Development of a glial network in the olfactory nerve: role of calcium and neuronal activity.

Neuron glia biology Pub Date : 2010-11-01 Epub Date: 2011-09-21 DOI:10.1017/S1740925X11000081
Mounir A Koussa, Leslie P Tolbert, Lynne A Oland
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引用次数: 7

Abstract

In adult olfactory nerves of mammals and moths, a network of glial cells ensheathes small bundles of olfactory receptor axons. In the developing antennal nerve (AN) of the moth Manduca sexta, the axons of olfactory receptor neurons (ORNs) migrate from the olfactory sensory epithelium toward the antennal lobe. Here we explore developmental interactions between ORN axons and AN glial cells. During early stages in AN glial-cell migration, glial cells are highly dye coupled, dividing glia are readily found in the nerve and AN glial cells label strongly for glutamine synthetase. By the end of this period, dye-coupling is rare, glial proliferation has ceased, glutamine synthetase labeling is absent, and glial processes have begun to extend to enwrap bundles of axons, a process that continues throughout the remainder of metamorphic development. Whole-cell and perforated-patch recordings in vivo from AN glia at different stages of network formation revealed two potassium currents and an R-like calcium current. Chronic in vivo exposure to the R-type channel blocker SNX-482 halted or greatly reduced AN glial migration. Chronically blocking spontaneous Na-dependent activity by injection of tetrodotoxin reduced the glial calcium current implicating an activity-dependent interaction between ORNs and glial cells in the development of glial calcium currents.

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嗅觉神经胶质网络的发育:钙和神经元活动的作用。
在哺乳动物和飞蛾的成年嗅觉神经中,神经胶质细胞网络包裹着小束的嗅觉受体轴突。在发育中的天蛾触角神经(AN)中,嗅觉受体神经元(orn)的轴突从嗅觉感觉上皮向触角叶迁移。在这里,我们探索ORN轴突和AN胶质细胞之间的发育相互作用。在AN神经胶质细胞迁移的早期阶段,神经胶质细胞是高度染料偶联的,在神经中很容易发现分裂的神经胶质细胞,并且AN神经胶质细胞强烈标记谷氨酰胺合成酶。在这一时期结束时,染料偶联是罕见的,胶质细胞增殖已经停止,谷氨酰胺合成酶标记缺失,胶质细胞过程已经开始延伸到包裹轴突束,这一过程持续到变质发育的其余部分。AN神经胶质细胞在不同网络形成阶段的全细胞和穿孔贴片记录显示了两个钾电流和一个r样钙电流。体内慢性暴露于r型通道阻滞剂SNX-482可停止或大大减少AN神经胶质的迁移。注射河豚毒素长期阻断自发的na依赖活性可降低胶质细胞钙电流,这表明在胶质细胞钙电流的形成过程中,orn与胶质细胞之间存在活性依赖的相互作用。
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Neuron glia biology
Neuron glia biology 医学-神经科学
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