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首页> 外文期刊>Analytical and bioanalytical chemistry >A simple and rapid infrared-assisted self enzymolysis extraction method for total flavonoid aglycones extraction from Scutellariae Radix and mechanism exploration
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A simple and rapid infrared-assisted self enzymolysis extraction method for total flavonoid aglycones extraction from Scutellariae Radix and mechanism exploration

机译:一种简单快捷的红外辅助自酶解萃取方法,用于总黄酮糖酮萃取瘢痕疙瘩桡骨和机制勘探

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摘要

A new, simple, and fast infrared-assisted self enzymolysis extraction (IRASEE) approach for the extraction of total flavonoid aglycones (TFA) mainly including baicalein, wogonin, and oroxylin A from Scutellariae Radix is presented to enhance extraction yield. Extraction enzymolysis temperature, enzymolysis liquid-to-solid ratio, enzymolysis pH, enzymolysis time and infrared power, the factors affecting IRASEE procedure, were investigated in a newly designed, temperature-controlled infrared-assisted extraction (TC-IRAE) system to acquire the optimum analysis conditions. The results illustrated that IRASEE possessed great advantages in terms of efficiency and time compared with other conventional extraction techniques. Furthermore, the mechanism of IRASEE was preliminarily explored by observing the microscopic change of the samples surface structures, studying the main chemical compositions change of the samples before and after extraction and investigating the kinetics and thermodynamics at three temperature levels during the IRASEE process. These findings revealed that IRASEE can destroy the surface microstructures to accelerate the mass transfer and reduce the activation energy to intensify the chemical process. This integrative study presents a simple, rapid, efficient, and environmental IRASEE method for TFA extraction which has promising prospects for other similar herbal medicines.
机译:提出了一种新的,简单,快速的红外辅助自酶解萃取(IRASEE)方法,用于提取总黄酮糖酮(TFA),主要包括来自瘢痕疙瘩基底的BaciCaline,Wogonin和Oroxylin A.提高萃取产率。提取酶解温度,酶解液 - 实心比,酶解pH,酶解时间和红外线,在新设计的温控红外辅助提取(TC-IRAE)系统中,研究了影响IRASEE程序的因素,以获取最佳分析条件。结果表明,与其他常规提取技术相比,IRASEE在效率和时间方面具有很大的优势。此外,通过观察样品表面结构的微观变化,研究了IRASEE的机制,研究了在IRASEE过程中提取和研究了三次温度水平的样品的主要化学成分。这些发现显示,IRASEE可以破坏表面微结构以加速传质并降低激活能量以加强化学过程。该一体化研究提出了一种简单,快速,高效,环境的IRASEE方法,对TFA提取有希望的其他类似草药的前景。

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