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Enhanced Cell-Chip Coupling by Rapid Femtosecond Laser Patterning of Soft PEDOT:PSS Biointerfaces

机译:通过快速Femtosecond激光图案化的Cell-Chip耦合软PEDOT:PSS生物界面

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摘要

Interfacing soft materials with biological systems holds considerable promise for both biosensors and recording live cells. However, the interface between cells and organic substrates is not well studied, despite its crucial role in the effectiveness of the device. Furthermore, well-known cell adhesion enhancers, such as microgrooves, have not been implemented on these surfaces. Here, we present a nanoscale characterization of the cell substrate interface for 3D laser-patterned organic electrodes by combining electrochemical impedance spectroscopy (EIS) and scanning electron microscopy/focused ion beam (SEM/FIB). We demonstrate that introducing 3D micropatterned grooves on organic surfaces enhances the cell adhesion of electrogenic cells.
机译:具有生物系统的柔软材料对生物传感器和记录活细胞具有相当大的承诺。 然而,尽管其在装置的有效性中起着至关重要,但细胞与有机基板之间的界面并不很好地研究。 此外,众所周知的细胞粘附增强剂,例如微型腔体,尚未在这些表面上实施。 这里,我们通过组合电化学阻抗光谱(EIS)和扫描电子显微镜/聚焦离子束(SEM / FIB)来介绍用于3D激光图案有机电极的细胞基板接口的纳米级表征。 我们证明,在有机表面上引入3D微图案凹槽可以增强电池的细胞粘附。

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