首页> 外文期刊>Journal of Colloid and Interface Science >Manufacturing of agarose-based chromatographic adsorbents - Effect of ionic strength and cooling conditions on particle structure and mechanical strength
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Manufacturing of agarose-based chromatographic adsorbents - Effect of ionic strength and cooling conditions on particle structure and mechanical strength

机译:琼脂糖基色谱吸附剂的制造-离子强度和冷却条件对颗粒结构和机械强度的影响

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摘要

The effect of ionic strength of agarose solution and quenching temperature of the emulsion on the structure and mechanical strength of agarose-based chromatographic adsorbents was investigated. Solutions of agarose containing different amounts of NaCl were emulsified at elevated temperature in mineral oil using a high-shear mixer. The hot emulsion was quenched at different temperatures leading to the gelation of agarose and formation of soft particles. Analysis of Atomic Force Microscopy (AFM) images of particle surfaces shows that pore size of particles increases with ionic strength and/or high quenching temperature. Additionally it has been found that the compressive strength of particles measured by micromanipulation also increases with ionic strength of the emulsion and/or high quenching temperature but these two parameters have no significant effect on the resulting particle size and particle size distribution. Results from both characterization methods were compared with Sepharose 4B, a commercial agarose-based adsorbent. This is the first report examining the effect of ionic strength and cooling conditions on the microstructure of micron-sized agarose beads for bioseparation.
机译:研究了琼脂糖溶液的离子强度和乳液的淬灭温度对琼脂糖基色谱吸附剂的结构和机械强度的影响。使用高剪切混合器在矿物油中在高温下将含有不同量NaCl的琼脂糖溶液乳化。将热乳液在不同温度下淬灭,导致琼脂糖凝胶化并形成软颗粒。粒子表面的原子力显微镜(AFM)图像分析表明,粒子的孔径随离子强度和/或高淬火温度而增加。另外,已经发现,通过显微操作测量的颗粒的抗压强度也随着乳液的离子强度和/或高淬灭温度而增加,但是这两个参数对所得的粒度和粒度分布没有显着影响。将两种表征方法的结果与商业琼脂糖基吸附剂Sepharose 4B进行了比较。这是第一份检查离子强度和冷却条件对用于生物分离的微米级琼脂糖珠微结构影响的报告。

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