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Extra-neurohypophyseal axonal projections from individual vasopressin-containing magnocellular neurons in rat hypothalamus

机译:大鼠下丘脑中单个含加压素的大细胞神经元的神经下垂体轴突投射

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摘要

Conventional neuroanatomical, immunohistochemical techniques, and electrophysiological recording, as well as in vitro labeling methods may fail to detect long range extra-neurohypophyseal-projecting axons from vasopressin (AVP)-containing magnocellular neurons (magnocells) in the hypothalamic paraventricular nucleus (PVN). Here, we used in vivo extracellular recording, juxtacellular labeling, post-hoc anatomo-immunohistochemical analysis and camera lucida reconstruction to address this question. We demonstrate that all well-labeled AVP immunopositive neurons inside the PVN possess main axons joining the tract of Greving and multi-axon-like processes, as well as axonal collaterals branching very near to the somata, which project to extra-neurohypophyseal regions. The detected regions in this study include the medial and lateral preoptical area, suprachiasmatic nucleus (SCN), lateral habenula (LHb), medial and central amygdala and the conducting systems, such as stria medullaris, the fornix and the internal capsule. Expression of vesicular glutamate transporter 2 was observed in axon-collaterals. These results, in congruency with several previous reports in the literature, provided unequivocal evidence that AVP magnocells have an uncommon feature of possessing multiple axon-like processes emanating from somata or proximal dendrites. Furthermore, the long-range non-neurohypophyseal projections are more common than an “occasional” phenomenon as previously thought.
机译:常规的神经解剖学,免疫组织化学技术和电生理记录以及体外标记方法可能无法检测到下丘脑室旁核(PVN)中含有血管加压素(AVP)的大细胞神经元(magnocells)的远距神经下垂体投射轴突。在这里,我们使用了体内细胞外记录,并列细胞标记,事后解剖免疫组织化学分析和相机lucida重建来解决这个问题。我们证明,PVN内所有标记良好的AVP免疫阳性神经元都具有连接Greving和多轴突样过程的主要轴突,以及非常靠近躯体分支的轴突侧支,这些突突投射到了神经下垂体区域。在这项研究中,检测到的区域包括内侧和外侧的光学前区,上眼睑上核(SCN),外侧ha(LHb),内侧和中央杏仁核以及传导系统,例如纹状体,穹ni和内囊。在轴突侧支中观察到水泡谷氨酸转运蛋白2的表达。这些结果与文献中的先前报道相一致,提供了明确的证据,即AVP巨细胞具有一个罕见的特征,即具有源自躯干或近端树突的多个轴突样突突。此外,远距离非神经下垂体投射比以前认为的“偶然”现象更为普遍。

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