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首页> 外文期刊>International Journal of Pharmaceutics >Analysis of phase behavior and morphology during freeze-thaw applications of lysozyme
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Analysis of phase behavior and morphology during freeze-thaw applications of lysozyme

机译:溶菌酶冻融应用中的相行为和形态分析

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摘要

Knowledge of protein behavior/stability during freeze/thaw (FT) operations is essential for storage and production processes in the biopharmaceutical industry. FT stress involves freeze concentration, cold denaturation, and ice crystals formation which can result in protein aggregation. Therefore, it is important to understand the ongoing FT processes, and the influence of different solution parameters. In order to evaluate the ongoing processes during FT (up to - 80 degrees C), phase diagrams with lysozyme from chicken egg white and sodium chloride were generated. Thereby, three different buffer systems with varying buffer substances and ionic strengths at pH 3 and pH 5 were investigated. As indicators for the ongoing FT processes, the phase behavior, crystal morphology and solubility were used. An increased number of cycles led, for example, to the formation of micro crystals, sea urchin crystals - indicating LLPS and/or high supersaturation - and precipitate. Furthermore, the buffer substances had a more distinct influence on the phase behavior and morphology compared to the ionic strength differences. The solubility line itself was only shifted when distinct changes in the phase behavior could be observed. In summary, a tool was developed for using the phase behavior and especially the crystal morphology as indicator for underlying processes during FT operations.
机译:冻融/解冻期间蛋白质行为/稳定性的知识对于生物制药行业中的储存和生产过程至关重要。 Ft应激涉及冻浓度,冷变性和冰晶形成,这可能导致蛋白质聚集。因此,了解持续的FT过程非常重要,以及不同解决方案参数的影响。为了评估FT(高达-80℃)期间的持续过程,产生来自鸡蛋白和氯化钠的溶菌酶的相图。由此,研究了具有不同缓冲物质和pH 3和pH5的离子强度的三种不同的缓冲系统。作为正在进行的FT方法的指标,使用相位行为,晶体形态和溶解度。例如,循环循环的数量增加,以形成微晶,海胆晶体 - 表示LLP和/或高过饱和 - 并沉淀。此外,与离子强度差异相比,缓冲物质对相行为和形态具有更明显的影响。当可以观察到相位行为的不同变化时,溶解度线本身仅移位。总之,开发了一种工具,用于使用相位行为,特别是晶体形态作为FT操作期间底层过程的指示。

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