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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Intracellular Recording of Human Cardiac Action Potentials on Market-Available Multielectrode Array Platforms
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Intracellular Recording of Human Cardiac Action Potentials on Market-Available Multielectrode Array Platforms

机译:市场可用多电极阵列平台人类心脏动作电位的细胞内记录

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摘要

High quality attenuated intracellular action potentials from large cell networks can be recorded on multi-electrode arrays by means of 3D vertical nanopillars using electrical pulses. However, most of the techniques require complex 3D nanostructures that prevent the straightforward translation into marketable products and the wide adoption in the scientific community. Moreover, 3D nanostructures are often delicate objects that cannot sustain several harsh use/cleaning cycles. On the contrary, laser optoacoustic poration allows the recording of action potentials on planar nanoporous electrodes made of noble metals. However, these constraints of the electrode material and morphology may also hinder the full exploitation of this methodology. Here, we show that optoacoustic poration is also very effective for porating cells on a large family of MEA electrode configurations, including robust electrodes made of nanoporous titanium nitride or disordered fractal-like gold nanostructures. This enables the recording of high quality cardiac action potentials in combination with optoacoustic poration, providing thus attenuated intracellular recordings on various already commercial devices used by a significant part of the research and industrial communities.
机译:通过使用电脉冲的3D垂直纳米粒子,可以在多电极阵列上记录来自大单元网络的高质量减弱的细胞内动作电位。然而,大多数技术需要复杂的3D纳米结构,以防止直接翻译成市场性产品和科学界的广泛采用。此外,3D纳米结构通常是不能维持几个苛刻的使用/清洁循环的细腻物体。相反,激光光声原理允许在贵金属制成的平面纳米多孔电极上记录动作电位。然而,电极材料和形态的这些约束也可能阻碍这种方法的全部利用。在这里,我们表明光声原理对大型MEA电极配置上的植物电池也非常有效,包括由纳米多孔氮化钛或无序的分形金纳米结构制成的鲁棒电极。这使得能够将高质量的心脏动作电位与光声吸力组合的组合进行,从而为各种已经商业设备提供了衰减的细胞内记录,这些设备由研究和工业社区的重要组成部分使用。

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