下:UAE功率为218 W; EtOH%为68%;纤维素酶的量为8.4毫克;阿联酋温度为40°C;阿联酋时间20分钟; pH值为5.0;并且,样品粒度为40目。在最佳条件下;黄酮类化合物的收率为0.74±0.05%(n = 3),银杏内酯的收率为0.42±0.06%(n = 3),与预测值相近。此外,通过上述最佳UAEE条件,通过大孔树脂DA-201成功地实现了从获得的GBFL提取物中进一步富集类黄酮和银杏内酯。色谱柱在DA-201上吸附和解吸后;总黄酮含量为(25.36±1.03)%;从所获得的符合中国药典的GBFL干燥提取物中,银杏内酯含量为(12.43±0.85)%,烷基酚含量为(0.003±0.0005)%。因此,本研究提供了一种简便有效的方法,用于从废GBFL中提取和纯化黄酮类化合物和银杏内酯。

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