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首页> 外文期刊>Biotechnology and Bioengineering >Impact of Physicochemical Parameters on In Vitro Assembly and Disassembly Kinetics of Recombinant Triple-Layered Rotavirus-Like Particles
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Impact of Physicochemical Parameters on In Vitro Assembly and Disassembly Kinetics of Recombinant Triple-Layered Rotavirus-Like Particles

机译:理化参数对重组三层轮状病毒样颗粒体外组装和拆卸动力学的影响

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摘要

Virus-like particles constitute potentially relevant vaccine candidates. Nevertheless, their behavior in vitro and assembly process needs to be understood in order to improve their yield and quality. In this study we aimed at addressing these issues and for that purpose triple- and double-layered rotavirus-like particles (TLP 2/6/7 and DLP 2/6, respectively) size and zeta potential were measured using dynamic light scattering at different physicochemical conditions, namely pH, ionic strength,. and temperature. Both TLP and DLP were stable within a PH range of 3-7 and at 5-25 degrees C. Aggregation occurred at 35-45 degrees C and their disassembly became evident at 65 degrees C. The isoelectric points of TLP and DLP were 3.0 and 3.8, respectively. In vitro kinetics of TLP disassembly was monitored. Ionic strength, temperature, and the chelating agent employed determined disassembly kinetics. Glycerol (10%) stabilized TLP by preventing its disassembly. Disassembled TLP was able to reassemble by dialysis at high calcium conditions. VP7 monomers were added to DLP in the presence of calcium to follow in vitro TLP assembly kinetics; its assembly rate being mostly affected by PH. Finally, DLP and TLP were found to coexist under certain conditions as determined from all reaction products analyzed by capillary electrophoresis. Overall, these results contribute to the design of new strategies for the improvement of TLP yield and quality by reducing the VP7 detachment from TLP.
机译:病毒样颗粒构成潜在的相关候选疫苗。然而,为了提高产量和质量,需要了解它们在体外和组装过程中的行为。在这项研究中,我们旨在解决这些问题,并为此目的使用不同位置的动态光散射测量了三层和双层轮状病毒样颗粒(分别为TLP 2/6/7和DLP 2/6)的大小和Zeta电位。物理化学条件,即pH,离子强度。和温度。 TLP和DLP在3-7和5-25摄氏度的PH范围内都稳定。在35-45摄氏度发生聚集,在65摄氏度时它们的分解变得明显。TLP和DLP的等电点为3.0和3.8分别。监测了TLP拆卸的体外动力学。使用的离子强度,温度和螯合剂决定了拆解动力学。甘油(10%)通过防止TLP分解来稳定TLP。拆解的TLP能够在高钙条件下通过透析进行重组。在钙存在下,将VP7单体添加到DLP中以遵循体外TLP组装动力学。它的组装率主要受PH影响。最后,发现DLP和TLP在某些条件下共存,这是通过毛细管电泳分析的所有反应产物确定的。总体而言,这些结果有助于减少VP7与TLP的分离,从而提高TLP产量和质量的新策略的设计。

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