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基于化学转变纳米传感器的连接介导免疫分析的建立。

Development of a Linker-Mediated Immunoassay Using Chemically Transitioned Nanosensors.

机构信息

Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

Holonyak Micro & Nanotechnology Lab, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

出版信息

Anal Chem. 2020 Mar 3;92(5):3627-3635. doi: 10.1021/acs.analchem.9b04518. Epub 2020 Feb 20.

Abstract

Sensitive and specific quantification of protein biomarkers is important in medical diagnostics, academic research, and pharmaceutical development. However, multiple binding steps in conventional sandwich immunoassay protocols result in high assay hands-on-time and delayed results. This is particularly relevant for medical diagnostics, where assay turn-around-time can have an immense impact on patient outcomes. To address this limitation, we report the assembly of nanosensors prepared using DNA-antibody conjugates, which combine capture and detection antibody binding steps by facilitating rapid antigen capture. Following antigen binding, detection antibodies are released using chemically induced complex rearrangement. A panel of 12 chemical additives are characterized to identify melting point depressants capable of rapidly denaturing double stranded DNA (dsDNA) linkers, and 8 compounds are demonstrated to be capable of disrupting dsDNA while maintaining the integrity of protein binding. This technique is then validated for the measurement of the heart attack indicator cardiac troponin I and is shown to successfully combine antigen binding steps while also increasing detection sensitivity 42×. Linker-mediated immunoassays are also demonstrated to provide robust quantification in human serum and are shown to be compatible with each of the most commonly used immunoassay detection modalities.

摘要

在医学诊断、学术研究和药物开发中,对蛋白质生物标志物进行敏感和特异地定量分析非常重要。然而,传统的三明治免疫分析方案中的多个结合步骤导致分析时间长,结果延迟。这在医学诊断中尤其相关,因为分析周转时间对患者的结果有重大影响。为了解决这一限制,我们报告了使用 DNA-抗体缀合物组装纳米传感器,该传感器通过促进快速抗原捕获,结合了捕获和检测抗体的结合步骤。在抗原结合之后,使用化学诱导的复合物重排释放检测抗体。我们对 12 种化学添加剂进行了表征,以确定能够快速使双链 DNA(dsDNA)接头变性的熔点降低剂,并且有 8 种化合物被证明能够在保持蛋白质结合完整性的同时破坏 dsDNA。然后,该技术用于测量心脏病发作标志物心肌肌钙蛋白 I 的测量,并成功地结合了抗原结合步骤,同时将检测灵敏度提高了 42 倍。还证明链接介导的免疫分析在人血清中提供了强大的定量分析,并与最常用的免疫分析检测模式中的每一种都兼容。

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