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Coupling of organotypic brain slice cultures to silicon-based arrays of electrodes.

机译:器官型脑切片培养物与硅基电极阵列的耦合。

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摘要

Fetal or early postnatal brain tissue can be cultured in viable and healthy condition for several weeks with development and preservation of the basic cellular and connective organization as so-called organotypic brain slice cultures. Here we demonstrate and describe how it is possible to establish such hippocampal rat brain slice cultures on biocompatible silicon-based chips with arrays of electrodes with a histological organization comparable to that of conventional brain slice cultures grown by the roller drum technique and on semiporous membranes. Intracellular and extracellular recordings from neurons in the slice cultures show that the electroresponsive properties of the neurons and synaptic circuitry are in accordance with those described for cells in acutely prepared slices of the adult rat hippocampus. Based on the recordings and the possibilities of stimulating the cultured cells through the electrode arrays it is anticipated that the setup eventually will allow long-term studies of defined neuronal networks and provide valuable information on both normal and neurotoxicological and neuropathological conditions. Copyright 1999 Academic Press.
机译:胎儿或产后早期脑组织可以在可行和健康的条件下培养数周,同时发展和保存基本的细胞和结缔组织,称为所谓的器官型脑切片培养。在这里,我们证明并描述了如何在具有生物相容性的硅基芯片上建立这种海马大鼠脑切片培养物,这种芯片具有与通过滚轮鼓技术在半孔膜上生长的传统脑切片培养物相比可比的组织学组织的电极阵列。切片培养物中神经元的细胞内和细胞外记录表明,神经元和突触回路的电响应特性与成年大鼠海马急性切片中细胞的描述一致。基于记录和通过电极阵列刺激培养细胞的可能性,可以预期该装置最终将允许对定义的神经元网络进行长期研究,并提供有关正常,神经毒理学和神经病理学状况的有价值的信息。版权所有1999 Academic Press。

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