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Charge Heterogeneity of Monoclonal Antibodies by Multiplexed Imaged Capillary Isoelectric Focusing Immunoassay with Chemiluminescence Detection

机译:化学发光检测的多重成像毛细管等电聚焦免疫测定法分析单克隆抗体的电荷异质性

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Characterization of charge heterogeneity of recombinant monoclonal antibodies (mAbs) requires high throughput analytical methods to support clone selection and formulation screens. We applied the NanoPro technology to rapidly measure relative charge distribution of mAbs in early stage process development. The NanoPro is a multiplexed capillary-based isoelectric immunoassay with whole-column imaging detection. This assay offers specificity, speed and sensitivity advantages over conventional capillary isoelectric focusing (CIEF) platforms. After CIEF, charge variants are photochemically immobilized to the wall of a short coated capillary. Once immobilized, mAbs are probed using a secondary anti-IgG conjugated with horseradish peroxidase. After flushing away excess reagents, secondary antibodies bound to their targets are then detected by chemiluminescence upon incubation with peroxidase reactive substrates. Charge heterogeneity as determined by chemiluminescence was similar to that measured by conventional CIEF technology with absorbance detection for purified mAbs and contaminated mAbs derived directly from host cellular extract. Upon method optimization, the automated CIEF immunoassay was applied to several mAbs of varying isoelectric points, demonstrating the suitability of NanoPro as a rugged high-throughput product characterization tool. Furthermore, qualification of detection sensitivity, precision, and dynamic range are reported with discussion of its advantages as an alternative approach to rapidly characterize charge variants during process development of mAbs.
机译:重组单克隆抗体(mAb)电荷异质性的表征需要高通量分析方法来支持克隆选择和制剂筛选。我们将NanoPro技术用于在早期工艺开发中快速测量mAb的相对电荷分布。 NanoPro是基于多毛细管的等电免疫分析,具有全柱成像检测功能。与传统的毛细管等电聚焦(CIEF)平台相比,该测定法具有特异性,速度和灵敏度方面的优势。 CIEF之后,将电荷变体光化学固定在短涂层毛细管的壁上。固定后,可使用与辣根过氧化物酶偶联的第二抗IgG探测mAb。冲洗掉多余的试剂后,与过氧化物酶反应性底物孵育后,通过化学发光检测结合至其靶标的二抗。通过化学发光确定的电荷异质性与通过常规CIEF技术测量的电荷异质性相似,对纯净mAb和直接源自宿主细胞提取物的受污染mAb进行吸光度检测。方法优化后,将自动CIEF免疫测定法应用于各种等电点不同的mAb,证明NanoPro作为坚固耐用的高通量产品表征工具的适用性。此外,报告了检测灵敏度,精度和动态范围的鉴定,并讨论了其优势,以此作为在单克隆抗体工艺开发过程中快速表征电荷变异体的替代方法。

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