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Pathway-Specific Utilization of Synaptic Zinc in the Macaque Ventral Visual Cortical Areas

机译:猕猴腹侧视觉皮层区域中突触锌的途径特定利用。

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摘要

Synaptic zinc is an activity-related neuromodulator, enriched in hippocampal mossy fibers and a subset of glutamatergic cortical projections, exclusive of thalamocortical or corticothalamic. Some degree of pathway specificity in the utilization of synaptic zinc has been reported in rodents. Here, we use focal injections of the retrograde tracer sodium selenite to identify zinc-positive (Zn+) projection neurons in the monkey ventral visual pathway. After injections in V1, V4, and TEO areas, neurons were detected preferentially in several feedback pathways but, unusually, were restricted to deeper layers without involvement of layers 2 or 3. Temporal injections resulted in more extensive labeling of both feedback and intratemporal association pathways. The Zn+ neurons had a broader laminar distribution, similar to results from standard retrograde tracers. After anterograde tracer injection in area posterior TE, electron microscopic analysis substantiated that a proportion of feedback synapses was colabeled with zinc. Nearby injections, Zn+ intrinsic neurons concentrated in layer 2, but in temporal areas were also abundant in layer 6. These results indicate considerable pathway and laminar specificity as to which cortical neurons use synaptic zinc. Given the hypothesized roles of synaptic zinc, this is likely to result in distinct synaptic properties, possibly including differential synaptic plasticity within or across projections.
机译:突触锌是一种与活动有关的神经调节剂,富含海马苔藓纤维和一部分谷氨酸能皮质投射物,不包括丘脑皮质或皮质丘脑。在啮齿动物中已经报道了利用突触锌的某种程度的途径特异性。在这里,我们使用逆行示踪剂亚硒酸钠的局部注射来识别猴子腹侧视觉通路中的锌阳性(Zn +)投射神经元。在V1,V4和TEO区域注射后,优先在多个反馈途径中检测到神经元,但通常不限于第2层或第3层,而是局限于更深的层。时间注射导致反馈和时间内关联途径的标记更广泛。 Zn +神经元具有较宽的层状分布,类似于标准逆行示踪剂的结果。在TE后方区域注射顺行示踪剂后,电子显微镜分析证实一部分反馈突触与锌共标记。在附近注射时,Zn +内在神经元集中在第2层,但在颞区中第6层也很丰富。这些结果表明,皮质神经元使用突触锌的途径和层层特异性很高。考虑到突触锌的假定作用,这很可能导致突触特性不同,可能包括突起内或突起之间不同的突触可塑性。

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