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基于黑磷和 NiFeO NTs 的双模探针用于电化学发光和光热检测卵巢癌标志物。

Dual-modality probe based on black phosphorous and NiFeO NTs for electrochemiluminescence and photothermal detection of ovarian cancer marker.

机构信息

College of Chemistry and Material, Fujian Normal University, Fuzhou, Fujian, 350108, China.

Mengchao Hepatobiliary Hospital of Fujian Medical University, Fuzhou, Fujian, 350108, China.

出版信息

Talanta. 2020 May 1;211:120660. doi: 10.1016/j.talanta.2019.120660. Epub 2020 Jan 7.

Abstract

An electrochemiluminescence and photothermal immunosensor based on a dual-modality integrated probe was proposed for sensitive and reliable detection of lipolysis stimulated lipoprotein receptor (LSR), a new biomarker of ovarian cancer. Black phosphorous quantum dots (BPQDs) possess fascinating electrochemical property and unique photothermal effect, which could not only enhance ECL signal of N-(4-aminobutyl)-N-ethylisoluminol (ABEI) through accelerating dissolved O evolution but also realize temperature signal output by converting laser energy into heat. Furthermore, NiFeO nanotubes (NiFeO NTs) have large specific surface area and favorable adsorption ability, which could increase the immobilized amount of ABEI and BPQDs, further strengthening ECL and temperature signal. As a result, a dual-mode immunosensor was constructed and realized ECL and temperature dual signal to detect LSR, making the results more reliable. This work provided a new thought for the development of sensitive and accurate sensors and was expected to employ for determination of other biomarkers.

摘要

基于双模态集成探针的电化学发光和光热免疫传感器被提出,用于灵敏和可靠地检测脂肪分解刺激脂蛋白受体(LSR),这是一种卵巢癌的新型生物标志物。黑磷量子点(BPQDs)具有迷人的电化学性质和独特的光热效应,不仅可以通过加速溶解 O2 的释放来增强 N-(4-氨基丁基)-N-乙基异鲁米诺(ABEI)的电化学发光信号,还可以通过将激光能量转化为热能来实现温度信号输出。此外,NiFeO 纳米管(NiFeO NTs)具有大的比表面积和良好的吸附能力,可以增加 ABEI 和 BPQDs 的固定量,进一步增强电化学发光和温度信号。因此,构建了双模式免疫传感器,实现了电化学发光和温度双信号检测 LSR,使结果更加可靠。这项工作为开发灵敏准确的传感器提供了新的思路,并有望用于其他生物标志物的测定。

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