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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Comparison of chromatographic ion-exchange resins - IV. Strong and weak cation-exchange resins and heparin resins
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Comparison of chromatographic ion-exchange resins - IV. Strong and weak cation-exchange resins and heparin resins

机译:色谱离子交换树脂的比较-IV。强阳离子交换树脂和弱阳离子交换树脂以及肝素树脂

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A comparative study was performed on heparin resins and strong and weak cation exchangers to investigate the pH dependence, efficiency, binding strength, particle size distribution, static and dynamic capacity, and scanning electron microscopy pictures of chromatographic resins. The resins tested include: Heparin Sepharose FF, SP Sepharose FF, CM Sepharose FF, Heparin Toyopearl 650m, SP Toyopearl 650m, CM Toyopearl 650m. Ceramic Heparin HyperD M, Ceramic S HyperD 20, and Ceramic CM HyperD F. Testing was performed with four different proteins: anti-FVII Mab (I-G), aprotinin, lysozyme, and myoglobin. Dependence of pH on retention was generally very low for proteins with high isoelectric point (pI), though some decrease of retention with increasing pH was observed for CM Ceramic HyperD F and S Ceramic HyperD 20. Binding of anti-FVII Mab with pI < 7.5 was observed on several resins at pH 7.5. Efficiency results show the expected trend of increasing dependence of the plate height with increasing flow rate of Ceramic HyperD resins followed by Toyopearl 650m resins and the highest flow dependence of the Sepharose FF resins corresponding to their pressure resistance. Determination of particle size distribution by two independent methods, coulter counting and SEM, was in good agreement. Binding strength of cation-exchange resins as a function of ionic strength varies depending on the protein. Binding and elution at high salt concentration may be performed with Ceramic HyperD resins, while binding and elution at low salt concentration may be performed with model proteins on heparin resins. Employing proteins with specific affinity for heparin, a much stronger binding is observed, however, some cation exchangers may still be good substitutions for heparin resins. Dynamic capacity at 10% breakthrough compared to static capacity measurements and dynamic capacity displays that approximately 40-80% of the total available capacity is utilized during chromatographic operation depending on flow rate. A general good agreement was obtained between results of this study and data obtained by others. Results of this study may be used in the selection of resins for testing during protein purification process development. (c) 2004 Elsevier B.V. All rights reserved.
机译:对肝素树脂以及强阳离子交换剂和弱阳离子交换剂进行了比较研究,以研究pH依赖性,效率,结合强度,粒径分布,静态和动态容量以及色谱树脂的扫描电子显微镜照片。测试的树脂包括:肝素琼脂糖凝胶FF,SP琼脂糖凝胶FF,CM琼脂糖凝胶FF,肝素Toyopearl 650m,SP Toyopearl 650m,CM Toyopearl 650m。陶瓷肝素HyperD M,陶瓷S HyperD 20和陶瓷CM HyperDF。测试使用四种不同的蛋白质进行:抗FVII单抗(I-G),抑肽酶,溶菌酶和肌红蛋白。对于高等电点(pI)的蛋白质,pH值对保留的依赖性通常很低,尽管CM Ceramic HyperD F和S Ceramic HyperD 20观察到保留率随pH的升高而有所降低。抗FVII Mab与pI <7.5的结合在pH 7.5的几种树脂上观察到了这种现象。效率结果表明,随着HyperHyperD 650m树脂和随后的Toyopearl 650m树脂流速的增加,板高度的依赖性会随之增加,并且Sepharose FF树脂的最高流速依赖性与耐压性相对应。用库尔特计数法和扫描电镜这两种独立的方法测定粒度分布是一致的。阳离子交换树脂的结合强度作为离子强度的函数取决于蛋白质。可以使用Ceramic HyperD树脂在高盐浓度下进行结合和洗脱,而可以使用肝素树脂上的模型蛋白在低盐浓度下进行结合和洗脱。使用对肝素具有特定亲和力的蛋白质,可以观察到更强的结合,但是,某些阳离子交换剂仍可能是肝素树脂的良好替代品。与静态容量测量相比,动态容量突破10%,动态容量显示,根据流速,色谱操作期间将利用总可用容量的40%至80%。在这项研究的结果与其他人获得的数据之间获得了总体良好的共识。这项研究的结果可用于蛋白质纯化过程开发过程中树脂的选择测试。 (c)2004 Elsevier B.V.保留所有权利。

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