Three-Dimensional Stretchable Sensor-Hydrogel Integrated Platform for Cardiomyocyte Culture and Mechanotransduction Monitoring

机械转化 佩多:嘘 脚手架 转导(生物物理学) 化学 纳米技术 联轴节(管道) 生物医学工程 电化学 组织工程 电极 材料科学 细胞生物学 复合材料 物理化学 生物 医学 生物化学
作者
Ming Chen,Yu Qin,Wen‐Ting Fan,Jing Yan,Feng Hong,Wei‐Hua Huang,Yan‐Ling Liu
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:95 (34): 12859-12866 被引量:11
标识
DOI:10.1021/acs.analchem.3c02151
摘要

Cardiomyocytes are responsible for generating contractile force to pump blood throughout the body and are very sensitive to mechanical forces and can initiate mechano-electric coupling and mechano-chemo-transduction. Remarkable progress has been made in constructing heart tissue by engineered three-dimensional (3D) culture models and in recording the electrical signals of cardiomyocytes. However, it remains a severe challenge for real-time acquiring of the transient biochemical information in cardiomyocyte mechano-chemo-transduction. Herein, we reported a multifunctional platform by integrating a 3D stretchable electrochemical sensor with collagen hydrogel for the culture, electrical stimulation, and electrochemical monitoring of cardiomyocytes. The 3D stretchable electrochemical sensor was prepared by assembling functionalized conductive polymer PEDOT:PSS on an elastic scaffold, which showed excellent electrochemical sensing performance and stability under mechanical deformations. The integration of a 3D stretchable electrochemical sensor with collagen hydrogel provided an in vivo-like microenvironment for cardiomyocyte culture and promoted cell orientation via in situ electrical stimulation. Furthermore, this multifunctional platform allowed real-time monitoring of stretch-induced H2O2 release from cardiomyocytes under their normal and pathological conditions, as well as pharmacological interventions.
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