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Hollow-fiber flow field-flow fractionation with multi-angle laser scattering detection for aggregation studies of therapeutic proteins

机译:中空纤维流场流分级分离与多角度激光散射检测用于治疗性蛋白质的聚集研究

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The rapid development of protein-based pharmaceuticals highlights the need for robust analytical methods to ensure their quality and stability. Among proteins used in pharmaceutical applications, an important and ever increasing role is represented by monoclonal antibodies and large proteins, which are often modified to enhance their activity or stability when used as drugs. The bioactivity and the stability of those proteins are closely related to the maintenance of their complex structure, which however are influenced by many external factors that can cause degradation and/or aggregation. The presence of aggregates in these drugs could reduce their bioactivity and bioavailability, and induce immunogenicity. The choice of the proper analytical method for the analysis of aggregates is fundamental to understand their (size) dimensional range, their amount, and if they are present in the sample as generated by an aggregation or as an artifact due to the method itself. Size exclusion chromatography is one of the most important techniques for the quality control of pharmaceutical proteins; however, its application is limited to relatively low molar mass aggregates. Among the techniques for the size characterization of proteins, field-flow fractionation (FFF) represents a competitive choice because of its soft mechanism due to the absence of a stationary phase and application in a broader size range, from nanometer- to micrometer-sized analytes. In this paper, the microcolumn variant of FFF, the hollow-fiber flow FFF, was online coupled with multi-angle light scattering, and a method for the characterization of aggregates with high reproducibility and low limit of detection was demonstrated employing an avidin derivate as sample model.
机译:蛋白质基药物的快速发展突显了对可靠分析方法的需求,以确保其质量和稳定性。在药物应用中使用的蛋白质中,单克隆抗体和大蛋白质代表着越来越重要的作用,单克隆抗体和大蛋白质在用作药物时经常经过修饰以增强其活性或稳定性。这些蛋白质的生物活性和稳定性与它们复杂结构的维持密切相关,然而,这些复杂性受许多可能导致降解和/或聚集的外部因素的影响。这些药物中聚集体的存在会降低其生物活性和生物利用度,并诱导免疫原性。选择合适的分析方法来分析聚集体是了解其(尺寸)维数范围,数量以及是否由于聚集而产生的样品或由于方法本身而导致的假象的基础。尺寸排阻色谱法是用于药物蛋白质量控制的最重要技术之一。但是,其应用仅限于相对较低的摩尔质量聚集体。在蛋白质大小表征技术中,场流分馏(FFF)代表了一种竞争选择,因为它由于不存在固定相而具有柔软的机理,并且适用于从纳米级到微米级分析物的更广泛尺寸范围。本文将FFF的微柱变体(中空纤维流FFF)与多角度光散射在线耦合,并证明了使用亲和素衍生物作为特征的高重现性和低检测限的聚集体表征方法样本模型。

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