首页> 外文期刊>The Journal of Comparative Neurology >Alterations in photoreceptor-bipolar cell signaling following ischemia/reperfusion in the rat retina.
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Alterations in photoreceptor-bipolar cell signaling following ischemia/reperfusion in the rat retina.

机译:大鼠视网膜缺血/再灌注后光感受器-双极细胞信号传导的变化。

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Studies of retinal ischemia/reperfusion indicate a disparity between the anatomical and functional results; while a large number of rod bipolar cells remain postischemia, there is a significant reduction in the amplitude of the scotopic b-wave of the electroretinogram (ERG). We investigated the alterations in photoreceptor-bipolar cell signaling following ischemia/reperfusion and suggest a mechanism for the decrease in b-wave amplitude. A cation channel probe (agmatine, 1-amino-4-guanidobutane, AGB) was used to assess cellular ion channel activity in neurochemically identified cells secondary to endogenous glutamate release or pharmacological manipulations. By applying the "neurochemical truth point" principle (Sun et al. [2007a] J Comp Neurol, this issue), we have been able to confirm the loss of specific subpopulations of neurons. ERG was used to assess gross retinal function, with parameters of the ERG model providing insight into changes in the phototransduction cascade and sensitivity of postreceptoral glutamate receptors. Following ischemia/reperfusion, rod bipolar cells maintained 2-amino-4-phosphonobutyric acid-responsive metabotropic glutamate receptors and displayed no change in sensitivity to flashes of light as assessed by ERG. Therefore, the loss in b-wave amplitude is likely due to alterations in photoreceptoral glutamate release detected as a change in postsynaptic AGB permeation into rod bipolar cells. Bipolar cell to amacrine cell signaling was also altered. The robust AGB entry into cholinergic amacrine cells was virtually absent in retinas that had undergone ischemia/reperfusion but remained in the AII amacrine cells. Such results suggest a loss of glutamate receptors and/or a change in receptor subunit expression in subpopulations of inner retinal neurons. Although many cells retain their characteristic neurochemical labeling following ischemia/reperfusion, caution should be used when assuming cells participate in functional retinal circuits based solely on the persistence of neurochemical labeling.
机译:视网膜缺血/再灌注的研究表明,解剖学结果和功能结果之间存在差异。尽管大量的杆状双极细胞仍然存在缺血后,但视网膜电图(ERG)的暗视b波幅度却显着降低。我们研究了缺血/再灌注后光感受器-双极细胞信号传导的变化,并提出了降低b波振幅的机制。阳离子通道探针(胍丁胺,1-氨基-4-胍丁烷,AGB)用于评估继内源性谷氨酸释放或药理作用后的神经化学鉴定细胞中的细胞离子通道活性。通过应用“神经化学真点”原理(Sun等[2007a] J Comp Neurol,此问题),我们已经能够确认神经元特定亚群的丢失。 ERG用于评估视网膜的总体功能,ERG模型的参数可洞察光转导级联的变化以及受体后谷氨酸受体的敏感性。缺血/再灌注后,杆状双极细胞维持2-氨基-4-膦酰基丁酸反应性代谢型谷氨酸受体,并且通过ERG评估其对闪光的敏感性无变化。因此,b波振幅的损失很可能是由于在突触后AGB渗透到杆双极细胞中而检测到的光感受器谷氨酸释放的变化。双极细胞到无长突细胞的信号转导也被改变。在经历了局部缺血/再灌注但仍保留在AII无长突细胞中的视网膜中,实际上不存在强大的AGB进入胆碱能无长突细胞的进入。这样的结果表明在内部视网膜神经元的亚群中谷氨酸受体的丢失和/或受体亚基表达的改变。尽管许多细胞在缺血/再灌注后仍保留其特征性神经化学标记,但是当假设细胞仅基于神经化学标记的持久性参与细胞参与功能性视网膜回路时,应谨慎使用。

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