Department of Chemical Engineering, University of Delaware, Newark, Delaware 19716, USA.
J Pharm Sci. 2009 Nov;98(11):3997-4016. doi: 10.1002/jps.21726.
Size exclusion chromatography with an inline multi-angle light scattering detector (SEC-MALS) was assessed as a means to characterize and monitor the formation of soluble, high-molecular-weight (HMW) protein aggregates so as to better quantify and model nonnative aggregation kinetics. Assay configuration and robustness were tested with respect to sample preparation, column type, and assay variability. Independent comparison of SEC-MALS with batch light scattering analysis indicates good agreement between the two methods. Weight-average molecular weight (M(w)), radius of gyration (R(g)), apparent polydispersity, and mass fraction monomer (m) together are shown to provide qualitative and quantitative experimental signatures to distinguish high-MW aggregate growth via chain polymerization versus that via aggregate-aggregate condensation. Mechanistic treatment of aggregation kinetics monitored by SEC-MALS is illustrated by data regression using a recently developed Lumry-Eyring Nucleated Polymerization model that explicitly accounts for aggregate nucleation and competing growth via chain- and condensation-polymerization. The combination of time-dependent M(w) and m data are shown to provide a convenient and robust means to separate and quantify characteristic time scales or rate coefficients for concurrent stages of irreversible aggregation. In addition, the scaling of R(g) with M(w) for HMW aggregates provides useful insights into aggregate morphology and mechanisms of aggregate growth.
采用在线多角度光散射检测器的体积排阻色谱法(SEC-MALS)被评估为一种用于表征和监测可溶性高分子量(HMW)蛋白质聚集体形成的方法,以便更好地定量和模拟非天然聚集动力学。通过样品制备、柱类型和分析变异性来测试分析配置和稳健性。SEC-MALS 与批量光散射分析的独立比较表明,两种方法之间具有良好的一致性。重均分子量(Mw)、回转半径(Rg)、表观多分散性和单体质量分数(m)一起提供定性和定量的实验特征,以区分通过链聚合的 HMW 聚集体生长与通过聚集体-聚集体缩合的生长。通过使用最近开发的 Lumry-Eyring 成核聚合模型对 SEC-MALS 监测的聚集动力学进行机理处理,该模型明确考虑了聚集体成核以及通过链和缩合聚合进行的竞争生长。时变 Mw 和 m 数据的组合被证明是一种方便且稳健的方法,可以分离和量化不可逆聚集的并发阶段的特征时间尺度或速率系数。此外,HMW 聚集体的 Rg 与 Mw 的标度为聚集体形态和聚集体生长机制提供了有用的见解。