Ye Sally, Gambardella Janice, Zaslavskaia Lioudmila, Kim Daniel, Konovalov Andrey, Kostuk Stephanie, Samareh Afsari Hamid, Place Corina, Coble Kelly, Johnson Alison J
Drug Metabolism & Pharmacokinetics (DMPK), Boehringer Ingelheim Pharmaceuticals Inc, Ridgefield, CT, USA.
Biotherapeutics Discovery (BtD), Boehringer Ingelheim Pharmaceuticals Inc, Ridgefield, CT, USA.
Bioanalysis. 2025 Aug;17(15):941-950. doi: 10.1080/17576180.2025.2546709. Epub 2025 Sep 2.
Drug bridging immunoassays are widely employed as the standard approach for detecting anti-drug antibodies (ADAs) in the development of new biological entities. A major challenge in these assays is mitigating target interference, particularly when the soluble target exists in dimeric forms, which can result in false positive signals and compromise assay specificity.
We developed sensitive and robust ADA assays capable of overcoming target interference to detect antibodies against BI X in both cynomolgus monkey (cyno) plasma and human serum matrices. This was achieved through the implementation of simple sample treatment techniques, specifically, acidification using a panel of different acids, to disrupt dimeric target interactions and minimize the interference.
Optimization of the acid dissociation and subsequent neutralization steps significantly reduced target interference in both cyno and human matrices. These improvements were achieved without the need for additional assay development or complex depletion strategies.
Compared to previously reported methods for mitigating target interference, the acid panel treatment approach is simpler, more time-efficient, and cost-effective. This user-friendly strategy can be readily applied to eliminate soluble dimeric targets during ADA method development, particularly in cases where alternative methodologies are not feasible or applicable.
在新生物制品的研发过程中,药物桥接免疫测定法被广泛用作检测抗药物抗体(ADA)的标准方法。这些测定法中的一个主要挑战是减轻靶点干扰,尤其是当可溶性靶点以二聚体形式存在时,这可能导致假阳性信号并损害测定的特异性。
我们开发了灵敏且稳健的ADA测定法,能够克服靶点干扰,以检测食蟹猴血浆和人血清基质中针对BI X的抗体。这是通过实施简单的样品处理技术实现的,具体而言,使用一组不同的酸进行酸化,以破坏二聚体靶点相互作用并将干扰降至最低。
酸解离和随后的中和步骤的优化显著降低了食蟹猴和人基质中的靶点干扰。这些改进无需额外的测定法开发或复杂的去除策略即可实现。
与先前报道的减轻靶点干扰的方法相比,酸处理方法更简单、更省时且更具成本效益。这种用户友好的策略可在ADA方法开发过程中轻松应用于消除可溶性二聚体靶点,特别是在替代方法不可行或不适用的情况下。