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基于双适体生物识别和介孔硅封装铁卟啉的新型化学发光传感器用于凝血酶检测。

Novel Chemiluminescence Sensor for Thrombin Detection Based on Dual-Aptamer Biorecognition and Mesoporous Silica Encapsulated with Iron Porphyrin.

机构信息

Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering , University of Jinan , Jinan 250022 , PR China.

出版信息

ACS Appl Mater Interfaces. 2020 Feb 5;12(5):5569-5577. doi: 10.1021/acsami.9b20255. Epub 2020 Jan 23.

Abstract

Thrombin is a marker of blood-related diseases, and its detection is of great significance in the fields of medical and biological research. Herein, a novel chemiluminescence (CL) sensor for thrombin detection was prepared based on dual-aptamer biorecognition and mesoporous silica encapsulated with iron porphyrin. Mesoporous silica encapsulated with hematin by aptamer1 (Apt1/hematin/M-SiO) and magnetic microspheres modified with aptamer2 (Apt2/NH-MS) were successfully prepared, and the two materials were used to construct a CL sensor to detect thrombin. Primarily, Apt2/NH-MS is used for pretreatment separation of thrombin samples by the biorecognition effect between the aptamer (Apt2) and target (thrombin). Then, thrombin/Apt2/NH-MS is again recognized with Apt1 on the surface of Apt1/hematin/M-SiO and Apt1/thrombin/Apt2/NH-MS is formed, so dual-aptamer biorecognition is realized. Meanwhile, the generated Apt1/thrombin/Apt2/NH-MS makes Apt1 shed off the surface of M-SiO and release hematin. The released hematin can catalyze the luminol-HO CL reaction. Therefore, a sandwich-type CL sensor was constructed based on dual-aptamer biorecognition and hematin catalysis for the detection of thrombin. The sensor has a linear range of 7.5 × 10 to 2.5 × 10 mol·L and a detection limit of 2.2 × 10 mol·L and also exhibits excellent selectivity, reproducibility, and stability. The sensor was successfully used for the detection of thrombin in serum samples, which makes it possible to apply the sensor in the detection of thrombin in actual samples.

摘要

凝血酶是一种与血液相关疾病的标志物,其检测在医学和生物研究领域具有重要意义。在此,基于双适体生物识别和封装铁卟啉的介孔硅,制备了一种新型的凝血酶检测化学发光(CL)传感器。通过适体 1(Apt1)与血红素的相互作用,成功制备了被血红素包裹的介孔硅(Apt1/hematin/M-SiO)和被适体 2(Apt2)修饰的磁性微球(Apt2/NH-MS),并利用这两种材料构建了一种 CL 传感器来检测凝血酶。首先,Apt2/NH-MS 通过适体(Apt2)与靶标(凝血酶)之间的生物识别作用对凝血酶样品进行预处理分离。然后,在 Apt1/hematin/M-SiO 表面上再次识别带靶标的 Apt1/Apt2/NH-MS,形成 Apt1/thrombin/Apt2/NH-MS,从而实现双适体生物识别。同时,生成的 Apt1/thrombin/Apt2/NH-MS 使 Apt1 从 M-SiO 表面脱落并释放出血红素。释放的血红素可以催化鲁米诺-HO 的 CL 反应。因此,构建了一种基于双适体生物识别和血红素催化的三明治型 CL 传感器,用于凝血酶的检测。该传感器的线性范围为 7.5×10 至 2.5×10 mol·L,检测限为 2.2×10 mol·L,且具有良好的选择性、重现性和稳定性。该传感器成功地用于血清样品中凝血酶的检测,这使得该传感器有可能应用于实际样品中凝血酶的检测。

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