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Protein Crystallization As a Process Step in a Novel Meso Oscillatory Flow Reactor: Study of Lysozyme Phase Behavior

机译:蛋白质结晶作为新型介观振荡流反应器中的一个工艺步骤:溶菌酶相行为的研究

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摘要

In the present work, it is reported for the first time the study of the applicability of a novel meso oscillatory flow reactor (meso-OFR) for protein crystallization as a process step. Crystallization assays carried out in the designed device enabled to derive a two-dimensional lysozyme phase diagram (lysozyme concentration against sodium chloride concentration). Results evidence the formation of several types of crystals (different size and shape), with a strong influence of salt concentration on crystal shape. Results also show that lysozyme remains active at the end of the experiments. Furthermore, it was possible to verify the reduction of the metastability zone when compared to lysozyme crystallization conducted under quiescent conditions. Induction times were also measured by online monitoring of the turbidity of the crystallization solution, obtained values being between 41 and 900 min. Beyond providing improved understanding of protein phase behavior under oscillatory flow mixing, the results are very promising regarding the feasibility of the designed methodology for protein crystallization as a process step.
机译:在目前的工作中,首次报道了一种新型的介观振荡流反应器(meso-OFR)对蛋白质结晶作为工艺步骤的适用性的研究。在设计的设备中进行的结晶化验能够得出二维溶菌酶相图(溶菌酶浓度相对于氯化钠浓度)。结果证明形成了几种类型的晶体(不同的大小和形状),其中盐浓度对晶体形状有很大的影响。结果还表明,溶菌酶在实验结束时仍保持活性。此外,与在静止条件下进行的溶菌酶结晶相比,可以验证亚稳区的减少。还通过在线监测结晶溶液的浊度来测量诱导时间,获得的值在41至900分钟之间。除了提供对振荡流混合下蛋白质相行为的更好理解之外,关于将蛋白质结晶设计为方法步骤的方法的可行性,结果是非常有希望的。

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