Efficient discovery of antibody binding pairs using a photobleaching strategy for bead encoding†

IF 6.1 2区 工程技术 Q1 BIOCHEMICAL RESEARCH METHODS
Lab on a Chip Pub Date : 2024-07-24 DOI:10.1039/D4LC00382A
Shira Roth, Tom Ferrante and David R. Walt
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引用次数: 0

Abstract

Dye-encoded bead-based assays are widely used for diagnostics. Multiple bead populations are required for multiplexing and can be produced using different dye colors, labeling levels, or combinations of dye ratios. Ready-to-use multiplex bead populations restrict users to specific targets, are costly, or require specialized instrumentation. In-house methods produce few bead plexes or require many fine-tuning steps. To expand bead encoding strategies, we present a simple, safe, and cost-effective bench-top system for generating bead populations using photobleaching. By photobleaching commercially available dye-encoded magnetic beads for different durations, we produce three times as many differentiable bead populations on flow cytometry from a single dye color. Our photobleaching system uses a high-power LED module connected to a light concentrator and a heat sink. The beads are photobleached in solution homogeneously by constant mixing. We demonstrate this photobleaching method can be utilized for cross-testing antibodies, which is the first step in developing immunoassays. The assay uses multiple photobleached encoded beads conjugated with capture antibodies to test many binding pairs simultaneously. To further expand the number of antibodies that can be tested at once, several antibodies were conjugated to the same bead, forming a pooled assay. Our assay predicts the performance of antibody pairs used in ultrasensitive Simoa assays, narrowing the number of cross-tested pairs that need to be tested by at least two-thirds and, therefore, providing a rapid alternative for an initial antibody pair screening. The photobleaching system can be utilized for other applications, such as multiplexing, and for photobleaching other particles in solution.

Abstract Image

利用珠子编码的光漂白策略高效发现抗体结合对
基于染料编码微珠的检测方法被广泛用于诊断。多重检测需要多个微珠群,可以使用不同的染料颜色、标记水平或染料比例组合进行生产。即用型多重微珠群限制了用户对特定目标的检测,成本较高,或需要专门的仪器。内部方法只能产生很少的微珠复合物,或需要许多微调步骤。为了扩展微珠编码策略,我们提出了一种简单、安全、经济高效的台式系统,利用光漂白技术生成微珠群。通过对市售的染料编码磁珠进行不同持续时间的光漂白,我们可以在流式细胞仪上用单一染料颜色产生三倍数量的可区分磁珠群。我们的光漂白系统使用了一个连接到聚光器和散热器的高功率 LED 模块。通过不断搅拌,珠子在溶液中均匀地发生光漂白。我们展示了这种光漂白方法可用于交叉测试抗体,这是开发免疫测定的第一步。该检测方法使用多个与捕获抗体连接的光漂白编码珠,可同时检测许多结合对。为了进一步扩大可同时测试的抗体数量,几种抗体被缀合到同一颗珠子上,形成一个集合检测。我们的检测方法可以预测超灵敏 Simoa 检测中使用的抗体配对的性能,将需要交叉检测的抗体配对数量减少至少三分之二,因此为抗体配对的初步筛选提供了一种快速的替代方法。这种光漂白系统还可用于其他应用,如复用和光漂白溶液中的其他颗粒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Lab on a Chip
Lab on a Chip 工程技术-化学综合
CiteScore
11.10
自引率
8.20%
发文量
434
审稿时长
2.6 months
期刊介绍: Lab on a Chip is the premiere journal that publishes cutting-edge research in the field of miniaturization. By their very nature, microfluidic/nanofluidic/miniaturized systems are at the intersection of disciplines, spanning fundamental research to high-end application, which is reflected by the broad readership of the journal. Lab on a Chip publishes two types of papers on original research: full-length research papers and communications. Papers should demonstrate innovations, which can come from technical advancements or applications addressing pressing needs in globally important areas. The journal also publishes Comments, Reviews, and Perspectives.
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