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基于无标记阵列的生物传感器上的高通量表位分组分析能够产生精确的表位区分,这有助于选择具有功能活性的单克隆抗体。

High-throughput epitope binning assays on label-free array-based biosensors can yield exquisite epitope discrimination that facilitates the selection of monoclonal antibodies with functional activity.

作者信息

Abdiche Yasmina Noubia, Miles Adam, Eckman Josh, Foletti Davide, Van Blarcom Thomas J, Yeung Yik Andy, Pons Jaume, Rajpal Arvind

机构信息

Rinat-Pfizer Inc, South San Francisco, California, United States of America.

Wasatch Microfluidics, Salt Lake City, Utah, United States of America.

出版信息

PLoS One. 2014 Mar 20;9(3):e92451. doi: 10.1371/journal.pone.0092451. eCollection 2014.

Abstract

Here, we demonstrate how array-based label-free biosensors can be applied to the multiplexed interaction analysis of large panels of analyte/ligand pairs, such as the epitope binning of monoclonal antibodies (mAbs). In this application, the larger the number of mAbs that are analyzed for cross-blocking in a pairwise and combinatorial manner against their specific antigen, the higher the probability of discriminating their epitopes. Since cross-blocking of two mAbs is necessary but not sufficient for them to bind an identical epitope, high-resolution epitope binning analysis determined by high-throughput experiments can enable the identification of mAbs with similar but unique epitopes. We demonstrate that a mAb's epitope and functional activity are correlated, thereby strengthening the relevance of epitope binning data to the discovery of therapeutic mAbs. We evaluated two state-of-the-art label-free biosensors that enable the parallel analysis of 96 unique analyte/ligand interactions and nearly ten thousand total interactions per unattended run. The IBIS-MX96 is a microarray-based surface plasmon resonance imager (SPRi) integrated with continuous flow microspotting technology whereas the Octet-HTX is equipped with disposable fiber optic sensors that use biolayer interferometry (BLI) detection. We compared their throughput, versatility, ease of sample preparation, and sample consumption in the context of epitope binning assays. We conclude that the main advantages of the SPRi technology are its exceptionally low sample consumption, facile sample preparation, and unparalleled unattended throughput. In contrast, the BLI technology is highly flexible because it allows for the simultaneous interaction analysis of 96 independent analyte/ligand pairs, ad hoc sensor replacement and on-line reloading of an analyte- or ligand-array. Thus, the complementary use of these two platforms can expedite applications that are relevant to the discovery of therapeutic mAbs, depending upon the sample availability, and the number and diversity of the interactions being studied.

摘要

在此,我们展示了基于阵列的无标记生物传感器如何应用于大量分析物/配体对的多重相互作用分析,例如单克隆抗体(mAb)的表位分组。在该应用中,以成对和组合方式针对其特异性抗原分析用于交叉阻断的mAb数量越多,区分其表位的可能性就越高。由于两种mAb的交叉阻断对于它们结合相同表位是必要但不充分的,通过高通量实验确定的高分辨率表位分组分析能够鉴定具有相似但独特表位的mAb。我们证明mAb的表位与功能活性相关,从而加强了表位分组数据与治疗性mAb发现的相关性。我们评估了两种最先进的无标记生物传感器,它们能够在每次无人值守运行中对96种独特的分析物/配体相互作用进行并行分析,总共可进行近一万次相互作用分析。IBIS-MX96是一种基于微阵列的表面等离子体共振成像仪(SPRi),集成了连续流动微点样技术,而Octet-HTX配备了使用生物层干涉术(BLI)检测的一次性光纤传感器。我们在表位分组测定的背景下比较了它们的通量、通用性、样品制备的简便性和样品消耗。我们得出结论,SPRi技术的主要优点是其极低的样品消耗率、简便的样品制备以及无与伦比的无人值守通量。相比之下,BLI技术具有高度灵活性,因为它允许同时对96个独立的分析物/配体对进行相互作用分析、临时更换传感器以及在线重新加载分析物或配体阵列。因此,根据样品可用性以及所研究相互作用的数量和多样性,这两种平台的互补使用可以加快与治疗性mAb发现相关的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e5b/3961344/9b938819991b/pone.0092451.g001.jpg

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