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用于溶菌酶识别的整体式分子印迹冷冻凝胶

Monolithic molecularly imprinted cryogel for lysozyme recognition.

作者信息

Rabieizadeh Mohammadmahdi, Kashefimofrad Seyed Mohammadreza, Naeimpoor Fereshteh

机构信息

Biotechnology Research Laboratory, School of Chemical Engineering, Iran University of Science and Technology (IUST), Tehran, Iran.

出版信息

J Sep Sci. 2014 Oct;37(20):2983-90. doi: 10.1002/jssc.201400453. Epub 2014 Sep 11.

Abstract

The application of molecularly imprinted polymers in the selective adsorption of macromolecules such as proteins by monolithic protein-imprinted columns requires a macroporous structure, which can be provided by cryogelation at low temperature in which the formation of ice crystals gives a porous structure to the molecularly imprinted polymer. In this study, we applied this technique to synthesize lysozyme-imprinted polyacrylamide cryogels containing 8% w/v of total monomers and 0.3% w/v of lysozyme. The synthesized cryogel was sponge-like and elastic with very fast swelling and reshaping properties, showing a swelling ratio of 24.5 ± 3 and gel fraction yield of about 72%. It showed an imprinting effect of 1.58 and a separation factor of 1.37 for cytochrome c as the competing protein. Adsorption studies on the cryogel revealed that it follows the Langmuir isotherm, with a maximum theoretical adsorption capacity of 36.3 mg lysozyme per gram of cryogel. Additionally, it was shown that a salt-free rebinding solution at low flow rate and pH = 7.0 is favorable for lysozyme rebinding. This kind of monolithic column promises a wide range of application in separation of various biomolecules due to its preparation simplicity, good rebinding characteristics, and macroporosity.

摘要

整体蛋白质印迹柱中分子印迹聚合物在蛋白质等大分子的选择性吸附中的应用需要大孔结构,这可以通过低温冷冻凝胶化来实现,其中冰晶的形成赋予分子印迹聚合物多孔结构。在本研究中,我们应用该技术合成了含有8% w/v总单体和0.3% w/v溶菌酶的溶菌酶印迹聚丙烯酰胺冷冻凝胶。合成的冷冻凝胶呈海绵状且有弹性,具有非常快的溶胀和重塑特性,溶胀率为24.5±3,凝胶分数产率约为72%。对于作为竞争蛋白的细胞色素c,其印迹效应为1.58,分离因子为1.37。对冷冻凝胶的吸附研究表明,它遵循朗缪尔等温线,每克冷冻凝胶的最大理论吸附容量为36.3 mg溶菌酶。此外,研究表明,低流速且pH = 7.0的无盐再结合溶液有利于溶菌酶再结合。这种整体柱由于其制备简单、良好的再结合特性和大孔性,有望在各种生物分子的分离中得到广泛应用。

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