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首页> 外文期刊>The Cerebellum >Synaptic organization of the mouse cerebellar cortex in organotypic slice cultures
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Synaptic organization of the mouse cerebellar cortex in organotypic slice cultures

机译:小鼠小脑皮质在器官型切片培养中的突触组织

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摘要

The cellular and synaptic organization of new born mouse cerebellum maintained in organotypic slice cultures was investigated using immunohistochemical and patch-clamp recording approaches. The histological organization of the cultures shared many features with that observed in situ. Purkinje cells were generally arranged in a monolayer surrounded by a molecular-like neuropil made of Purkinje cell dendritic arborizations. Purkinje cell axons ran between clusters of small round cells identified as granule cells by Kv3.1b potassium channel immunolabelling. The terminal varicosities of the Purkinje cells axons enwrapped presumptive neurons of the cerebellar nuclei whereas their recurrent collaterals were in contact with Purkinje cells and other neurons. Granule cell axons established contacts with Purkinje cell somata and dendrites. Parvalbumin and glutamine acid decarboxylase (GAD) immunohistochemistry revealed the presence of presumptive interneurons throughout the culture. The endings of granule cell axons were observed to be in contact with these interneurons. Similarly, interneurons endings were seen close to Purkinje cells and granule cells. Whole cell recordings from Purkinje cell somata showed AMPA receptor-mediated spontaneous excitatory post-synaptic currents (sEPSCs) and GABAA receptor-mediated spontaneous inhibitory post-synaptic currents (sIPSCs). Similar events were recorded from granule cell somata except that in this neuronal type EPSPs have both a NMDA component and an AMPA component. In addition, pharmacological experiments demonstrated a GABAergic control of granule cell activity and a glutamatergic control of GABAergic neurons by granule cells. This study shows that a functional neuronal network is established in such organotypic cultures even in the absence of the two normal excitatory afferents, the mossy fibers and the climbing fibers.
机译:使用免疫组织化学和膜片钳记录方法研究了维持在器官型切片培养物中的新生小鼠小脑的细胞和突触组织。文化的组织学组织与就地观察到的组织具有许多特征。浦肯野细胞通常排列在单层中,周围由由浦肯野细胞树突状树突构成的分子样神经纤维包围。浦肯野细胞轴突在通过Kv3.1b钾通道免疫标记鉴定为颗粒细胞的小圆形细胞簇之间运行。浦肯野细胞轴突的终末静脉曲张包裹着小脑核的推定神经元,而它们的复发侧支则与浦肯野细胞和其他神经元接触。颗粒细胞轴突与浦肯野细胞的体细胞和树突建立了联系。小白蛋白和谷氨酰胺酸脱羧酶(GAD)免疫组化显示整个培养物中均存在推测性中间神经元。观察到颗粒细胞轴突的末端与这些中间神经元接触。同样,在靠近浦肯野细胞和颗粒细胞的地方看到中间神经元末端。浦肯野细胞体的全细胞记录显示AMPA受体介导的突触后自发电流(sEPSCs)和GABAA 受体介导的突触后自发抑制电流(sIPSCs)。从颗粒细胞的躯体细胞中记录了类似的事件,除了在这种神经元类型中,EPSP同时具有NMDA成分和AMPA成分。另外,药理实验证明了颗粒细胞的GABA能控制和颗粒细胞对GABA能神经元的谷氨酸控制。这项研究表明,即使在没有两个正常的兴奋传入,生苔纤维和攀登纤维的情况下,在这种器官型培养物中也建立了功能性神经元网络。

著录项

  • 来源
    《The Cerebellum》 |2006年第4期|243-256|共14页
  • 作者单位

    UMR 7168 LC2 CNRS/ULP Department of Neurotransmission et S’ecr’etion Neuroendocrine Centre de Neurochimie Institut des Neurosciences Cellulaires et Int’egratives 5 rue Blaise Pascal F-67084 Strasbourg Cedex France;

    UMR 7168 LC2 CNRS/ULP Department of Neurotransmission et S’ecr’etion Neuroendocrine Centre de Neurochimie Institut des Neurosciences Cellulaires et Int’egratives 5 rue Blaise Pascal F-67084 Strasbourg Cedex France;

    UMR 7168 LC2 CNRS/ULP Department of Neurotransmission et S’ecr’etion Neuroendocrine Centre de Neurochimie Institut des Neurosciences Cellulaires et Int’egratives 5 rue Blaise Pascal F-67084 Strasbourg Cedex France;

    UMR 7168 LC2 CNRS/ULP Department of Neurotransmission et S’ecr’etion Neuroendocrine Centre de Neurochimie Institut des Neurosciences Cellulaires et Int’egratives 5 rue Blaise Pascal F-67084 Strasbourg Cedex France;

    UMR 7168 LC2 CNRS/ULP Department of Neurotransmission et S’ecr’etion Neuroendocrine Centre de Neurochimie Institut des Neurosciences Cellulaires et Int’egratives 5 rue Blaise Pascal F-67084 Strasbourg Cedex France;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Cerebellum; neuronal network; organotypic cultures; excitatory synapses; inhibitory synapses;

    机译:小脑;神经网络;器官型培养;兴奋性突触;抑制性突触;

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