首页> 外文期刊>Analytical chemistry >Development of Improved Double-Nanobody Sandwich ELISAs for Human Soluble Epoxide Hydrolase Detection in Peripheral Blood Mononuclear Cells of Diabetic Patients and the Prefrontal Cortex of Multiple Sclerosis Patients
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Development of Improved Double-Nanobody Sandwich ELISAs for Human Soluble Epoxide Hydrolase Detection in Peripheral Blood Mononuclear Cells of Diabetic Patients and the Prefrontal Cortex of Multiple Sclerosis Patients

机译:糖尿病患者外周血单核细胞的人类可溶性环氧化物水解酶检测的改进双纳米肌醇酶检测的研制及多发性硬化症患者的前额叶皮质

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摘要

Nanobodies have been progressively replacing traditional antibodies in various immunological methods. However, the use of nanobodies as capture antibodies is greatly hampered by their poor performance after passive adsorption to polystyrene microplates, and this restricts the full use of double nanobodies in sandwich enzyme-linked immunosorbent assays (ELISAs). Herein, using the human soluble epoxide hydrolase (sEH) as a model analyte, we found that both the immobilization format and the blocking agent have a significant influence on the performance of capture nanobodies immobilized on polystyrene and the subsequent development of double-nanobody sandwich ELISAs. We first conducted epitope mapping for pairing nanobodies and then prepared a horseradish-peroxidase-labeled nanobody using a mild conjugation procedure as a detection antibody throughout the work. The resulting sandwich ELISA using a capture nanobody (A9, 1.25 mu g/mL) after passive adsorption and bovine serum albumin (BSA) as a blocking agent generated a moderate sensitivity of 0.0164 OD.mL/ng and a limit of detection (LOD) of 0.74 ng/mL. However, the introduction of streptavidin as a linker to the capture nanobody at the same working concentration demonstrated a dramatic 16-fold increase in sensitivity (0.262 OD.mL/ng) and a 25-fold decrease in the LOD for sEH (0.03 ng/mL). The streptavidin-bridged double-nanobody ELISA was then successfully applied to tests for recovery, cross-reactivity, and real samples. Meanwhile, we accidentally found that blocking with skim milk could severely damage the performance of the capture nanobody by an order of magnitude compared with BSA. This work provides guidelines to retain the high effectiveness of the capture nanobody and thus to further develop the double-nanobody ELISA for various analytes.
机译:纳米级逐渐替代各种免疫学方法的传统抗体。然而,通过它们在被动吸附到聚苯乙烯微孔板后的性能差,使用纳米级作为捕获抗体的使用极大地阻碍了,这限制了夹层酶联免疫吸附测定(ELISAS)中的双纳米级甲状腺。在此,使用人可溶性环氧化物水解酶(SEH)作为模型分析物,我们发现固定形式和阻断剂对固定在聚苯乙烯上的捕获纳米型和随后的双纳米型夹心ELISA的开发具有显着影响。我们首先使用轻度缀合方法制备用于配对纳米甲基的表位测绘,然后使用温和的缀合方法作为整个工作的检测抗体制备辣根过氧化物酶标记的纳米体。使用捕获纳米体(A9,1.25μg/ ml)后所得到的夹心ELISA作为阻塞剂的捕获纳米体(A9,1.25μg/ ml)作为阻断剂产生的温度敏感性为0.0164 OD.ML/ng和检测限(LOD) 0.74 ng / ml。然而,在相同的工作浓度下将链霉抗生物素蛋白作为与捕获纳米体的接头的引入表现出敏感性(0.262 OD.ML/ng)的显着16倍,并且SEH的LOD减少25倍(0.03 ng / ml)。然后成功地应用了链霉蛋白桥桥的双纳米抗体ELISA以进行恢复,交叉反应性和真实样品的试验。同时,我们不小心发现用脱脂牛奶堵塞可能严重损害捕获纳米体的性能与BSA相比的级别。这项工作提供了保留捕获纳米体的高效能的指导原则,从而进一步开发出各种分析物的双纳米毒性ELISA。

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  • 来源
    《Analytical chemistry》 |2020年第10期|共9页
  • 作者单位

    Univ Calif Davis Dept Entomol &

    Nematol Davis CA 95616 USA;

    Univ Calif Davis Dept Entomol &

    Nematol Davis CA 95616 USA;

    Univ Calif Davis Dept Entomol &

    Nematol Davis CA 95616 USA;

    Normandie Univ UNIROUEN Rouen Univ Hosp Dept Clin Pharmacol F-76031 Rouen France;

    Normandie Univ UNIROUEN Rouen Univ Hosp Dept Clin Pharmacol F-76031 Rouen France;

    West Los Angeles VA Med Ctr Neurol Res Los Angeles CA 90073 USA;

    Univ Calif Davis Dept Food Sci &

    Technol Davis CA 95616 USA;

    Univ Calif Davis Dept Entomol &

    Nematol Davis CA 95616 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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