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1.
朱金霞  卜春苗  龚波林 《色谱》2006,24(2):129-134
采用分散聚合法制备小颗粒种子及“一步种子溶胀聚合”法成功地制备了粒径为3.0 μm的无孔单分散亲水性交联聚甲基丙烯酸环氧丙酯树脂,其表面经水解、环氧化、再水解后与氯磺酸反应,制备了一种新型的强阳离子交换色谱填料(SCX)。详细考察了该填料对标准蛋白质的分离性能及流动相中盐的种类、有机溶剂、流速等对蛋白质保留的影响。实验结果表明,在流速为4 mL/min时,采用线性梯度洗脱,1.0 min内可快速分离4种标准蛋白质,蛋白质的保留符合阳离子交换色谱规律。将SCX应用于快速纯化鸡蛋清中的溶菌酶和猪心中的细胞色素-C,取得了较好的效果。  相似文献   

2.
将粒径为8.0μm多孔单分散交联氯甲基苯乙烯-二乙烯苯树脂的表面经化学方法改性,得到了一种亲水性良好的中强阳离子交换色谱填料,详细考察了该改性后树脂的表面亲水性、对标准蛋白的分离性能、盐种类及盐浓度对蛋白保留行为的影响。实验结果表明,当流动相流速为3 mL/min时,四种标准蛋白可在3min内基线快速分离,蛋白质的保留符合阳离子交换色谱规律。该填料应用于鸡蛋清中溶菌酶快速分离纯化,取得较好效果。  相似文献   

3.
以3.0μm无孔单分散亲水性交联聚甲基丙烯酸环氧丙酯树脂为基质,将其表面经新的化学方法改性后制备了一种新型的无孔中强阳离子交换色谱填料。详细考察了该无孔填料对标准蛋白分离性能,有机溶剂、pH、流动相盐种类和流速等对蛋白质保留的影响。实验结果表明,在流速为4 mL/min时,线性梯度时间在2.0 min内可快速分离4种标准蛋白,蛋白质的保留符合阳离子交换色谱规律。将其应用于快速纯化鸡蛋清中的溶菌酶,取得较好效果。  相似文献   

4.
杨春霞  周晶  龚波林 《色谱》2009,27(2):191-196
以自制的5.0 μm单分散大孔亲水交联聚甲基丙烯酸环氧丙酯(PGMA/EDMA)微球为基质,对其表面进行化学改性,合成弱阳离子交换色谱填料(WCX)。详细考察了该填料对标准蛋白质的分离性能、表面亲水性能、稳定性和重现性以及流速对蛋白保留的影响。实验结果表明,该色谱填料对蛋白的分离性能、重现性及稳定性良好;在流速为3 mL/min时,采用线性梯度洗脱,6 min内可分离4种标准碱性蛋白质,以溶菌酶测定的该填料的动力学吸附容量为29.86 mg/g。将其用于鱼精蛋白的分离纯化,经反相高效液相色谱测定纯化后鱼精蛋白的纯度为99.2%;与商品Shodex IEC SP-825强阳离子交换色谱柱比较,纯化结果几乎一样。  相似文献   

5.
对自制的硅基高交联磺化PS-DVB混合模式反相强阳离子交换固定相的色谱性能进行了考察。通过改变流动相条件:在反相色谱中,分离了5种疏水性化合物;在离子交换色谱中,分离了4种碱性有机化合物。考察了流动相中缓冲盐浓度、p H和乙腈浓度对溶质保留时间的影响。结果表明,该固定相既具有强阳离子交换作用,又兼有疏水相互作用。通过改变色谱分离模式,可实现亲水性或疏水性化合物的分离。可作为现有液相色谱模式的一种补充,为复杂样品的分离提供技术参考。  相似文献   

6.
张恺  支明玉  何艺  朱岩  曾秀琼  寿旦 《色谱》2020,38(4):445-451
离子色谱是分离分析阳离子型化合物的重要手段之一。高效阳离子交换固定相的制备研究对离子色谱技术的发展具有重要的意义。该文以丙烯酸和顺丁烯二酸酐为单体,2-巯基乙基磺酸钠为巯基改性剂,提出了聚合物基质微球巯基改性自由基聚合修饰方法,用以制备新型双功能的阳离子交换固定相。该固定相以羧基和磺酸基为功能基,仅用简单的强酸淋洗液便可以实现常规阳离子的基线分离。利用色谱学模型,对金属离子和有机胺的保留行为进行了研究。采用梯度淋洗模式,可在24 min内实现10种阳离子的分离,表明固定相具有优异的色谱性能。“巯基-烯”修饰方法简单、高效。此外,通过调节巯基改性剂的比例能够实现对固定相交换能力的调控。  相似文献   

