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首页> 外文期刊>Nanoscale >In vitro cardiomyocyte-driven biogenerator based on aligned piezoelectric nanofibers
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In vitro cardiomyocyte-driven biogenerator based on aligned piezoelectric nanofibers

机译:体外cardiomyocyte-driven biogenerator基础在对齐压电纳米纤维

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Capturing the body's mechanical energy from the heart, lungs, and diaphragm can probably meet the requirements for in vivo applications of implantable biomedical devices. In this work, we present a novel contractile cardiomyocyte (CM)-driven biogenerator based on piezoelectric nanofibers (NFs) uniaxially aligned on a PDMS thin film. Flexible nanostructures interact with the CMs, as a physical cue to guide the CMs to align in a specific way, and create mechanical interfaces of contractile CMs and piezoelectric NFs. As such, the cellular construct features specific alignment and synchronous contraction, which realizes the maximal resultant force to drive the NFs to bend periodically. Studies on contraction mapping show that neonatal rat CMs self-assemble into a functional bio-bot film with well-defined axes of force generation. Consequently, the biogenerator produces an average voltage of 200 mV and current of 45 nA at the cell concentration of 1.0 million per ml, offering a biocompatible and scalable platform for biological energy conversion.
机译:捕捉人体的机械能心脏、肺和隔膜可以满足体内的应用要求植入式生物医学设备。小说收缩心肌细胞基于压电(CM)简况biogenerator纳米纤维(NFs) PDMS单向地对齐薄膜。CMs,作为一个物理线索引导CMs特定的方式排列,并创建机械收缩CMs和压电的接口NFs。具体的校准和同步收缩,它实现了最大合力定期开NFs弯曲。收缩映射显示新生儿老鼠CMs自组装成有功能的bio-bot电影定义良好的轴力的一代。因此,biogenerator产生200 mV的平均电压和电流45 nA每毫升100万细胞的浓度,提供生物相容性和可伸缩的平台生物能量转换。

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