Lot-to-lot stability of antibody reagents for flow cytometry

单克隆抗体 流式细胞术 抗体 化学 荧光 分子生物学 结合 单克隆 色谱法 生物 免疫学 数学 物理 量子力学 数学分析
作者
Sebastian Böttcher,Vincent H. J. van der Velden,Neus Villamor,Matthias Ritgen,Juan Flores‐Montero,Hugo Murua Escobar,Tomáš Kalina,Monika Brüggemann,Georgiana Grigore,M Martín-Ayuso,Quentin Lécrevisse,Carlos E. Pedreira,Jacques J. M. van Dongen,Alberto Órfão
出处
期刊:Journal of Immunological Methods [Elsevier BV]
卷期号:475: 112294-112294 被引量:28
标识
DOI:10.1016/j.jim.2017.03.018
摘要

The fluorescence detected using fluorochrome-labelled monoclonal antibodies depends not only on the abundance of the target antigen, but amongst many other factors also on the effective fluorochrome-to-antibody ratio. The diagnostic approach of the EuroFlow consortium relies on reproducible fluorescence intensities over time. A capture bead system for mouse immunoglobulin light chains was utilized to compare the mean fluorescence intensity of 1323 consecutive antibody lots to the currently used lot of the same monoclonal antibody. In total, 157 different monoclonal antibodies were assessed over seven years. Median relative difference between consecutive lots was 3.8% (range: 0.01% to 164.7%, interquartile range: 1.3% to 10.1%). The relative difference exceeded 20% in 8.8% of all comparisons. FITC labelled monoclonal antibodies (median relative difference: 2.1%) showed a significantly smaller variation between lots than antibodies conjugated to PE (3.5%), PECy7 (3.9%), PerCPCy5.5 (5.8%), APC (5.8%), APCH7 (7.4%), and APCC750 (14.5%). Reagents labelled with Pacific Blue (1.4%), Pacific Orange (2.4%), HV450 (0.7%), and HV500 (1.7%) demonstrated more consistent results compared to conjugates of BV421 (4.1%) and BV510 (16.2%). Additionally, significant differences in lot-to-lot fluorescence stability amongst antibodies labelled with the same fluorochrome were observed between manufacturers. These observations might guide future quality recommendations for the production and application of fluorescence-labelled monoclonal antibodies in multicolor flow cytometry.
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