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Development of a bio-MEMS device for electrical and mechanical conditioning and characterization of cell sheets for myocardial repair

机译:开发Bio-MEMS装置,用于电气和机械调节和表征心肌修复

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摘要

Here we propose a bio-MEMS device designed to evaluate contractile force and conduction velocity of cell sheets in response to mechanical and electrical stimulation of the cell source as it grows to form a cellular sheet. Moreover, the design allows for the incorporation of patient-specific data and cell sources. An optimized device would allow cell sheets to be cultured, characterized, and conditioned to be compatible with a specific patient's cardiac environment in vitro, before implantation. This design draws upon existing methods in the literature but makes an important advance by combining the mechanical and electrical stimulation into a single system for optimized cell sheet growth. The device has been designed to achieve cellular alignment, electrical stimulation, mechanical stimulation, conduction velocity readout, contraction force readout, and eventually cell sheet release. The platform is a set of comb electrical contacts consisting of three-dimensional walls made of polydimethylsiloxane and coated with electrically conductive metals on the tops of the walls. Not only do the walls serve as a method for stimulating cells that are attached to the top, but their geometry is tailored such that they are flexible enough to be bent by the cells and used to measure force. The platform can be stretched via a linear actuator setup, allowing for simultaneous electrical and mechanical stimulation that can be derived from patient-specific clinical data.
机译:在这里,我们提出了一种旨在评估细胞片的收缩力和传导速度的生物MEMS装置,响应于细胞源的机械和电刺激而形成细胞片。此外,该设计允许掺入患者特异性数据和细胞源。优化的装置可以允许培养,特征和调节细胞片,以在植入前与特定患者的心脏环境相容。这种设计利用文献中的现有方法,而是通过将机械和电刺激结合成单个系统进行优化的细胞片生长来制定重要的进步。该装置设计用于实现蜂窝取向,电刺激,机械刺激,传导速度读数,收缩力读出,最终的细胞片释放。该平台是一组梳状电触点,由由多二甲基硅氧烷制成的三维壁,并在壁的顶部上涂有导电金属。墙壁不仅用作刺激附着在顶部的细胞的方法,而且它们的几何形状被定制,使得它们足够灵活地被细胞弯曲并用于测量力。该平台可以通过线性致动器设置拉伸,允许同时电气和机械刺激,可以源自患者特定的临床数据。

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