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首页> 外文期刊>Process Biochemistry >Purification of lysozyme from egg white by Reactive Blue 4 and Reactive Red 120 dye-ligands immobilised composite membranes
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Purification of lysozyme from egg white by Reactive Blue 4 and Reactive Red 120 dye-ligands immobilised composite membranes

机译:活性蓝4和活性红120染料-配体固定化复合膜从蛋清中纯化溶菌酶

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摘要

A composite membrane was synthesized from 2-hydroxyethylmethacrylate (HEMA) and chitosan (pHEMA/chitosan) via UV initiated photo-polymerisation. Reactive Blue 4 (Blue-4) and Reactive Red 120 (Red-120) were immobilised onto pHEMA/chitosan membranes. In the first part of this study, the binding characteristics of lysozyme to different dye-ligand immobilized membranes have been studied from aqueous solution using the plain membrane as a control system. The polarity of the investigated membranes was determined by contact angle measurement. The adsorption capacities of both dye-ligand immobilised membranes increased with increasing temperature but decreased with increasing NaCl concentration. The adsorption isotherm fitted both the Langmuir and the Freundlich models. A theoretical analysis has been conducted to estimate the thermodynamic contributions (changes in enthalpy, entropy and Gibbs free energy) for the adsorption of lysozyme to different dye-ligand immobilised composite membranes. In the second part, their purification efficacy of lysozyme from egg white was investigated. The purity of the eluted lysozyme was analysed by HPLC. The purity of lysozyme extracted from egg white was 84% with Red-120 immobilised membrane. This was 21 % for Blue-4 immobilised membrane. The recovery yields were 72% and 16% for Red-120 and Blue-4 immobilised membranes, respectively. The Red 120 immobilised membrane provided an efficient method to purify lysozyme from egg white, showing high adsorption capacity and high selectivity for the lysozyme. On the other hand, the Blue-4 immobilised composite membrane had a lower adsorption capacity and selectivity than that of the Red-120 immobilised one. Purification was monitored by determination of lysozyme activity using Micrococcus lysodeikticus as substrate. The dye-ligand immobilised composite membranes are stable when subjected to sanitization with sodium hydroxide after repeated separation-elution cycles.
机译:通过UV引发的光聚合,由甲基丙烯酸2-羟乙酯(HEMA)和壳聚糖(pHEMA /壳聚糖)合成复合膜。将反应性蓝4(Blue-4)和反应性红120(Red-120)固定在pHEMA /壳聚糖膜上。在本研究的第一部分中,已经使用平膜作为对照系统从水溶液中研究了溶菌酶与不同染料配体固定膜的结合特性。通过接触角测量确定所研究的膜的极性。两种染料-配体固定膜的吸附容量均随温度的升高而增加,但随NaCl浓度的增加而降低。吸附等温线同时适用于Langmuir模型和Freundlich模型。已经进行了理论分析,以估计溶菌酶吸附到不同的染料配体固定的复合膜上的热力学贡献(焓,熵和吉布斯自由能的变化)。在第二部分中,研究了它们从蛋清中纯化溶菌酶的功效。通过HPLC分析洗脱的溶菌酶的纯度。用Red-120固定膜从蛋清中提取的溶菌酶纯度为84%。对于固定有Blue-4的膜,该比例为21%。 Red-120和Blue-4固定膜的回收率分别为72%和16%。固定化Red 120的膜提供了一种从蛋清中纯化溶菌酶的有效方法,对溶菌酶表现出高吸附能力和高选择性。另一方面,固定有Blue-4的复合膜比固定有Red-120的复合膜具有较低的吸附能力和选择性。使用溶菌微球菌(Micrococcus lysodeikticus)作为底物,通过测定溶菌酶活性来监测纯化。在反复的分离-洗脱循环后,用氢氧化钠消毒后,固定有染料-配体的复合膜是稳定的。

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