Wang Shujie, Li Chun, Wang Hujun, Zhong Xiangmei, Zhao Jing, Zhou Yajun
a College of Biological and Agricultural Engineering , Jilin University , Changchun , China.
b Key Laboratory of Bionic Engineering (Ministry of Education, China) , Jilin University , Changchun , China.
Prep Biochem Biotechnol. 2016;46(3):274-80. doi: 10.1080/10826068.2015.1031384.
This study aimed to improve the extraction rate of paclitaxel from Taxus cuspidata in order to determine the most effective combination of ultrasonic extraction and thin-layer chromatography-ultraviolet (TLC-UV) rapid separation method. The study was performed using the Box-Behnken test design to conduct single-factor experiments using ultrasonic extraction of paclitaxel from Taxus cuspidata. The study showed ethanol to be the best extraction solvent. When mixed with dichloromethane (1:1), the ratio of material to liquid was 1:50 when using an ultrasonic time of 1 hr at a power of 200 W. The correction coefficient K for the separation and detection of paclitaxel using the TLC-UV spectrophotometric method was 0.009152. Multifactor experiments determined the effect of the rate of liquid to material (X1), ultrasonic time (X2), and ultrasonic power (X3) on extraction using extraction volume as the dependent variable. Response surface analysis allowed a regression equation to be obtained, with the optimal conditions for extraction when the rate of liquid to material was 53.23 mL/g as an ultrasonic time of 1.11 hr and an ultrasonic power of 207.88 W. Using these parameters, the average amount of extracted paclitaxel was about 130.576 µg/g, which was significantly better than for other extraction methods.
本研究旨在提高东北红豆杉中紫杉醇的提取率,以确定超声提取与薄层色谱 - 紫外(TLC - UV)快速分离方法的最有效组合。该研究采用Box - Behnken试验设计,对东北红豆杉中紫杉醇的超声提取进行单因素实验。研究表明乙醇是最佳提取溶剂。当与二氯甲烷(1:1)混合时,在200W功率下超声1小时,料液比为1:50。采用TLC - UV分光光度法分离检测紫杉醇的校正系数K为0.009152。多因素实验以提取量为因变量,确定了料液比(X1)、超声时间(X2)和超声功率(X3)对提取的影响。通过响应面分析得到回归方程,提取的最佳条件为料液比53.23 mL/g、超声时间1.11小时、超声功率207.88W。使用这些参数,紫杉醇的平均提取量约为130.576μg/g,明显优于其他提取方法。