Extraction process in Chuantieling (CTL) based on the quality by design (QbD) concept

Q3 Medicine
Li Ya , Li Zirui , Guo Zhihua
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引用次数: 0

Abstract

Objective

This study aimed to design and optimize the water extraction process for Chuantieling (喘贴灵, CTL) based on the concept of quality by design (QbD).

Methods

The single-factor experiments were used to select the best experimental points of CTL water extraction. On this basis, the transfer rate of ephedrine hydrochloride and sinapine thiocyanate, and the yield of the extract were evaluated as the evaluation indicators. The liquid-solid ratio, extraction time, and pH value were selected as the main factors to carry out the Box-Behnken design (BBD). A mathematical model of the critical process parameters (CPPs) and critical quality attributes (CQAs) was established, the interaction between CQAs and CPPs was examined, and the CTL extraction process design space was established and optimized, which guaranteed the stability of the process. The high performance liquid chromatography (HPLC) was used to analyze the main active compounds in the CTL extract.

Results

Through single-factor experiments, the best experimental parameters were found to be a liquid-solid ratio of 8∶1, extraction time of 90 min, pH value of 4, and extraction times of three. The experimental variance analysis results of the BBD showed that the P value of the regression model was less than 0.05, and the lack-of-fit value was greater than 0.01, indicating that the constructed model had good predictive ability. The operating space of the CPPs of the CTL water extraction process was combined with the actual production situation. In the production situation, the best extraction process was nine times of water addition, 72 min of extraction time, and 4.5 of pH value. The HPLC results showed that the peak areas of ephedrine hydrochloride, sinapine thiocyanate, tetrahydropalmatine, methyl eugenol, cinnamaldehyde, and 6-gingerol in the CTL extract accounted for 0.94%, 14.32%, 0.78%, 31.23%, 0.34%, and 0.44% of the total peak area, respectively.

Conclusion

The water extraction process design space of CTL based on QbD was conducive to actual production operations, ensuring the stability of the process.

基于质量设计(QbD)的川铁岭(CTL)萃取工艺
目的基于设计质量(QbD)的概念,设计并优化川铁灵(简称川铁灵,CTL)的水提工艺。方法采用单因素实验法筛选CTL水提取的最佳实验点。在此基础上,以盐酸麻黄碱和硫氰酸辛平的转移率、提取物得率为评价指标。以液固比、萃取时间、pH值为主要影响因素,进行Box-Behnken设计(BBD)。建立了关键工艺参数(CPPs)和关键质量属性(cqa)的数学模型,考察了cqa与CPPs之间的相互作用,建立并优化了CTL提取工艺设计空间,保证了工艺的稳定性。采用高效液相色谱法(HPLC)对CTL提取物中的主要活性成分进行了分析。结果通过单因素实验,优选出最佳实验参数为液料比为8∶1,提取时间为90 min, pH值为4,提取次数为3次。BBD的实验方差分析结果显示,回归模型的P值小于0.05,拟合缺失值大于0.01,表明构建的模型具有较好的预测能力。结合生产实际,设计了CTL水提工艺CPPs的运行空间。在生产情况下,最佳提取工艺为加水9次、提取时间72 min、pH值4.5。HPLC结果表明,CTL提取物中盐酸麻黄碱、硫氰酸辛纳平、四氢巴马汀、甲基丁香酚、肉桂醛和6-姜辣素的峰面积分别占总峰面积的0.94%、14.32%、0.78%、31.23%、0.34%和0.44%。结论基于QbD的CTL水提工艺设计空间有利于实际生产操作,保证了工艺的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Digital Chinese Medicine
Digital Chinese Medicine Medicine-Complementary and Alternative Medicine
CiteScore
1.80
自引率
0.00%
发文量
126
审稿时长
63 days
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