7.
王建山  夏红军  万广平  刘家玮  白泉 《色谱》2016,34(12):1228-1233
以硅胶为基质、氨基己酸为配基制备了一种新型弱阳离子交换/疏水(WCX/HIC)双功能混合模式色谱固定相。该固定相配基具有一定的疏水性且含有羧基,在高盐浓度下表现为HIC的性质,可作为HIC固定相使用;在低盐浓度条件下表现为离子交换的性质,可作为WCX固定相使用。分别考察了该介质在WCX和HIC两种模式下对标准蛋白质的分离性能,并与商品柱进行比较。结果表明,所合成的WCX/HIC双功能固定相在WCX和HIC两种模式下对蛋白质均有较高的分离度和选择性,且分离能力与商品柱相当,两种模式下标准蛋白质的质量和活性回收率均大于93%,表明该柱具有“一柱二用”的功能,适于生物大分子的分离纯化。基于此双功能色谱柱构建的在线单柱二维液相色谱(2DLC-1C)可在60 min内实现8种蛋白质的快速分离。在70 min内完成了对蛋清中溶菌酶的二维纯化,纯度可达到98.3%。该技术中一根色谱柱可当作两根色谱柱使用,对蛋白质组学研究和重组蛋白药物的生产具有重要的应用价值。  相似文献   

8.
孙雨安  王超威  李振兴  于文浩  刘军伟  朱岩 《色谱》2018,36(12):1206-1210
以烯丙基缩水甘油醚(AGE)为乳胶聚合单体,制备了一种乳胶附聚型阴离子交换固定相。通过无皂化乳液聚合法,以AGE和苯乙烯(ST)为共聚单体制备AGE-ST共聚乳胶。将该乳胶季铵化后附聚在磺化的聚苯乙烯-二乙烯苯(PS-DVB)微球表面,制备一种乳胶附聚型阴离子交换色谱固定相。通过扫描电镜(SEM)、傅里叶红外光谱(FT-IR)和元素分析(EA)等对该乳胶附聚型阴离子交换色谱固定相的理化性质进行表征,结果显示季铵化的AGE-ST共聚乳胶成功附聚在磺化的PS-DVB微球表面,并通过分离常规阴离子和有机酸对制得的阴离子交换剂的色谱性能进行评价。AGE以其良好的pH耐受性和活泼的反应活性为离子交换色谱固定相的制备提供一个新的选择。  相似文献   

9.
将粒径为3.0 μm无孔单分散亲水性交联聚甲基丙烯酸环氧丙酯树脂(PGMA/EDMA)的表面经不同的化学方法改性,制备了两种不同配基的弱阴离子交换(WAX-Ⅰ和WAX-Ⅱ)色谱填料.在同等色谱条件下,比较了两种填料对蛋白质的分离性能,发现WAX-Ⅰ型填料分离性能优于WAX-Ⅱ.详细考察了WAX-Ⅰ型弱阴离子交换色谱填料流动相pH值、流速及有机溶剂等对蛋白质保留的影响.实验结果表明,当流动相流速为3mL/min时,4种标准蛋白可在2 min内基线快速分离,蛋白质的保留符合阴离子交换色谱规律.该填料可以用于生物工程产品的快速分离和纯化.  相似文献   

10.
连续棒状弱阳离子交换柱的合成及其对蛋白质保留行为   总被引:8,自引:0,他引:8  
卫引茂  黄晓冬  陈强  耿信笃 《分析化学》2000,28(10):1194-1198
以甲基丙烯酸缩水甘油酯为单体,乙二醇二甲基丙烯酸酯为交联剂在空管柱内就地聚合制备了一种聚合物连续棒状色谱基质,并通过“在线”化学改性将其修饰为弱阳离子交换柱。考察了该色谱柱的孔结构特征、表面亲水性能、对标准蛋白的分离效果和pH值对保留行为的影响以及色谱柱的重现性。结果表明,该色谱柱对蛋白的分离性能及重现性良好,柱寿命不短于半年。对溶菌酶的活性回收率达96.2%。流动相流速为8.0mL/min条件下  相似文献   

11.
Gong B  Zhu J  Li L  Qiang K  Ren L 《Talanta》2006,68(3):666-672
The monodisperse, 5.0 μm non-porous poly(glycidylmethacrylate-co-ethylenedimethacrylate) (PGMA/EDMA) beads were prepared by a single-step swelling and polymerization method. The seed particles prepared by dispersion polymerization exhibited good absorption of the monomer phase. Based on this media, a weak cation exchange (WCX) stationary phase for high performance liquid chromatography (HPLC) was synthesized by a new chemical modification method. The prepared resin has advantages of biopolymer separation, high column efficiency, low column backpressure, high protein mass recovery and good resolution for proteins. The measured bioactivity recovery for lysozyme was 97 ± 5%. The dynamic protein loading capacity of the synthesized WCX packings was 20.5 mg/g. Four proteins were completely separated in 3.0 min using the synthesized WCX stationary phase. The experimental results show that the obtained WCX resin has very weak hydrophobicity. The WCX resin was also used for the rapid separation and purification of lysozyme from egg white in 3.0 min with only one step. The purity and specific bioactivity of the purified lysozyme was found more than 95% and 70.264 IU/mg, respectively.  相似文献   

