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基于碳纳米管场效应晶体管生物传感平台的脑脊液漏检测。

Cerebrospinal Fluid Leak Detection with a Carbon Nanotube-Based Field-Effect Transistor Biosensing Platform.

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.

Department of Pathology, University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania 15260, United States.

出版信息

ACS Appl Mater Interfaces. 2022 Jan 12;14(1):1684-1691. doi: 10.1021/acsami.1c19120. Epub 2021 Dec 21.

Abstract

Cerebrospinal fluid (CSF) leakage may lead to life-threatening complications if not detected promptly. However, gel electrophoresis, the gold-standard test for confirming CSF leakage by detecting beta2-transferrin (β2-Tf), requires 3-6 h and is labor-intensive. We developed a new β2-Tf detection platform for rapid identification of CSF leakage. The three-step design, which includes two steps of affinity chromatography and a rapid sensing step using a semiconductor-enriched single-walled carbon nanotube field-effect transistor (FET) sensor, circumvented the lack of selectivity that antitransferrin antibody exhibits for transferrin isoforms and markedly shortened the detection time. Furthermore, three different sensing configurations for the FET sensor were investigated for obtaining the optimal β2-Tf sensing results. Finally, body fluid (CSF and serum) tests employing our three-step strategy demonstrated high sensitivity, suggesting its potential to be used as a rapid diagnostic tool for CSF leakage.

摘要

脑脊液(CSF)泄漏如果未能及时发现,可能导致危及生命的并发症。然而,凝胶电泳是通过检测β2-转铁蛋白(β2-Tf)来确认 CSF 泄漏的金标准测试,需要 3-6 小时,且劳动强度大。我们开发了一种新的β2-Tf 检测平台,用于快速识别 CSF 泄漏。该三步设计包括两步亲和层析和使用富含半导体的单壁碳纳米管场效应晶体管(FET)传感器的快速感应步骤,规避了抗转铁蛋白抗体对转铁蛋白异构体缺乏选择性的问题,并显著缩短了检测时间。此外,还研究了 FET 传感器的三种不同感应配置,以获得最佳的β2-Tf 感应结果。最后,采用我们的三步策略对体液(CSF 和血清)进行了测试,结果显示具有高灵敏度,表明其有潜力成为 CSF 泄漏的快速诊断工具。

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