Pekar Allen, Sukumar Muppalla
Biopharmaceutical Research and Development, Eli Lilly and Company, Indianapolis, IN 46285, USA.
Anal Biochem. 2007 Aug 15;367(2):225-37. doi: 10.1016/j.ab.2007.04.035. Epub 2007 Apr 27.
Aggregation is a major degradation pathway that needs to be characterized and controlled during the development of protein pharmaceuticals. Analytical ultracentrifugation-sedimentation velocity (AUC-SV) is emerging as an important orthogonal tool to size exclusion chromatography to quantitate aggregates. However, the precision and accuracy of modern AUC-SV and the experimental variables that influence these two performance parameters need to be better understood and controlled. To understand the impact of experimental and data analysis variables on the precision, aggregate content in monoclonal antibody preparations was measured by AUC-SV and analyzed by the software program Sedfit. Accuracy and limit of detection were evaluated by spiking a known quantity of a sample enriched in aggregate fraction. The results suggest experimental and data analysis approaches that improve precision and accuracy of aggregate quantitation by AUC-SV. Both precision and accuracy were found to be highly dependent on the quality of the centerpieces as assessed by microscopic examination. The level of precision for quantitating aggregates was found to be approximately +/-0.3 to 0.7% over the aggregate content range of approximately 0.6 to 67%. Accuracy, as indicated by approximately 80 to 90% spiked recovery, could be achieved down to aggregate levels as low as approximately 1.5%, whereas the limits of detection and quantitation appear to be approximately 0.2 and 0.6%, respectively.
聚集体形成是蛋白质药物研发过程中需要进行表征和控制的主要降解途径。分析超速离心沉降速度法(AUC-SV)正逐渐成为一种重要的与尺寸排阻色谱互补的工具,用于定量聚集体。然而,现代AUC-SV的精密度和准确度以及影响这两个性能参数的实验变量,仍需要更好地理解和控制。为了了解实验和数据分析变量对精密度的影响,通过AUC-SV测定单克隆抗体制剂中的聚集体含量,并使用Sedfit软件程序进行分析。通过加入已知量的富含聚集体部分的样品来评估准确度和检测限。结果表明了一些实验和数据分析方法,可提高AUC-SV定量聚集体的精密度和准确度。通过显微镜检查评估发现,精密度和准确度都高度依赖于中心部件的质量。在大约0.6%至67%的聚集体含量范围内,定量聚集体的精密度水平约为±0.3%至0.7%。在低至约1.5%的聚集体水平下,可实现约80%至90%的加标回收率,这表明了准确度,而检测限和定量限分别约为0.2%和0.6%。