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Dynamic behaviors of growth cones extending in the corpus callosum of living cortical brain slices observed with video microscopy

机译:视频显微镜观察到的生长锥在活的皮层大脑切片的call体中延伸的动态行为

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摘要

During development, axons of the mammalian corpus callosum must navigate across the midline to establish connections with corresponding targets in the contralateral cerebral cortex. To gain insight into how growth cones of callosal axons respond to putative guidance cues along this CNS pathway, we have used time-lapse video microscopy to observe dynamic behaviors of individual callosal growth cones extending in living brain slices from neonatal hamster sensorimotor cortex. Crystals of the lipophilic dye 1,1′-dioctadecyl–3,3,3′,3′- tetramethylindocarbocyanine perchlorate (Dil) were inserted into the cortex in vivo to label small populations of callosal axons and their growth cones. Subsequently, 400 microns brain slices that included the injection site, the corpus callosum, and the target cortex were placed in culture and viewed under low-light-level conditions with a silicon- intensified target (SIT) camera. Time-lapse video observations revealed striking differences in growth cone behaviors in different regions of the callosal pathway. In the tract, which is defined as the region of the callosal pathway from the injection site to the corresponding target cortex, growth cones advanced rapidly, displaying continual lamellipodial shape changes and filopodial exploration. Forward advance was sometimes interrupted by brief pauses or retraction. Growth cones in the target cortex had almost uniform compact shapes that were consistently smaller than those in the tract. In cortex, axons adhered to straight radial trajectories and their growth cones extended at only half the speed of those in the tract. Growth cones in subtarget regions of the callosum beneath cortical targets displayed complex behaviors characterized by long pauses, extension of transitory branches, and repeated cycles of collapse, withdrawal, and resurgence. Video observations suggested that extension of axons into cortical targets could occur by interstitial branching from callosal axons rather than by turning behaviors of the primary growth cones. These results suggest the existence of guidance cues distinct for each of these callosal regions that elicit characteristic growth cone behaviors.
机译:在发育过程中,哺乳动物call体的轴突必须越过中线才能与对侧大脑皮层中的相应靶标建立联系。为了深入了解call轴突的生长锥如何响应此CNS途径的假定指导线索,我们使用了延时视频显微镜观察了从新生儿仓鼠感觉运动皮层延伸到活脑切片中的单个call生长锥的动态行为。将亲脂性染料1,1'-二十八烷基–3,3,3',3'-四甲基吲哚羰花青高氯酸盐(Dil)的晶体体内插入体内,以标记少量的small轴突及其生长锥。随后,将包含注射部位,call体和目标皮层的400微米脑切片置于培养物中,并在弱光条件下用硅增强靶(SIT)相机观察。延时视频观察显示出在愈伤组织途径的不同区域中生长锥行为的显着差异。在定义为从注射部位到相应靶皮层的call通路的区域中,生长锥迅速前进,表现出连续的片状脂质体形状变化和后足探索。向前的前进有时会因短暂的停顿或后退而中断。目标皮层中的生长锥具有几乎均匀的致密形状,该形状始终小于管道中的形状。在皮层中,轴突附着在笔直的径向轨迹上,其生长锥仅以管道中的速度的一半延伸。皮质靶标下方的call的亚靶标区域中的生长锥显示出复杂的行为,其特征在于长时间的停顿,瞬时分支的延伸以及崩溃,退缩和复活的重复循环。视频观察表明,轴突向皮层标靶的扩展可以通过从call轴突的间隙分支来实现,而不是通过改变主要生长锥的行为来实现。这些结果表明,对于每个这些引起特征性生长锥行为的愈伤组织区域而言,存在不同的引导提示。

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