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Digitized microimmunoassays with nuclear antigens for multiplex quantification of human specific IgE to β-lactam antibiotics

机译:具有核抗原的数字化微米作用,用于多重定量人体特异性IgE对β-内酰胺抗生素的定量

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摘要

Microanalytical systems have huge potential for prognosis and diagnosis of diseases where the quantification of biomarkers is the critical factor. Immunoglobulin E (IgE)-associated allergy is the most common immune disorder and reliable multiplex quantification of specific IgE antibodies is of key importance for in vitro allergy diagnosis. Here, we report an unprecedented highly sensitive multiplex colorimetric microanalytical system for reliable quantification of ss-lactam-specific IgE. The biosensor microsystem includes a regular digital versatile surface where nuclear antigens are immobilized in microarray format to determine simultaneously specific IgEs to amoxicillin, penicillin G, piperacillin and aztreonam, using a hacked disc drive as the optoelectrical sensor. The analytical microsystem was successfully tested in a cohort of 101 human serum samples, showing a limit of detection of 0.06 IU/mL (144 pg IgE/mL), a clinical sensitivity of 42.3 % for amoxicillin, and an excellent specificity (100 %). The analytical performances were good as compared and validated with both in vivo and in vitro reference clinical immunofluorescence assay, settling a good correlation between the techniques. The compact microanalytical system can be easily implemented in primary care laboratory settings without the need for any additional instrumentation, facilitating massive drug allergy screening and delabeling campaigns to better define drug sensitization profiles.
机译:微量分析系统具有巨大的预后和对生物标志物的定量是关键因素的疾病的潜力。免疫球蛋白E(IgE) - 分配过敏是最常见的免疫疾病,特定IgE抗体的可靠多重定量是体外过敏诊断的关键重要性。在这里,我们报告了一个前所未有的高度敏感的多重比色微型微型系统,以可靠地定量SS-内酰胺特异性IgE。生物传感器微系统包括常规数字通用表面,其中核抗原以微阵列格式固定,以使用作为光电传感器作为光电传感器的攻击盘驱动器同时测定对Amoxicillin,青霉素G,Piperacillin和AztReonam的特异性IgE。分析微系统在101个人血清样品的队列中成功测试,显示出0.06 IU / mL(144pg IgE / mL)的检测限,临床敏感性为Amoxicillin 42.3%,优异的特异性(100%) 。与体内和体外参考临床免疫荧光测定相比,分析性能良好,验证,稳定在技术之间的良好相关性。紧凑型微量分析系统可以在初级保健实验室环境中轻松实现,无需任何额外的仪器,促进大规模的药物过敏筛查和三角形运动,以更好地定义药物敏化型材。

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  • 来源
    《Sensors and Actuators》 |2021年第2期|129060.1-129060.8|共8页
  • 作者单位

    Instituto Interuniversitario de Investigacion de Reconocimiento Molecular y Desarrollo Tecnologico Universitat Politecnica de Valencia-Universitat de Valencia Camino de vera s/n 46022 Valencia Spain;

    Instituto Interuniversitario de Investigacion de Reconocimiento Molecular y Desarrollo Tecnologico Universitat Politecnica de Valencia-Universitat de Valencia Camino de vera s/n 46022 Valencia Spain Departamento de Quimica Universitat Politecnica de Valencia Camino de Vera s/n 46022 Valencia Spain Unidad Mixta UPV-La Fe Nanomedicine and Sensors IIS La Fe Valencia Spain;

    Instituto Interuniversitario de Investigacion de Reconocimiento Molecular y Desarrollo Tecnologico Universitat Politecnica de Valencia-Universitat de Valencia Camino de vera s/n 46022 Valencia Spain Departamento de Quimica Universitat Politecnica de Valencia Camino de Vera s/n 46022 Valencia Spain Unidad Mixta UPV-La Fe Nanomedicine and Sensors IIS La Fe Valencia Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical biosensor; Drug allergy; Diagnosis; Histone; Penams; Antigens;

    机译:光学生物传感器;药物过敏;诊断;组蛋白;佩帕斯;抗原;

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