首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Thalamic inputs to striatal interneurons in monkeys: synaptic organization and co-localization of calcium binding proteins.
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Thalamic inputs to striatal interneurons in monkeys: synaptic organization and co-localization of calcium binding proteins.

机译:丘脑向纹状体中间神经元的输入:钙结合蛋白的突触组织和共定位。

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摘要

Recent studies indicate that extrinsic inputs from sensorimotor regions of the cerebral cortex and the centromedian intralaminar thalamic nucleus terminate preferentially upon specific subpopulations of striatal output neurons in monkeys. The objective of the present study was to verify whether this specificity of innervation also characterizes the synaptic interactions between thalamic inputs from the centromedian nucleus and the four major populations of striatal interneurons. This was achieved by double labelling techniques at the electron microscope level, combining the anterograde transport of biotinylated-dextran amine with the immunostaining for specific markers of striatal interneurons (somatostatin, parvalbumin, choline acetyltransferase and calretinin). Injections of biotinylated-dextran amine in the centromedian nucleus led to dense bands of anterograde labelling which, in double immunostained sections, largely overlapped with the four populations of interneurons in the post-commissural region of the putamen. In the electron microscope, biotinylated-dextran amine-containing terminals formed asymmetric axo-dendritic synapses with somatostatin-, parvalbumin-, and choline acetyltransferase-containing elements. However, synapses between anterogradely labelled terminals and calretinin-positive neurons were not found. In sections processed to localize biotinylated-dextran amine and parvalbumin or calretinin, double-labelled terminals (biotinylated-dextran amine/parvalbumin and biotinylated-dextran amine/calretinin), morphologically similar to thalamostriatal boutons, were found in the striatum indicating that calcium binding proteins may be expressed by thalamostriatal neurons. To test this possibility, we combined the retrograde transport of lectin-conjugated horseradish peroxidase from the putamen with parvalbumin and calretinin immunostaining and found that, indeed, most of the retrogradely labelled cells in the centromedian nucleus displayed parvalbumin and calretinin immunoreactivity. Moreover, co-localization studies revealed that calretinin and parvalbumin co-exist in single neurons of the centromedian nucleus. In conclusion, striatal interneurons immunoreactive for somatostatin, parvalbumin and choline acetyltransferase, but not those containing calretinin, receive strong inputs from the centromedian nucleus in monkeys. Moreover, our findings indicate that parvalbumin and calretinin co-exist in individual thalamostriatal neurons. In combination with our previous data, these results suggest that thalamic information may be conveyed to striatal projection neurons both, directly via excitatory synaptic inputs, or indirectly via striatal interneurons. The relative importance of those direct and indirect thalamic influences upon the activity of striatal output neurons remains to be established.
机译:最近的研究表明,来自大脑皮层和着丝粒的层状丘脑丘脑核的感觉运动区域的外在输入优先终止于猴的纹状体输出神经元的特定亚群。本研究的目的是验证神经支配的这种特异性是否也表征了着丝粒体核的丘脑输入与纹状体中间神经元的四个主要种群之间的突触相互作用。这是通过在电子显微镜水平上的双重标记技术实现的,将生物素化的葡聚糖胺的顺行转运与对纹状体中间神经元的特定标记物(生长抑素,小白蛋白,胆碱乙酰转移酶和钙调蛋白)的免疫染色相结合。在着丝粒体核中注射生物素化的右旋糖酐胺会导致顺行标记的密集条带,在双免疫染色切片中,它们与角膜后接合区的四个中间神经元群体大量重叠。在电子显微镜下,含生物素化葡聚糖胺的末端与含生长抑素,小白蛋白和胆碱乙酰转移酶的元素形成不对称的轴突突触。但是,未发现顺行标记的末端和钙网蛋白阳性神经元之间的突触。在经过处理以定位生物素化葡聚糖胺和小白蛋白或钙黄蛋白的切片中,在纹状体中发现了形态上类似于丘脑纹状体boutons的双标记末端(生物素化葡聚糖胺/小白蛋白和生物素化右旋糖胺/ calretinin),表明钙结合蛋白可能由丘脑纹状体神经元表达。为了测试这种可能性,我们结合了从壳核中凝集素结合的辣根过氧化物酶的逆行运输与小白蛋白和钙调蛋白的免疫染色,并发现,着丝粒体核中大多数逆行标记的细胞均表现出小白蛋白和钙调蛋白的免疫反应性。此外,共同定位研究表明钙网蛋白和小白蛋白共存于着丝粒核的单个神经元中。总之,纹状体中间神经元对促生长素抑制素,小白蛋白和胆碱乙酰转移酶具有免疫反应性,但不含有钙网蛋白的免疫反应性则来自猴的着丝粒核。此外,我们的发现表明小白蛋白和降钙素在单个丘脑上皮神经元中共存。与我们以前的数据相结合,这些结果表明,丘脑信息可能直接通过兴奋性突触输入或间接通过纹状体中间神经传递给纹状体投射神经元。这些直接和间接丘脑影响对纹状体输出神经元活动的相对重要性尚待确定。

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