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An intrinsically shielded hydrogel for the adsorptive recovery of lysozyme

机译:一种内在屏蔽的水凝胶,用于溶菌酶的吸附恢复

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The present paper addresses the selective recovery of lysozyme from egg white using CM-dextran (carboxymethyldextran)-based hydrogels containing Cibacron Blue as an affinity ligand and co-immobilized BSA intended to act as a shielding agent to reduce non-specific adsorption. Initial studies using pure lysozyme were conducted that indicated that the adsorption capacity increased with ligand density and that adsorption was well described by a Langmuir-type isotherm. The inclusion of BSA as a putative shielding agent did not decrease the adsorption capacity for lysozyme in single-adsorbate experiments. To assess the effectiveness of the shielding strategy, subsequent experiments were conducted with both defined lysozyme/ovalbumin mixtures and hen's-egg white. From these studies, the optimal operating conditions for lysozyme recovery have been determined. These include: optimal initial egg-white concentration [a 10% (v/v) solution of native egg white in the chosen buffer], affinity-ligand density (1.86 mM) and ligand-to-shielding-agent ratio (4: 1). The purity of lysozyme obtained from egg white was improved from 69% with a non-shielded hydrogel to 94% with an intrinsically shielded hydrogel. Finally, the possibility of using a protein, rather than dextran-backbone-based, hydrogel was investigated. It was found that BSA could take the place of CM-dextran as the gel backbone in a simplified synthesis, producing a gel which also proved effective for lysozyme recovery with a 30% lysozyme in egg-white solution purified to approx. 92% in a single adsorption-desorption cycle.
机译:本文探讨了使用基于CM-葡聚糖(羧甲基葡聚糖)的水凝胶从蛋清中选择性回收溶菌酶的方法,该凝胶包含Cibacron蓝作为亲和配体和共固定的BSA,旨在充当屏蔽剂以减少非特异性吸附。进行了使用纯溶菌酶的初步研究,结果表明吸附能力随配体密度的增加而增加,并且吸附被Langmuir型等温线很好地描述了。在单吸附物实验中,包含BSA作为公认的屏蔽剂不会降低溶菌酶的吸附能力。为了评估屏蔽策略的有效性,随后对既定的溶菌酶/卵清蛋白混合物和鸡蛋进行了实验。从这些研究中,已经确定了用于溶菌酶回收的最佳操作条件。其中包括:最佳蛋清初始浓度[所选缓冲液中天然蛋清的10%(v / v)溶液],亲和配体密度(1.86 mM)和配体与屏蔽剂的比例(4:1) )。从蛋清获得的溶菌酶的纯度从使用非屏蔽水凝胶的69%提高到使用固有屏蔽水凝胶的94%。最后,研究了使用蛋白质而不是基于葡聚糖骨架的水凝胶的可能性。已经发现,BSA可以在简化的合成中代替CM-葡聚糖作为凝胶主链,从而生产出一种凝胶,该凝胶也被证明对溶菌酶的回收是有效的,在蛋清溶液中30%的溶菌酶被纯化至大约70%。在单个吸附-解吸循环中为92%。

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