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用于亲和毛细管电色谱的胃蛋白酶修饰手性整体柱。

Pepsin-modified chiral monolithic column for affinity capillary electrochromatography.

作者信息

Hong Tingting, Chi Cuijie, Ji Yibing

机构信息

Department of Analytical Chemistry, China Pharmaceutical University, Nanjing, China; Key Laboratory of Drug Quality Control and Pharmacovigilance, Ministry of Education, Nanjing, China.

出版信息

J Sep Sci. 2014 Nov;37(22):3377-83. doi: 10.1002/jssc.201400424. Epub 2014 Sep 22.

Abstract

Pepsin-modified affinity monolithic capillary electrochromatography, a novel microanalysis system, was developed by the covalent bonding of pepsin on silica monolith. The column was successfully applied in the chiral separation of (±)-nefopam. Furthermore, the electrochromatographic performance of the pepsin-functionalized monolith for enantiomeric analysis was evaluated in terms of protein content, pH of running buffer, sample volume, buffer concentration, applied voltage, and capillary temperature. The relative standard deviation (%RSD) values of retention time (intraday <0.53, n = 10; interday <0.53, n = 10; column-to-column <0.70, n = 20; and batch-to-batch <0.80, n = 20) indicated satisfactory stability of these columns. No appreciable change was observed in retention and resolution for chiral recognition of (±)-nefopam in 50 days with 100 injections. The proteolytic activity of this stationary phase was further characterized with bovine serum albumin as substrate for online protein digestion. As for monolithic immobilized enzyme reactor, successive protein injections confirmed both the operational stability and ability to reuse the bioreactor for at least 20 digestions. It implied that the affinity monolith used in this research opens a new path of exploring particularly versatile class of enzymes to develop enzyme-modified affinity capillary monolith for enantioseparation.

摘要

胃蛋白酶修饰的亲和整体毛细管电色谱法是一种新型微分析系统,它通过胃蛋白酶与硅胶整体材料的共价键合而开发。该柱成功应用于(±)-奈福泮的手性分离。此外,还从蛋白质含量、运行缓冲液的pH值、样品体积、缓冲液浓度、施加电压和毛细管温度等方面评估了胃蛋白酶功能化整体柱用于对映体分析的电色谱性能。保留时间的相对标准偏差(%RSD)值(日内<0.53,n = 10;日间<0.53,n = 10;柱间<0.70,n = 20;批次间<0.80,n = 20)表明这些柱具有令人满意的稳定性。在50天内进行100次进样,对(±)-奈福泮的手性识别中,保留和分离度没有明显变化。以牛血清白蛋白为底物进行在线蛋白质消化,进一步表征了该固定相的蛋白水解活性。对于整体固定化酶反应器,连续进样蛋白质证实了其操作稳定性以及该生物反应器至少可重复使用20次进行消化的能力。这意味着本研究中使用的亲和整体材料为探索特别通用的酶类开辟了一条新途径,以开发用于对映体分离的酶修饰亲和毛细管整体材料。

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