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基于适体的溶液门控石墨烯晶体管,用于高灵敏度和实时检测凝血酶分子。

Aptamer-Based Solution-Gated Graphene Transistors for Highly Sensitive and Real-Time Detection of Thrombin Molecules.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, China.

Collaborative Innovation Center for Advanced Organic Chemical Materials Co-constructed by the Province and Ministry, Key Laboratory for the Green Preparation and Application of Functional Materials, Ministry of Education, Hubei Key Laboratory of Polymer Materials, School of Materials Science and Engineering, Hubei University, Wuhan 430062, China.

出版信息

Anal Chem. 2021 Oct 12;93(40):13673-13679. doi: 10.1021/acs.analchem.1c03129. Epub 2021 Oct 1.

Abstract

Thrombin is an important biomarker for various diseases and biochemical reactions. Rapid and real-time detection of thrombin that quickly neutralizes in early coagulation in the body has gained significant attention for its practical applications. Solution-gated graphene transistors (SGGTs) have been widely studied due to their higher sensitivity and low-cost fabrication for chemical and biological sensing applications. In this paper, the ssDNA aptamer with 29 bases was immobilized on the surface of the gate electrode to specifically recognize thrombin. The SGGT sensor achieved high sensitivity with a limit of detection (LOD) up to fM. The LOD was attributed to the amplification function of SGGTs and the suitable aptamer choice. The ssDNA configuration folding induced by thrombin molecules and the electropositivity of thrombin molecules could arouse the same electrical response of SGGTs, helping the device obtain a high sensitivity. The channel current variation of sensors had a good linear relationship with the logarithm of thrombin concentration in the range of 1 fM to 10 nM. The fabricated device also demonstrated a short response time to thrombin molecules, and the response time to the 1 fM thrombin molecules was about 150 s. In summary, the sensing strategy of aptamer-based SGGTs with high sensitivity and high selectivity has a good prospect in medical diagnosis.

摘要

凝血酶是各种疾病和生化反应的重要生物标志物。由于其在体内早期凝血中快速中和的特点,快速实时检测凝血酶在实际应用中引起了广泛关注。由于其在化学和生物传感应用中的更高灵敏度和低成本制造,溶液门控石墨烯晶体管 (SGGT) 得到了广泛研究。在本文中,将具有 29 个碱基的 ssDNA 适体固定在栅电极的表面,以特异性识别凝血酶。SGGT 传感器具有高达 fM 的检测限 (LOD),实现了高灵敏度。LOD 归因于 SGGT 的放大功能和合适的适体选择。凝血酶分子诱导的 ssDNA 构象折叠和凝血酶分子的正电性可以引起 SGGT 的相同电响应,帮助器件获得高灵敏度。传感器的沟道电流变化与凝血酶浓度的对数在 1 fM 至 10 nM 的范围内呈良好的线性关系。所制造的器件还表现出对凝血酶分子的快速响应时间,对 1 fM 凝血酶分子的响应时间约为 150 s。总之,基于适体的 SGGT 的高灵敏度和高选择性传感策略在医学诊断中有很好的应用前景。

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