首页> 美国卫生研究院文献>The Journal of Neuroscience >An experimental analysis of in vivo guidance cues used by axons of spinal interneurons in the chick embryo: evidence for chemotropism and related guidance mechanisms
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An experimental analysis of in vivo guidance cues used by axons of spinal interneurons in the chick embryo: evidence for chemotropism and related guidance mechanisms

机译:雏鸡胚胎中脊髓中间神经元轴突所用体内指导信号的实验分析:趋化性和相关指导机制的证据

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摘要

To clarify axonal guidance mechanisms involved in pathway formation by spinal interneurons, the pattern of axonal outgrowth was examined following three kinds of perturbations: (1) rotation of three segments of the neural tube around the dorsal-ventral axis by 90 degrees or 180 degrees (D-V rotation), (2) rotation of three segments of the neural tube around the rostral-caudal axis (R-C rotation), and (3) transplantation of brainstem into thoracic spinal segments (BS transplantation). Following D-V rotation, it was observed that circumferential axons near the junction between rotated graft (RG) and host cord changed their course so as to project toward the ectopic floor plate. This supports the notion that the floor plate exerts a chemotropic-like effect on the directional projection of circumferential axons. The longitudinal fibers in the ventral funiculus (VF) were able to grow through the transplant junction when the VF was well apposed to the VF of the RG. However, in most cases, the longitudinal fibers in the VF that were not apposed to the VF of the RG made a medial turn at the junction. After turning, some of them made a U-turn into the contralateral VF, whereas others grew circumferentially around the junction zone, then exited the spinal cord; still others directly entered the RG. The majority of fibers that entered the RG were located in the VF, though a small number of such fibers were also located in both the lateral and dorsal funiculus (LF and DF, respectively). The fibers that entered the LF shifted ventrally, whereas the fibers in the DF remained within the DF. These results suggest that there may be some matching mechanism between specific fibers and the funiculus through which the fibers normally project. Moreover, there may be a barrier between the LF and the DF that prevents the fibers in the DF from shifting ventrally. In R-C rotation experiments, the projection of axons of dorsolateral border cells (DLB- cells), which are known to give rise almost exclusively to commissural ascending axons, was examined. Following the injection of HRP into the rostral junctional region, retrogradely labeled DLB-cells were observed in the rotated segments only on the side contralateral to the injection. Labeled DLB-cells were also observed in the segments caudal to the rotated segments. These results suggest that putative rostrocaudal directional cues that guide the axons of DLB-cells may arise from outside of the segments in which the decision to turn is made.
机译:为了阐明轴突神经元在通路形成中所涉及的轴突引导机制,研究了以下三种扰动对轴突生长的方式:(1)将神经管的三个节段绕背腹轴旋转90度或180度( DV旋转),(2)将神经管的三个节段绕头尾尾轴旋转(RC旋转)和(3)将脑干移植到胸椎段(BS移植)。在D-V旋转后,观察到旋转的移植物(RG)和宿主索之间的交界处的周围轴突改变了其走向,从而向异位底板突出。这支持了这样的观念,即底板在周向轴突的定向投影上产生类似化学趋化的作用。当VF与RG的VF紧密贴合时,腹侧小肌(VF)中的纵向纤维能够通过移植结生长。但是,在大多数情况下,VF中未与RG VF并排的纵向纤维在连接处向内弯曲。翻身后,其中一些掉头转向对侧VF,而另一些在接合区周围沿圆周生长,然后离开脊髓。还有其他人直接进入了RG。进入RG的大部分纤维都位于VF中,尽管少数此类纤维也位于侧部和背侧真菌中(分别为LF和DF)。进入LF的纤维发生腹侧移位,而DF中的纤维保留在DF内。这些结果表明,特定纤维和纤维正常投射通过的真菌之间可能存在某种匹配机制。此外,在LF和DF之间可能有一个屏障,以防止DF中的纤维发生腹侧移位。在R-C旋转实验中,检查了已知几乎仅引起连合上升轴突的背外侧边界细胞(DLB-cell)轴突的投影。在将HRP注射到鼻端连接区域后,仅在注射对侧的旋转节段中观察到了逆行标记的DLB细胞。在旋转节段尾部的节段中也观察到标记的DLB细胞。这些结果表明,引导DLB细胞轴突的假定的尾脑尾状定向线索可能来自做出转向决定的区段之外。

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