金鑫 张振海 朱静 孙娥 郁丹红 陈小云 刘其媛 宁青 贾晓斌. 响应面法优化纳米二氧化硅固体分散技术辅助酶解制备染料木素J. 药学学报, 2012,47(4): 522-528.
引用本文: 金鑫 张振海 朱静 孙娥 郁丹红 陈小云 刘其媛 宁青 贾晓斌. 响应面法优化纳米二氧化硅固体分散技术辅助酶解制备染料木素J. 药学学报, 2012,47(4): 522-528.
. Response surface method optimize of nano-silica solid dispersion technology assistant enzymatic hydrolysis preparation genisteinJ. 药学学报, 2012,47(4): 522-528.
Citation: . Response surface method optimize of nano-silica solid dispersion technology assistant enzymatic hydrolysis preparation genisteinJ. 药学学报, 2012,47(4): 522-528.

响应面法优化纳米二氧化硅固体分散技术辅助酶解制备染料木素

Response surface method optimize of nano-silica solid dispersion technology assistant enzymatic hydrolysis preparation genistein

  • 摘要:

    本研究旨在使用纳米二氧化硅固体分散技术, 提高酶解制备染料木素的效率。首先采用溶剂法制备染料木苷-纳米二氧化硅固体分散体, 利用差示扫描量热法和扫描电镜对固体分散体进行验证, 再利用蜗牛酶将其水解从而制备染料木素。以染料木素转化率为指标, 通过单因素试验分别考察染料木苷及其固体分散体在酶解过程中不同的影响因素, 再利用响应面法优化染料木苷固体分散体酶解制备染料木素的工艺。染料木苷-纳米二氧化硅固体分散体酶解反应最佳条件: 反应介质pH 7.1、温度为52.2 、加酶量5.0 mg·mL−1、反应时间为7 h。在此条件下, 转化率为 (93.47 ± 2.40) %, 比未经形成固体分散体的染料木苷转化速率提高了2.62倍。对水解产物进行纯化得到单体染料木素。采用蜗牛酶水解染料木苷-纳米二氧化硅固体分散体制备染料木素, 方法简单, 酶解时间显著缩短, 适用于规模化生产。

     

    Abstract:

    This article reports that nano-silica solid dispersion technology was used to raise genistein efficiency through increasing the enzymatic hydrolysis rate.  Firstly, genistin-nano-silica solid dispersion was prepared by solvent method.  And differential scanning calorimetry (DSC) and transmission electron microscopy (TEM) were used to verify the formation of solid dispersion, then enzymatic hydrolysis of solid dispersion was done by snailase to get genistein.  With the conversion of genistein as criteria, single factor experiments were used to study the different factors affecting enzymatic hydrolysis of genistin and its solid dispersion.  And then, response surface method was used to optimize of nano-silica solid dispersion technology assistant enzymatic hydrolysis.  The optimum condition to get genistein through enzymatic hydrolysis of genistin-nano-silica solid dispersion was pH 7.1, temperature 52.2 , enzyme concentration 5.0 mg·mL−1 and reaction time 7 h.  Under this condition, the conversion of genistein was (93.47 ± 2.40) %.  Comparing with that without forming the genistin-nano-silica solid dispersion, the conversion increased 2.62 fold.  At the same time, the product of hydrolysis was purified to get pure genistein.  The method of enzymatic hydrolysis of genistin-nano-silica solid dispersion by snailase to obtain genistein is simple, efficiency and suitable for the modern scale production.

     

/

返回文章
返回