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基于葫芦[7]脲与二茂铁之间的特异性主客体相互作用的用于外泌体测定和释放的新型电化学适体传感器。

A novel electrochemical aptasensor for exosomes determination and release based on specific host-guest interactions between cucurbit [7]uril and ferrocene.

机构信息

State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research, Nankai University, Haihe Education Park, 38 Tongyan Road, Tianjin, 300353, People's Republic of China.

State Key Laboratory of Medicinal Chemical Biology, College of Pharmacy and Tianjin Key Laboratory of Molecular Drug Research, Nankai University, Haihe Education Park, 38 Tongyan Road, Tianjin, 300353, People's Republic of China.

出版信息

Talanta. 2021 Sep 1;232:122451. doi: 10.1016/j.talanta.2021.122451. Epub 2021 Apr 24.

Abstract

The superior supramolecular recognition ability of macrocyclic compounds will enhance the sensitivity and selectivity of electrochemical detection, which has a great application potential in electrochemical sensing. Herein, we developed a novel electrochemical aptasensor based on the specific host-guest interactions between cucurbit [7]uril and ferrocene (Fc) for capture, determination and release of exosomes. Macrocyclic compounds, cucurbit [7]uril is modified on the surface of the gold nanoparticles composed electrode by self-assembling. CD63 aptamer linked ferrocene is introduced into this platform to capture exosomes specifically by CD63 protein on the exosomes. The dual specificity of macrocyclic compounds and aptamers enables highly selective and sensitive electrochemical detection of exosomes. The limit of detection (LOD) was 482 particles μL. In addition, the captured exosomes could be released on demand in a very mild manner through aminoferrocene (NH-Fc) because of its higher affinity to cucurbit [7]uril. The proposed electrochemical aptasensor showed good performance in detecting exosomes even in plasma samples, thus demonstrating its great potential in early clinical diagnosis. Simultaneously, exosomes could be released undamaged by this protocol, exhibiting good applicability in comprehensive studies of exosomes. Moreover, this strategy can be applied to other target biomolecules by changing the recognition pairs.

摘要

大环化合物具有优越的超分子识别能力,将增强电化学检测的灵敏度和选择性,在电化学生物传感中具有巨大的应用潜力。在此,我们开发了一种基于葫芦[7]脲与二茂铁(Fc)之间特异性主客体相互作用的新型电化学适体传感器,用于外泌体的捕获、测定和释放。大环化合物,葫芦[7]脲通过自组装修饰在由金纳米粒子组成的电极表面上。将与二茂铁相连的 CD63 适体引入该平台,通过外泌体上的 CD63 蛋白特异性捕获外泌体。大环化合物和适体的双重特异性使对外泌体的电化学检测具有高度选择性和灵敏性。检测下限(LOD)为 482 个颗粒 μL。此外,由于氨基二茂铁(NH-Fc)与葫芦[7]脲具有更高的亲和力,因此可以通过它以非常温和的方式按需释放捕获的外泌体。所提出的电化学适体传感器在检测外泌体,甚至在血浆样本中,都表现出良好的性能,因此在早期临床诊断中具有巨大的潜力。同时,通过该方案可以无损地释放外泌体,在对外泌体的综合研究中具有良好的适用性。此外,通过改变识别对,可以将该策略应用于其他靶标生物分子。

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