首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >An amperometric immunosensor for diagnosis of celiac disease based on covalent immobilization of open conformation tissue transglutaminase for determination of anti-tTG antibodies in human serum
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An amperometric immunosensor for diagnosis of celiac disease based on covalent immobilization of open conformation tissue transglutaminase for determination of anti-tTG antibodies in human serum

机译:一种基于开放构象组织转谷氨酰胺酶共价固定测定人血清中抗tTG抗体的乳糜泻电流型免疫传感器

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摘要

A new amperometric immunosensor based on the covalent immobilization of tissue transglutaminase enzyme in its open conformation (open-tTG) was developed and optimized for determination of anti-tissue transglutaminase antibodies (anti-tTG) in human serum. Experimental design allowed us to find the optimal conditions for quantification of both IgA and IgG isotypes of anti-tTG in order to assess suitability of the device for diagnostic purposes. The glassy carbon electrodic substrate was electrochemically functionalized with gold nanoparticles and subsequently derivatized with a self-assembled monolayer of 11 -mercaptoundecanoic acid for the covalent anchoring of the enzyme. This step was performed under carefully controlled conditions in order to keep the open conformation of the tTG. The immunosensor showed good analytical performance with limit of detection levels (1.7 AU mL~(-1) for IgA and 2.7 AU mL~(-1) for IgG) below the diagnostic threshold value (3.0 AU mL~(-1)) and inter-sensor reproducibility giving RSD lower than 10%. The developed sensor was validated in serum samples from pediatric patients for clinical applications, using two ELISA kits specific for the determination of anti-tTG IgA and IgG antibodies as reference methods;good recovery rates ranging from 74% to 117% were calculated.
机译:基于组织转谷氨酰胺酶以其开放构象(open-tTG)的共价固定化,开发了一种新型安培免疫传感器,并对其进行了优化,以测定人血清中的抗组织转谷氨酰胺酶抗体(anti-tTG)。实验设计使我们能够找到定量抗tTG的IgA和IgG同种型的最佳条件,以便评估该设备用于诊断的适用性。用金纳米颗粒将玻璃碳电极基质进行电化学功能化,然后用11-巯基癸酸的自组装单层衍生化,以共价锚定酶。为了保持tTG的开放构象,在小心控制的条件下进行该步骤。免疫传感器显示出良好的分析性能,其检测水平(IgA的检测水平为1.7 AU mL〜(-1),IgG的检测水平为2.7 AU mL〜(-1))低于诊断阈值(3.0 AU mL〜(-1))和传感器之间的可重复性,RSD低于10%。该开发的传感器已在儿科患者的血清样品中进行了临床验证,并使用两种专门用于测定抗tTG IgA和IgG抗体的ELISA试剂盒作为参考方法;计算出的回收率在74%至117%之间。

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