12.
Introduction Since 19541 the polymeric separation media has attracted much attention due to their chemical stability over the entire pH range. The rigid, highly cross-linked styrene copolymers were first used for chromatography by Moore.2 The macroporous copolymers currently available are not only chemically stable but also more resistant to mechanical forces prevailing in a column and therefore are comparable to the traditional packings based on silica gel. Most polymer separation media are …  相似文献   

13.
The monodisperse, porous poly(chloromethylstyrene-co-divinylbenzene) beads of 7.9 microm were prepared by a single-step swelling and polymerization method. The seed particles prepared by dispersion polymerization exhibited good absorption of the monomer phase. Based on this media, a weak cation-exchange (WCX) stationary phase for HPLC was synthesized by a new chemically modified method. The prepared resin has advantages of biopolymer separation, high column efficiency, low column backpressure, high protein mass recovery, and good resolution for proteins. The dynamic protein-loading capacity of the synthesized WCX packings was 18.2 mg/g. Five proteins were separated in 3.0 min using the synthesized WCX stationary phase. The experimental results show that the obtained WCX resin has very weak hydrophobicity. The WCX resin was also used for the rapid separation and purification of lysozyme from egg white in 5.0 min with only one step. The purity and specific bioactivity of the purified lysozyme were found to be more than 93% and 70 245 U/mg, respectively.  相似文献   

14.
The monodisperse, macroporous poly(glycidyl methacrylate- co-ethylene dimethacrylate) beads were synthesized by a single-step swelling and polymerization method. Based on this media, a weak cation exchange (WCX) stationary phase for HPLC was synthesized by a new chemically modified method. The prepared resin has advantages for biopolymer separation, high column efficiency, low column backpressure, high protein mass recovery, and good resolution for proteins. The measured bioactivity recovery for lysozyme was 98+/-5%. The dynamic protein loading capacity of the WCX packings was 17.3 mg g(-1). The experimental results show that the synthesized WCX resin has very weak hydrophobicity.  相似文献   

15.
A novel dual‐retention mechanism mixed‐mode stationary phase based on silica gel functionalized with PEG 400 and succinic anhydride as the ligand was prepared and characterized by infrared spectra and elemental analysis. Because of the ligand containing PEG 400 and carboxyl function groups, it displayed hydrophobic interaction chromatography (HIC) characteristic in a high‐salt‐concentration mobile phase, and weak cation exchange chromatography (WCX) characteristic in a low‐salt‐concentration mobile phase. As a result, it can be employed to separate proteins with both WCX and HIC modes. The resolution and selectivity of the stationary phase was evaluated under both HIC and WCX modes with protein standards, and its performance was comparable to that of conventional ion‐exchange chromatography and HIC columns. The results indicated that the novel dual‐retention mechanism column, in many cases, could replace two individual WCX and HIC columns as a ‘2D column’. In addition, the mixed retention mechanism of proteins on this ‘2D column’ was investigated with stoichiometric displacement theory for retention of solute in liquid chromatography in detail in order to understand why the dual‐retention mechanism column has high resolution and selectivity for protein separation under WCX and HIC modes, respectively. Based on this ‘2D column’, a new 2DLC technology with a single column was developed. It is very important in proteome research and recombinant protein drug production to save column expense and simplify the processes in biotechnology. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

16.
Based on the monodisperse poly(glycidyl methacrylate-co-ethylenedimethacrylate) beads (PGMA/EDMA) with macropore as a medium, a new hydrophilic medium cation exchange (MCX) stationary phase for HPLC was synthesized by a new chemically modified method. The stationary phase was evaluated with the property of ion exchange, separability, reproducibility, hydrophilicity, effect of salt concentration, salt types, column loading and pH on the separation and retention of proteins in detail. It was found that it follows ion exchange chromatographic (IEC) retention mechanism. The measured bioactivity recovery for lysozyme was (96 ± 5)%. The dynamic protein loading capacity of the synthesized MCX packings was 21.8 mg/g. Five proteins were almost completely separated within 6.0 min at a flow rate of 4 mL/min using the synthesized MCX resin. The MCX resin was also used for the rapid separation and purification of lysozyme from egg white with only one step. The purity and specific bioactivity of the purified lysozyme was found more than 95% and 70345 U/mg, respectively.  相似文献   

17.
Oxidative refolding of the denatured/reduced lysozyme was investigated by using weak-cation exchange chromatography (WCX). The stationary phase of WCX binds to the reduced lysozyme and prevented it from forming intermolecular aggregates. At the same time urea and ammonium sulfate were added to the mobile phase to increase the elution strength for lysozyme. Ammonium sulfate can more stabilize the native protein than a common eluting agent,sodium chloride. Refolding of lysozyme by using this WCX is successfully. It was simply carried out to obtain a completely and correctly refolding of the denatured lysozyme at high concentration of 20.0 mg/mL.  相似文献   

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