Li Ning, Kessler Kendall, Bass Laura, Zeng David
Department of Pharmaceutical Research and Development, Pfizer Global Biologics, St. Louis Laboratory, Pfizer Inc., St. Louis, MO 63017, USA.
J Pharm Biomed Anal. 2007 Feb 19;43(3):963-72. doi: 10.1016/j.jpba.2006.09.024. Epub 2006 Oct 12.
The iCE280 Analyzer (iCE280) was evaluated for its potential application as a high-throughput tool to determine pI and separate charge related species using glycosylated, non-glycosylated and pegylated protein therapeutics as models. Resolution was achieved for glycosylated and non-glycosylated molecules, but remained a challenge for pegylated proteins. The sources of charge variants were determined to be the presence of C-terminal lysine residues, sialic acid content, and deamidation. Limited assay performance evaluation demonstrated that the method was linear in the concentration range of 2-333 microg/ml of IgG with linear regression coefficients of 0.984, 0.998, and 0.990 for acidic, main and basic species, respectively. Limit of detection and limit of quantitation were determined to be 3 and 11 microg/ml. The R.S.D. for intra- and inter-day precision as well as reproducibility was determined to be 0.2% or less for all pI values and 1.4% or less for acidic and main peak area distribution; the R.S.D. for basic peak area distribution was 5.7% or less. Robustness testing was performed by deliberately deviating +/-50% of pharmalyte concentration away from the desired condition. This deviation revealed a pI shift of only 0.06 units and resulted in no significant impact on area percent distribution. Utilization of iCE280 Analyzer eliminated the mobilization step associated with traditional capillary isoelectric focusing analysis and increased analytical throughput at least 2-fold.
对iCE280分析仪(iCE280)进行了评估,以确定其作为高通量工具的潜在应用,该工具使用糖基化、非糖基化和聚乙二醇化蛋白质治疗剂作为模型来测定等电点(pI)并分离电荷相关物种。糖基化和非糖基化分子实现了分离,但聚乙二醇化蛋白质的分离仍然是一个挑战。已确定电荷变体的来源为C端赖氨酸残基的存在、唾液酸含量和脱酰胺作用。有限的分析性能评估表明,该方法在2-333μg/ml IgG浓度范围内呈线性,酸性、主峰和碱性物种的线性回归系数分别为0.984、0.998和0.990。检测限和定量限分别确定为3和11μg/ml。所有pI值的日内和日间精密度以及重现性的相对标准偏差(R.S.D.)确定为0.2%或更低,酸性和主峰面积分布的R.S.D.为1.4%或更低;碱性峰面积分布的R.S.D.为5.7%或更低。通过故意将两性电解质浓度偏离所需条件±50%进行稳健性测试。这种偏差显示pI仅偏移0.06个单位,并且对面积百分比分布没有显著影响。使用iCE280分析仪消除了与传统毛细管等电聚焦分析相关的迁移步骤,并将分析通量提高了至少2倍。