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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Preparation, characterization, and process performance of composite fibrous adsorbents as cation exchangers for high throughput and high capacity bioseparations
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Preparation, characterization, and process performance of composite fibrous adsorbents as cation exchangers for high throughput and high capacity bioseparations

机译:复合纤维吸附剂作为阳离子交换剂的制备,表征和工艺性能,可实现高通量和高容量生物分离

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Fibrous materials are proposed as novel chromatographic supports depicting high throughput and high product capacity. In this work, a composite fiber harboring strong cation-exchange moieties has been investigated. Such materials were characterized by a plethora of physical methods including degree of swelling (DS), scanning electron microscope (SEM), confocal laser scanning microscopy (CLSM), and Fourier transform infrared spectroscopy-attenuated total reflection (FTIR-ATR). The composite showed a high degree of grafting (~30%) and exhibited a high swelling ratio (~300%). Moreover, homogenous grafting and the development of an internal (functional) hydrogel were observed. The fibrous adsorbent was packed utilizing a designed " double roll" supported-structure and subsequently tested for packing efficiency and chromatography performance. The mentioned system showed similar packing efficiency of height equivalent to a theoretical plate (HETP) value and higher permeability coefficient (0.92×10 ~(-7)cm ~2) than commercial resins. Experimentally determined Peclet number (Pe) values were within the range 60-90, suggesting a close-to-plug-flow condition. Total ionic capacity of the fibrous adsorbent was determined by the transition pH method. A capacity of 6.5mequiv./g was obtained. Moreover, a high dynamic binding capacity for lysozyme was found to be 283mg/g. On the other hand, a bed of randomly packed fiber also demonstrated high-resolution ability when a mixture of model protein was utilized to that end. Resolution was maintained at high flow rates (up to 900cm/h) and utilizing shorter gradient development routines. Direct sequestration of a model protein (lysozyme) was also possible from an artificial mixture containing 1.5% yeast homogenate. Summarizing, the composite fibrous adsorbents exhibited superior performance during early protein capture and intermediate-resolution applications.
机译:提出了纤维材料作为描绘高通量和高产物容量的新型色谱载体。在这项工作中,已经研究了具有强阳离子交换部分的复合纤维。此类材料的特征在于多种物理方法,包括溶胀度(DS),扫描电子显微镜(SEM),共焦激光扫描显微镜(CLSM)和傅立叶变换红外光谱衰减全反射(FTIR-ATR)。该复合材料显示出较高的接枝度(〜30%),并具有较高的溶胀率(〜300%)。此外,观察到同质接枝和内部(功能)水凝胶的发展。利用设计的“双辊”支撑结构填充纤维状吸附剂,然后测试填充效率和色谱性能。所提到的体系显示出与商业树脂相比,高度相当于理论塔板(HETP)值的填充效率和更高的渗透系数(0.92×10〜(-7)cm〜2)。实验确定的Peclet值(Pe)值在60-90的范围内,表明接近塞流状态。纤维状吸附剂的总离子容量通过过渡pH法测定。获得的容量为6.5mequiv./g。此外,发现溶菌酶的高动态结合能力为283mg / g。另一方面,当为此目的使用模型蛋白的混合物时,随机堆积的纤维床也显示出高分辨率的能力。在高流速(高达900cm / h)下并使用较短的梯度显影程序可保持分离度。也可以从含有1.5%酵母匀浆的人工混合物中直接隔离模型蛋白(溶菌酶)。综上所述,复合纤维吸附剂在早期蛋白质捕获和中等分离度应用中表现出优异的性能。

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