首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Local sensory ganglion ischemia induced by endothelin vasoconstriction: vulnerability of diabetic neurons and microvessels.
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Local sensory ganglion ischemia induced by endothelin vasoconstriction: vulnerability of diabetic neurons and microvessels.

机译:内皮素血管收缩引起的局部感觉神经节缺血:糖尿病神经元和微血管的脆弱性。

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摘要

In some disorders of the peripheral nervous system, it is relevant to understand how sensory neurons respond to selective ganglion ischemia. Sensory dorsal root ganglia may be susceptible to ischemic damage and irretrievable neuron loss because of their metabolic requirements. In diabetes, heightened sensitivity to ischemia associated with elevated endothelin levels might render ganglia particularly vulnerable.In this work, we created a model of local sensory ganglion ischemia by generating intense local vasoconstriction from applied endothelin-1 (ET). In this model, we compared relative vulnerability of L5 ganglia microvessels and neurons to ET in streptozotocin-induced diabetic rats and nondiabetic controls. Diabetic ganglia had reductions in baseline core ganglion blood flow (GBF) measured using microelectrode hydrogen clearance polarography and ET induced particularly profound declines. Serial GBF measurements made using a laser Doppler flowmetry probe also indicated that diabetic ganglia exposed to ET had a marked prolongation in its action. Neuron perikarya and proximal axon segments were more vulnerable in diabetes. Neurons exhibited loss of neurofilament labeling, dissolution of the neurons, replacement of neurons with "nests of Nageotte," displacement of nuclei to the periphery of perikarya, and nuclear labeling with TUNEL. Both intraganglionic axons and downstream sural sensory axons developed evidence of axonal degeneration.Local endothelin-induced vasoconstriction of microvessels supplying dorsal root ganglia provides a selective model of ischemia. Diabetic vessels and neurons, exposed to a greater depth and duration of ischemia from endothelin, are especially vulnerable.
机译:在某些周围神经系统疾病中,了解感觉神经元对选择性神经节缺血的反应很重要。感觉背根神经节可能由于其代谢需求而易受缺血性损伤和不可恢复的神经元丢失。在糖尿病中,对与内皮素水平升高相关的局部缺血的敏感性增强可能使神经节特别脆弱。在这项工作中,我们通过应用内皮素-1(ET)产生强烈的局部血管收缩,建立了局部感觉神经节局部缺血的模型。在此模型中,我们比较了链脲佐菌素诱导的糖尿病大鼠和非糖尿病对照组中L5神经节微血管和神经元对ET的相对脆弱性。糖尿病神经节使用微电极氢清除极谱法测得的基线核心神经节血流量(GBF)减少,而ET引起的下降尤为明显。使用激光多普勒血流仪探针进行的连续GBF测量还表明,暴露于ET的糖尿病神经节的作用明显延长。神经周围核和轴突近端段在糖尿病中更容易受到伤害。神经元表现出神经丝标记的丧失,神经元的溶解,用“ Nageotte的巢”替代神经元,核向周核周围的移位以及用TUNEL进行核标记。神经节内轴突和下游腓肠感觉轴突均形成了轴突变性的证据。局部内皮素诱导的供应背根神经节的微血管血管收缩提供了局部缺血模型。糖尿病血管和神经元因内皮素暴露于缺血的深度和持续时间较长,因此特别容易受到伤害。

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