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首页> 外文期刊>Journal of Neuroscience Methods >An in vivo eyecup preparation for the rat.
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An in vivo eyecup preparation for the rat.

机译:一种用于大鼠的体内眼罩制剂。

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摘要

A method for the preparation of an in vivo eyecup and a complex stimulating-sampling device are described; these are suitable for long-term parallel neurochemical and electrophysiological experiments on the rat retina without any additives into the eyecup. In this in vivo eyecup the extracellular microenvironment is under the normal homeostatic control of the vascular system; no continuous exchange of the eyecup fluid and no addition of glutamate is necessary to maintain stable retinal electric responses and amino acid concentrations. The eyecup viability was tested by monitoring the electroretinogram (ERG) and the amino acid contents of the eyecup fluid sampled from the preretinal space by means of microdialysis. After the initial increase the b-wave of the ERG changed by less than 10% in maximal amplitude during experiments lasting 5 h. The glutamate, glutamine, and glycine levels proved comparatively, whereas the taurine level rose continuously throughout the experimental protocol. Recovery of ERG was achieved following exposure to bright background illumination. Total exchange of the eyecup volume requires 20 min at a flow rate of 1 microl/min. The effect of L-AP4 on the ERG was successfully reproduced, which suggests the applicability of this in vivo eyecup for pharmacological experiments on the rat retina.
机译:本发明描述了一种制备体内眼杯的方法和复杂的刺激取样装置。这些适用于在大鼠视网膜上进行长期平行神经化学和电生理实验,而无需在眼杯中添加任何添加剂。在这种体内眼罩中,细胞外微环境处于血管系统的正常稳态控制之下。无需连续交换眼杯液,也无需添加谷氨酸盐即可维持稳定的视网膜电反应和氨基酸浓度。通过监测视网膜电图(ERG)和通过微透析从视网膜前间隙采样的眼杯液的氨基酸含量来测试眼杯的生存能力。初始增加后,持续5 h的实验中,ERG的b波最大幅度变化不到10%。谷氨酸,谷氨酰胺和甘氨酸水平得到了比较证明,而牛磺酸水平在整个实验方案中均持续上升。暴露于明亮的背景照明后,ERG的恢复得以实现。眼杯的总交换量需要20分钟,流速为1微升/分钟。 L-AP4对ERG的作用已成功复制,这表明该体内眼罩适用于大鼠视网膜的药理实验。

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