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IgG2 抗体聚集体的聚集和 pH-温度相行为。

Aggregation and pH-temperature phase behavior for aggregates of an IgG2 antibody.

机构信息

Department of Chemical Engineering, University of Delaware, Newark, Delaware 19716, USA.

出版信息

J Pharm Sci. 2012 May;101(5):1678-87. doi: 10.1002/jps.23056. Epub 2012 Jan 13.

Abstract

Monomer unfolding and thermally accelerated aggregation kinetics to produce soluble oligomers or insoluble macroscopic aggregates were characterized as a function of pH for an IgG2 antibody using differential scanning calorimetry (DSC) and size-exclusion chromatography (SEC). Aggregate size was quantified via laser light scattering, and aggregate solubility via turbidity and visual inspection. Interestingly, nonnative oligomers were soluble at pH 5.5 above approximately 15°C, but converted reversibly to visible/insoluble particles at lower temperatures. Lower pH values yielded only soluble aggregates, whereas higher pH resulted in insoluble aggregates, regardless of the solution temperature. Unlike the growing body of literature that supports the three-endotherm model of IgG1 unfolding in DSC, the results here also illustrate limitations of that model for other monoclonal antibodies. Comparison of DSC with monomer loss (via SEC) from samples during thermal scanning indicates that the least conformationally stable domain is not the most aggregation prone, and that a number of the domains remain intact within the constituent monomers of the resulting aggregates. This highlights continued challenges with predicting a priori which domain(s) or thermal transition(s) is(are) most relevant for product stability with respect to aggregation.

摘要

使用差示扫描量热法(DSC)和尺寸排阻色谱法(SEC),研究了 pH 值对 IgG2 抗体单体展开和热加速聚集动力学的影响,以产生可溶性寡聚物或不溶性宏观聚集物。通过激光散射定量测定了聚集物的大小,并通过浊度和目视检查测定了聚集物的溶解度。有趣的是,在 pH 5.5 以上约 15°C 时,非天然寡聚物是可溶的,但在较低温度下可可逆地转化为可见/不溶性颗粒。较低的 pH 值只产生可溶的聚集物,而较高的 pH 值则导致不可溶的聚集物,而不论溶液温度如何。与支持 IgG1 在 DSC 中三升温模型的大量文献不同,这里的结果也说明了该模型对于其他单克隆抗体的局限性。比较 DSC 与热扫描过程中样品中单体损失(通过 SEC)表明,最不稳定的结构域不一定最容易聚集,并且在形成的聚集物的组成单体中,有许多结构域保持完整。这突出了在预测哪些结构域或热转变与聚集物的产品稳定性最相关方面仍然存在挑战。

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