首页> 外国专利> device for the analysis of the electrophysiology of neuronal cells and their use in high-throughput screening for functional gene analysis

device for the analysis of the electrophysiology of neuronal cells and their use in high-throughput screening for functional gene analysis

机译:神经细胞电生理分析装置及其在高通量筛选功能基因分析中的应用

摘要

This invention focuses on the marriage of solid-state electronics and neuronal function to create a new high-throughput electrophysiological assay to determine a compound's acute and chronic effect on cellular function. Electronics, surface chemistry, biotechnology, and fundamental neuroscience are integrated to provide an assay where the reporter element is an array of electrically active cells. This innovative technology can be applied to neurotoxicity, and to screening compounds from combinatorial chemistry, gene function analysis, and basic neuroscience applications. The system of the invention analyzes ihow/i the action potential is interrupted by drugs or toxins. Differences in the action potentials are due to individual toxins acting on different biochemical pathways, which in turn affects different ion channels, thereby changing the peak shape of the action potential differently for each toxin. Algorithms to analyze the action potential peak shape differences are used to indicate the pathway(s) affected by the presence of a new drug or compound; from that, aspects of its function in that cell are deduced. This observation can be exploited to determine the functional category of biochemical action of an unknown compound. An important aspect of the invention is surface chemistry that permits establishment of a high impedance seal between cell and a metal microelectrode. This seal recreates the interface that enables functional patch-clamp electrophysiology with glass micropipettes, and allows extracellular electrophysiology on a microelectrode array. Thus, the invention teaches the feasibility of using living cells as diagnostics for high throughput real-time assays of cell function.
机译:本发明集中于固态电子学和神经元功能的结合,以产生新的高通量电生理测定法,以确定化合物对细胞功能的急性和慢性作用。电子,表面化学,生物技术和基础神经科学相结合,可提供一种检测方法,其中报告子元素是电活性细胞的阵列。这项创新技术可以应用于神经毒性,并可以从组合化学,基因功能分析和基础神经科学应用中筛选化合物。本发明的系统分析动作电位如何被药物或毒素中断。作用电位的差异是由于个别毒素作用于不同的生化途径,进而影响不同的离子通道,因此每种毒素的作用电位的峰形都有不同的变化。分析动作电位峰形差异的算法用于指示受新药或化合物存在影响的途径。由此推断出该细胞在该细胞中的功能。可以利用该观察结果来确定未知化合物的生化作用的功能类别。本发明的一个重要方面是表面化学,其允许在电池和金属微电极之间建立高阻抗密封。该密封层重新创建了界面,该界面可通过玻璃微量移液器实现功能性膜片钳电生理学,并允许在微电极阵列上进行细胞外电生理学。因此,本发明教导了使用活细胞作为用于细胞功能的高通量实时测定的诊断剂的可行性。

著录项

  • 公开/公告号DE60041443D1

    专利类型

  • 公开/公告日2009-03-12

    原文格式PDF

  • 申请/专利权人 HICKMAN JAMES J.;

    申请/专利号DE20006041443T

  • 发明设计人 HICKMAN JAMES J.;

    申请日2000-05-22

  • 分类号C12M1/34;C12Q1/02;C12Q1;G01N33/483;G01N33/487;G01N33/543;

  • 国家 DE

  • 入库时间 2022-08-21 19:08:30

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