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Chemiluminescent immunoassay technology: what does it change in autoantibody detection?

机译:化学发光免疫分析技术:自身抗体检测会发生什么变化?

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摘要

Diagnostic technology is rapidly evolving, and over the last decade, substantial progress has been made even for the identification of antibodies, increasingly approaching this type of diagnostic to that of automated clinical chemistry laboratory. In this review, we describe the analytical and diagnostic characteristics of chemiluminescence technology in its strength and in its applicability for a more rapid and accurate diagnosis of autoimmune diseases. The wide dynamic range, greater than that of immunoenzymatic methods, the high sensitivity and specificity of the results expressed in quantitative form, the high degree of automation and the clinical implications related to the reduction in the turnaround time, and the ability to run a large number of antibody tests (even of different isotypes), directed towards large antigenic panels in random access mode, make this technology the most advanced in the clinical laboratory, with enormous repercussions on the workflow and on the autoimmunology laboratory organisation. Further improvements are expected in the coming years with the development of new analytical platforms such as the flow-injection chemiluminescent immunoassay, the two-dimensional resolution for chemiluminescence multiplex immunoassay and the magnetic nanoparticles chemiluminescence immunoassay, which will likely result in additional increases in the clinical efficacy of antibody tests.
机译:诊断技术正在迅速发展,并且在过去的十年中,甚至在抗体鉴定方面也取得了实质性的进展,这种诊断类型越来越接近自动化临床化学实验室的诊断类型。在这篇综述中,我们描述了化学发光技术的强度和在更快速,准确地诊断自身免疫性疾病中的适用性的分析和诊断特征。动态范围广,比免疫酶方法大,以定量形式表示的结果具有很高的灵敏度和特异性,自动化程度高,与缩短周转时间有关的临床意义,以及具有大批量运行的能力针对随机访问模式下的大型抗原检测的大量抗体测试(甚至不同同种型)使该技术成为临床实验室中最先进的技术,对工作流程和自身免疫学实验室组织产生了巨大影响。随着新的分析平台的发展,例如流动注射化学发光免疫测定,化学发光多重免疫测定的二维分辨率和磁性纳米颗粒化学发光免疫测定,有望在未来几年内进一步改善,这可能会导致临床上的进一步增加抗体测试的功效。

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