Analytical Sciences Department, Amgen Inc., 4000 Nelson Road, Longmont, CO 80503, USA.
Methods. 2011 May;54(1):83-91. doi: 10.1016/j.ymeth.2010.12.030. Epub 2010 Dec 25.
The required performance of an analytical method depends on the purpose for which it will be used. As a methodology matures, it may find new application, and the performance demands placed on the method can increase. Sedimentation velocity analytical ultracentrifugation (SV-AUC) has a long and distinguished history with important contributions to molecular biology. Now the technique is transitioning into industrial settings, and among them, SV-AUC is now used to quantify the amount of protein aggregation in biopharmaceutical protein products, often at levels less than 1% of the total protein mass. In this paper, we review recent advances to SV methodology which have been shown to improve quantitation of protein aggregation. Then we discuss the performance of the SV method in its current state, with emphasis on the precision and quantitation limit of the method, in the context of existing industrial guidance on analytical method performance targets for quantitative methods.
分析方法的所需性能取决于其使用目的。随着方法学的成熟,它可能会找到新的应用,并且对方法的性能要求可能会增加。沉降速度分析超速离心(SV-AUC)具有悠久而卓越的历史,为分子生物学做出了重要贡献。现在,该技术正在向工业领域转移,在这些领域中,SV-AUC 现在用于定量生物制药蛋白质产品中的蛋白质聚集量,通常在总蛋白质质量的 1%以下。本文综述了 SV 方法学的最新进展,这些进展已被证明可提高蛋白质聚集定量的准确性。然后,我们将讨论 SV 方法在当前状态下的性能,重点是方法的精密度和定量限,以及现有的关于定量方法分析方法性能目标的工业指南。