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一种硫酸铵/乙醇双水相体系结合超声用于从丹参中分离纯化丹参酚酸 B。

An ammonium sulfate/ethanol aqueous two-phase system combined with ultrasonication for the separation and purification of lithospermic acid B from Salvia miltiorrhiza Bunge.

机构信息

School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang 116016, PR China.

出版信息

Ultrason Sonochem. 2012 Jul;19(4):719-24. doi: 10.1016/j.ultsonch.2011.12.017. Epub 2012 Jan 3.

DOI:10.1016/j.ultsonch.2011.12.017
PMID:22265019
Abstract

We studied the effect of ultrasonication extraction technology combined with ammonium sulfate/ethanol aqueous two-phase system (ATPS) for the separation of lithospermic acid B (LAB) from Salvia miltiorrhiza Bunge. According to the literature and preliminary studies, ammonium sulfate concentration, ethanol concentration, pH, ultrasonication power, ultrasonication time and the ratio of solvent-to-solid were investigated using a single factor design to identify the factors affecting separation. Taking into consideration a simultaneous increase in LAB recovery (R (%)) and partition coefficient (K), the best performance of the ATPS was obtained at 25°C and pH 2 using ammonium sulfate 22% (w/w) and ethanol 30% (w/w). To keep the solvent-to-solid ratio at 10, response surface methodology was used to find the optimal ultrasonication power and ultrasonication time. Quadratic models were predicted for LAB yield in the upper phase. Optimal conditions of 572.1 W ultrasonication power and 42.2 min produced a maximum yield of LAB of 42.16 mg g(-1) sample. There was no obvious degradation of LAB with ultrasound under the applied conditions, and the experimental yield of LAB was 42.49 mg g(-1) sample and the purity was 55.28% (w/w), which was much higher than that obtained using conventional extraction. The present study demonstrated that ultrasound coupled with aqueous two-phase systems is very efficient tool for the extraction and purification of LAB from Salvia miltiorrhiza Bunge.

摘要

我们研究了超声提取技术与硫酸铵/乙醇双水相体系(ATPS)相结合分离丹参中丹酚酸 B(LAB)的效果。根据文献和初步研究,采用单因素设计考察了硫酸铵浓度、乙醇浓度、pH 值、超声功率、超声时间和溶剂固比等因素对分离的影响。考虑到 LAB 回收率(R(%))和分配系数(K)的同时提高,在 25°C 和 pH 2 下,采用 22%(w/w)硫酸铵和 30%(w/w)乙醇获得了最佳的 ATPS 性能。为保持溶剂固比为 10,采用响应面法寻找最佳超声功率和超声时间。对上层相中的 LAB 产率进行了二次模型预测。超声功率 572.1 W 和超声时间 42.2 min 的最佳条件下,LAB 的最大产率为 42.16mg g(-1) 样品。在应用条件下,超声对 LAB 没有明显降解,LAB 的实验产率为 42.49mg g(-1) 样品,纯度为 55.28%(w/w),明显高于常规提取。本研究表明,超声与双水相体系相结合是从丹参中提取和纯化 LAB 的有效工具。

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