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Characterization of Neurochemically Specific Projections From the Locus Coeruleus With Respect to Somatosensory-Related Barrels

机译:相对于体感相关桶从蓝斑的神经化学特异性投射的表征。

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摘要

Tactile information from the rodent mystacial vibrissae is relayed through the ascending trigeminal somatosensory system. At each level of this pathway, the whiskers are represented by a unique pattern of dense cell aggregates, which in layer IV of cortex are known as “barrels.” Afferent inputs from the dorsal thalamus have been demonstrated repeatedly to correspond rather precisely with this modular organization. However, axonal innervation patterns from other brain regions such as the noradrenergic locus coeruleus are less clear. A previous report has suggested that norepinephrine-containing fibers are concentrated in the center/hollow of the barrel, while other studies have emphasized a more random distribution of monoaminergic projections. To address this issue more directly, individual tissue sections were histochemically processed for cytochrome oxidase in combination with dopamine-β-hydroxylase, the synthesizing enzyme for norepinephrine, or the neuropeptide galanin. These two neuroactive agents were of particular interest because they colocalize in a majority of locus coeruleus neurons and terminals. Our data indicate that discrete concentrations or local arrays of dopamine-β-hydroxylase- or galanin-immunoreactive fibers are not apparent within the cores of individual barrels. As such, the data suggest that cortical inputs from the locus coeruleus are not patterned according to cytoarchitectural landmarks or the neurochemical identity of coeruleocortical efferents. While transmitter-specific actions of norepinephrine and/or galanin may not be derived from the laminar/spatial connections of locus coeruleus axons, the possibility remains that the release of these substances may mediate distinctive events through the localization of different receptor subclasses, or the contact of their terminals onto cells with certain morphological characteristics or ultrastructural components.
机译:来自啮齿类动物Mystacial触须的触觉信息通过上升的三叉戟体感系统传递。在该途径的每个水平上,晶须均由致密的细胞聚集体的独特模式表示,在皮质的第四层中被称为“桶”。反复证明了来自丘脑背侧的传入输入与该模块化组织相当精确地对应。但是,来自其他大脑区域(如去甲肾上腺素能蓝斑)的轴突神经支配模式尚不清楚。先前的报告表明,含有去甲肾上腺素的纤维集中在桶的中心/中空,而其他研究则强调了单胺能投射的更随机分布。为了更直接地解决这个问题,结合多巴胺-β-羟化酶,去甲肾上腺素的合成酶或神经肽甘丙肽对组织切片进行细胞色素氧化酶的组织化学处理。这两种神经活性剂特别受关注,因为它们共定位在大多数蓝斑轨迹神经元和末端。我们的数据表明,在单个枪管的芯内,多巴胺-β-羟化酶或甘丙肽免疫反应性纤维的离散浓度或局部排列不明显。因此,数据表明,根据细胞结构标志物或蓝皮层冒出的神经化学特征,蓝皮蓝位的皮质输入没有被模式化。尽管去甲肾上腺素和/或甘丙肽的递质特异作用可能不是由蓝藻轴突的层/空间联系引起的,但这些物质的释放仍可能通过不同受体亚类的定位或接触来介导独特的事件。将其末端转移到具有某些形态特征或超微结构成分的细胞上。

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