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流式细胞术用抗体试剂的批间稳定性。

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

机构信息

Rostock University Medical Center, Division of Internal Medicine, Medical Clinic III, Hematology, Oncology and Palliative Medicine, Special Hematology Laboratory, Rostock, Germany; Second Department of Medicine, University Hospital of Schleswig Holstein (UKSH), Campus Kiel, Kiel, Germany.

Department of Immunology, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.

出版信息

J Immunol Methods. 2019 Dec;475:112294. doi: 10.1016/j.jim.2017.03.018. Epub 2017 Mar 30.

Abstract

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.

摘要

使用荧光标记的单克隆抗体检测到的荧光强度不仅取决于靶抗原的丰度,而且还取决于许多其他因素,包括有效荧光染料与抗体的比例。EuroFlow 联合体的诊断方法依赖于随时间推移重现的荧光强度。利用捕获珠系统检测小鼠免疫球蛋白轻链,将 1323 批连续的抗体与当前使用的同一种单克隆抗体的批次进行比较,以评估平均荧光强度。在七年的时间里,总共评估了 157 种不同的单克隆抗体。连续批次之间的中位数相对差异为 3.8%(范围:0.01%至 164.7%,四分位距:1.3%至 10.1%)。在所有比较中,有 8.8%的相对差异超过 20%。FITC 标记的单克隆抗体(中位数相对差异:2.1%)与 PE(3.5%)、PECy7(3.9%)、PerCPCy5.5(5.8%)、APC(5.8%)、APCH7(7.4%)和 APCC750(14.5%)相比,批次之间的变异较小。与 BV421(4.1%)和 BV510(16.2%)相比,Pacific Blue(1.4%)、Pacific Orange(2.4%)、HV450(0.7%)和 HV500(1.7%)标记的试剂显示出更一致的结果。此外,还观察到同一荧光染料标记的抗体之间在批间荧光稳定性方面存在显著差异,这种差异因制造商而异。这些观察结果可能为多色流式细胞术中荧光标记的单克隆抗体的生产和应用提供未来的质量建议。

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