Sauvage Center for Molecular Sciences, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.
Angew Chem Int Ed Engl. 2021 Feb 8;60(6):2757-2767. doi: 10.1002/anie.202007754. Epub 2020 Nov 26.
Electrochemical sensing based on conventional rigid electrodes has great restrictions for characterizing biomolecules in deformed cells or soft tissues. The recent emergence of stretchable sensors allows electrodes to conformally contact to curved surfaces and perfectly comply with the deformation of living cells and tissues. This provides a powerful strategy to monitor biomolecules from mechanically deformed cells, tissues, and organisms in real time, and opens up new opportunities to explore the mechanotransduction process. In this minireview, we first summarize the fabrication of stretchable electrodes with emphasis on the nanomaterial-enabled strategies. We then describe representative applications of stretchable sensors in the real-time monitoring of mechanically sensitive cells and tissues. Finally, we present the future possibilities and challenges of stretchable electrochemical sensing in cell, tissue, and in vivo detection.
基于传统刚性电极的电化学传感在表征变形细胞或软组织中的生物分子方面有很大的局限性。最近出现的可拉伸传感器允许电极与曲面贴合,并与活细胞和组织的变形完美匹配。这为实时监测机械变形细胞、组织和生物体中的生物分子提供了一种强大的策略,并为探索机械转导过程开辟了新的机会。在这篇综述中,我们首先总结了具有纳米材料的可拉伸电极的制造策略。然后,我们描述了可拉伸传感器在实时监测机械敏感细胞和组织方面的代表性应用。最后,我们提出了可拉伸电化学传感在细胞、组织和体内检测中的未来可能性和挑战。