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基于三明治纳米网络的可拉伸和光催化可再生电化学传感器,用于实时监测细胞。

Stretchable and Photocatalytically Renewable Electrochemical Sensor Based on Sandwich Nanonetworks for Real-Time Monitoring of Cells.

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences , Wuhan University , Wuhan 430072 , China.

出版信息

Anal Chem. 2018 May 15;90(10):5977-5981. doi: 10.1021/acs.analchem.8b01396. Epub 2018 Apr 30.

Abstract

Stretchable electrochemical (EC) sensors have broad prospects in real-time monitoring of living cells and tissues owing to their excellent elasticity and deformability. However, the redox reaction products and cell secretions are easily adsorbed on the electrode, resulting in sensor fouling and passivation. Herein, we developed a stretchable and photocatalytically renewable EC sensor based on Au nanotubes (NTs) and TiO nanowires (NWs) sandwich nanonetworks. The external Au NTs are used for EC sensing, and internal TiO NWs provide photocatalytic performance to degrade contaminants, which endows the sensor with excellent EC performance, high photocatalytic activity, and favorable mechanical tensile property. This allows highly sensitive recycling monitoring of NO released from endothelial cells and 5-HT released from mast cells under their stretching states in real time, therefore providing a promising tool to unravel elastic and mechanically sensitive cells, tissues, and organs.

摘要

基于金纳米管(NTs)和二氧化钛纳米线(NWs)夹层纳米网络的可拉伸、光电催化可再生电化学(EC)传感器

可拉伸的电化学(EC)传感器由于其优异的弹性和可变形性,在实时监测活细胞和组织方面具有广阔的前景。然而,氧化还原反应产物和细胞分泌物很容易被吸附在电极上,导致传感器堵塞和钝化。在此,我们开发了一种基于金纳米管(NTs)和二氧化钛纳米线(NWs)夹层纳米网络的可拉伸和光电催化可再生 EC 传感器。外部的 Au NTs 用于 EC 传感,内部的 TiO NWs 提供光催化性能以降解污染物,这使得传感器具有出色的 EC 性能、高光催化活性和良好的机械拉伸性能。这使得对内皮细胞释放的 NO 和肥大细胞释放的 5-HT 在拉伸状态下的实时、高灵敏度的回收监测成为可能,因此为研究弹性和机械敏感细胞、组织和器官提供了一种很有前途的工具。

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