Supramolecular solvent-based ultrasound-assisted extraction of fangchinoline and tetrandrine from the roots of Stephaniae tetrandrae.

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Yingzhen Wang, Bingyue Cao, Shanshan Shi, Shulin Gao, Dandan Ge
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引用次数: 0

Abstract

A supramolecular solvent (SUPRAS) based ultrasound-assisted extraction method was developed for the extraction of fangchinoline and tetrandrine from Radix Stephaniae tetrandrae. SUPRASs were prepared in aqueous solutions containing hexafluorobutanol (HFB) and alkanols for the first time. HFB was used as a coacervation agent and density-regulating agent for the SUPRAS preparation. The biosurfactants, namely hexanol, octanol, and decanol were selected as the amphiphiles. The possible mechanism of the new SUPRAS formation was studied. The hydrogen-bond and hydrophobic interactions between HFB and alkanols are the main driving forces for the new SUPRAS formation. The crucial parameters influencing the extraction yields of FAN and TET, such as the type and content of amphiphile, type and content of coacervation agent, volume of SUPRAS, ultrasound time, and extraction temperature were investigated and optimized. HFB-hexanol SUPRAS was found to be the most effective extraction solvent for the extraction of fangchinoline and tetrandrine from Stephaniae tetrandrae. Under the optimized conditions, HFB-hexanol SUPRAS showed extraction yields of 7.11 and 13.89 mg g-1 for FAN and TET, respectively. The values were higher than those obtained with other extraction methods. The developed method has a great potential for extracting alkaloids from natural plant materials.

超分子溶剂超声辅助提取粉防己碱及防己碱的研究。
建立了一种基于超分子溶剂(SUPRAS)的超声辅助提取法,从粉防己碱中提取防己碱和防己碱。首次在含有六氟丁醇(HFB)和烷醇的水溶液中制备了SUPRASs。在SUPRAS的制备中,HFB作为凝聚剂和密度调节剂。选择生物表面活性剂己醇、辛醇和癸醇作为两亲分子。研究了新SUPRAS形成的可能机理。HFB与烷醇之间的氢键和疏水相互作用是新SUPRAS形成的主要驱动力。考察并优化了影响两亲体类型和含量、凝聚剂类型和含量、SUPRAS体积、超声时间、萃取温度等关键参数对FAN和TET提取率的影响。hhb -己醇SUPRAS是提取粉防己碱和防己碱最有效的溶剂。在优化条件下,hfb -己醇SUPRAS对FAN和TET的提取率分别为7.11和13.89 mg g-1。与其他提取方法相比,所得值更高。该方法在从天然植物材料中提取生物碱方面具有很大的潜力。
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
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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