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首页> 外文期刊>Brain research >Zinc-enriched GABAergic terminals in mouse spinal cord.
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Zinc-enriched GABAergic terminals in mouse spinal cord.

机译:小鼠脊髓中富锌的GABA能级末端。

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摘要

Electrophysiological experiments have shown that zinc ions modulate glutamate and GABA receptors in brain slices. All the zinc-enriched neuronal pathways in the brain analyzed up until now have been found to be glutaminergic. Many years ago, zinc-enriched terminals with flat vesicles and symmetric synapses were found to be present in rat spinal cord by Henrik Daa Schroder, and recently these findings have been supported by immunohistochemical and electron microscopical data in lamprey, mouse and rat. In the present study we expanded these observations by revealing a colocalization of zinc ions, zinc transporter-3 (ZnT3) and glutamic acid decarboxylase (GAD) in synaptic vesicles of zinc-enriched terminals throughout the mouse spinal cord. Confocal analysis of ZnT3 and GAD immunofluorescence was used at light microscopical levels, and a combination of zinc selenium autometallography and GAD immunocytochemistry at electron microscopic levels. Zinc-enriched/GABAergic terminals were observed in all laminae of the spinal gray matter, but most densely populated were laminae I and III in the dorsal horn. In the lateral and ventral funiculi of the white matter, rows of inhibitory zinc-enriched boutons were seen radiating from the gray matter. Ultrastructurally, colocalization of zinc ions and GAD immunoreactivity was seen in a pool of presynaptic terminals in the above locations. Some zinc-enriched terminals were not GAD-positive and some GAD-positive terminals were void of zinc ions. The majority of the zinc-enriched, not GABAergic terminals could be classified as excitatory based on their morphology, i.e. round clear vesicles and symmetric synapses. We conclude that a majority of the spinal cord zinc-enriched terminals are GABAergic. The zinc-enriched terminals with excitatory morphology are most likely glutaminergic, a few have an inhibitory morphology but are not GABAergic. These are most likely glycinergic.
机译:电生理实验表明,锌离子调节大脑切片中的谷氨酸和GABA受体。到目前为止,大脑中所有富含锌的神经元通路都被分析为谷氨酰胺能。许多年前,亨里克·达·施罗德(Henrik Daa Schroder)在大鼠脊髓中发现了富含锌的带有扁平囊泡和对称突触的末端,最近这些发现得到了七lamp鳗,小鼠和大鼠的免疫组织化学和电子显微镜数据的支持。在本研究中,我们通过揭示锌离子,锌转运蛋白3(ZnT3)和谷氨酸脱羧酶(GAD)在整个小鼠脊髓的富锌末端突触小泡中的共定位,扩展了这些观察结果。 ZnT3和GAD免疫荧光的共聚焦分析在光学显微镜下进行,锌硒自金相分析和GAD免疫细胞化学在电子显微镜下进行了组合。在脊髓灰质的所有薄片中均观察到了富锌/ GABA的末端,但在后角中最密集的是薄片I和III。在白质的外侧和腹侧功能区中,看到一排排抑制性的富含锌的布顿从灰质中放射出来。超微结构,在上述位置的突触前末端池中发现了锌离子的共定位和GAD免疫反应性。一些富锌末端不是GAD阳性的,而某些GAD阳性末端没有锌离子。大部分富锌的而不是GABA能的终末可以根据其形态(即圆形的透明囊泡和对称突触)归类为兴奋性的。我们得出的结论是,大多数脊髓锌富集的末端都是GABA能的。具有兴奋性形态的富锌末端最可能是谷氨酰胺能的,少数具有抑制性形态,但不是GABA能的。这些很可能是甘氨酸能的。

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