首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Preliminary study on the suitability of a pharmacological bio-assay based on cardiac myocytes cultured over microfabricated microelectrode arrays.
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Preliminary study on the suitability of a pharmacological bio-assay based on cardiac myocytes cultured over microfabricated microelectrode arrays.

机译:基于在微制造的微电极阵列上培养的心肌细胞的药理生物测定的适用性的初步研究。

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摘要

There are a range of techniques that can be used to assay bioactive compound. One potentially promising technique is a system consisting of microfabricated extracellular recording devices over which electrogenic cells can be grown. To date, research in this area has concentrated on the use of neurons as an electrogenic cell type. However, these cells have limitations. Only small extracellular potentials have been recorded from mammalian neurons cultured over microfabricated electrode arrays. Although such potentials may be of use in assays examining the effects of bio-active compound analogues on firing frequency, they are of little use for more detailed pharmacological studies involving analyses of signal shape. What is required is a system from which much larger extracellular potentials can be recorded. This preliminary study reports on a system based on cardiac myocytes cultured over microfabricated metal microelectrode arrays, from which potentials with a mean amplitude of 16.9 microV can be reliably recorded, which can be reversibly blocked with mumoll-1 concentrations of the sodium ion channel blocker lidocaine. Less common potentials with amplitudes of up to 3.5 mV were also recorded. It is demonstrated that cardiac myocytes cultured over microfabricated micro-electrode arrays can be used in assays of cardioactive compound analogues.
机译:有多种技术可用于测定生物活性化合物。一种潜在的有前途的技术是一种由微细的细胞外记录设备组成的系统,可以在其上生长电细胞。迄今为止,该领域的研究集中在使用神经元作为电源细胞类型上。但是,这些单元具有局限性。在微型电极阵列上培养的哺乳动物神经元仅记录到小的细胞外电位。尽管这样的潜力可用于检查生物活性化合物类似物对发射频率的影响的测定中,但它们在涉及信号形状分析的更详细的药理研究中几乎没有用。所需要的是一种可以记录更大的细胞外电位的系统。这项初步研究报告了一种基于在微型金属微电极阵列上培养的心肌细胞的系统,该系统可以可靠地记录平均振幅为16.9 microV的电势,该电势可以被mumoll-1浓度的钠离子通道阻断剂利多卡因可逆地阻断。 。还记录了振幅不超过3.5 mV的不太常见的电势。证明了在微细加工的微电极阵列上培养的心肌细胞可用于心脏活性化合物类似物的测定。

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