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Selective anterograde tracing of the individual serotonergic and nonserotonergic components of the dorsal raphe nucleus projection to the vestibular nuclei

机译:背叶核投射到前庭核的单个血清素和非5-羟色胺成分的选择性顺行性示踪

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摘要

It is well known that the dorsal raphe nucleus (DRN) sends serotonergic and nonserotonergic projections to target regions in the brain stem and forebrain, including the vestibular nuclei. Although retrograde tracing studies have reported consistently that there are differences in the relative innervation of different target regions by serotonergic and nonserotonergic DRN neurons, the relative termination patterns of these two projections have not been compared using anterograde tracing methods. The object of the present investigation was to trace anterogradely the individual serotonergic and nonserotonergic components of the projection from DRN to the vestibular nuclei in rats. To trace nonserotonergic DRN projections, animals were pretreated with the serotonergic neurotoxin 5,7-dihydroxytryptamine (5,7-DHT), and then, after 7 days, the anterograde tracer biotinylated dextran amine (BDA) was iontophoretically injected into the DRN. In animals treated with 5,7-DHT, nonserotonergic BDA-labeled fibers were found to descend exclusively within the ventricular plexus and to terminate predominantly within the periventricular aspect of the vestibular nuclei. Serotonergic DRN projections were traced by injecting 5,7-DHT directly into DRN, and amino–cupric–silver staining was used to visualize the resulting pattern of terminal degeneration. Eighteen hours after microinjection of 5,7-DHT into the DRN, fine-caliber degenerating serotonergic terminals were found within the region of the medial vestibular nucleus (MVN) that borders the fourth ventricle, and a mixture of fine- and heavier-caliber degenerating serotonergic terminals were located further laterally within the vestibular nuclear complex. These findings indicate that fine-caliber projections from serotonergic and nonserotonergic DRN neurons primarily innervate the periventricular regions of MVN, whereas heavier-caliber projections from serotonergic DRN neurons innervate terminal fields located in more lateral regions of the vestibular nuclei. Thus, serotonergic and nonserotonergic DRN axons target distinct but partially overlapping terminal fields within the vestibular nuclear complex, raising the possibility that these two DRN projection systems are organized in a manner that permits regionally-specialized regulation of processing within the vestibular nuclei.
机译:众所周知,背缝核(DRN)将血清素能和非血清素能投射到脑干和前脑的目标区域,包括前庭核。尽管逆行追踪研究一致报告说,血清素能和非5-羟色胺能DRN神经元在不同靶区域的相对神经支配存在差异,但尚未使用顺行追踪方法比较这两种预测的相对终止模式。本研究的目的是顺从地追踪大鼠中从DRN到前庭核的投射的各个血清素和非5-羟色胺成分。为了追踪非5-羟色胺能的DRN预测,将动物用5-羟色胺能神经毒素5,7-二羟基色胺(5,7-DHT)进行预处理,然后在7天后通过离子电渗法将顺行示踪生物素化的葡聚糖胺(BDA)注入DRN。在用5,7-DHT处理的动物中,发现非血清素能的BDA标记的纤维仅在心室神经丛内下降,并主要在前庭核的脑室周围终止。通过将5,7-DHT直接注入DRN来追踪血清素能DRN的投射,并使用氨基-铜-银染色来观察最终变性的模式。将5,7-DHT微量注入DRN后18小时,在与第四脑室接壤的内侧前庭核(MVN)区域内发现了细口径退化的血清素能终端,并且细口径和重口径的混合物退化了血清素能终末位于前庭核复合体的更外侧。这些发现表明,来自血清素能和非血清素能DRN神经元的细口径投影主要支配MVN的脑室周围区域,而来自血清素能DRN神经元的重口径支配的神经支配位于前庭核更外侧区域的末端区域。因此,血清素能和非5-羟色胺能的DRN轴突靶向前庭核复合物中不同但部分重叠的末端区域,从而增加了这两种DRN投影系统的组织方式,以允许对前庭核内的加工进行区域性调节。

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