首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Seamless reconstruction of intact adult-born neurons by serial end-block imaging reveals complex axonal guidance and development in the adult hippocampus
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Seamless reconstruction of intact adult-born neurons by serial end-block imaging reveals complex axonal guidance and development in the adult hippocampus

机译:成人连续神经元的连续端块成像无缝重建,揭示了成人海马中复杂的轴突导向和发育

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In the adult mammalian hippocampus, newborn dentate granule cells are continuously integrated into the existing circuitry and contribute to specific brain functions. Little is known about the axonal development of these newborn neurons in the adult brain due to technological challenges that have prohibited large-scale reconstruction of long, thin, and complex axonal processes within the mature nervous system. Here, using a new serial end-block imaging (SEBI) technique, we seamlessly reconstructed axonal and dendritic processes of intact individual retrovirus-labeled newborn granule cells at different developmental stages in the young adult mouse hippocampus. We found that adult-born dentate granule cells exhibit tortuous, yet highly stereotyped, axonal projections to CA3 hippocampal subregions. Primary axonal projections of cohorts of new neurons born around the same time organize into laminar patterns with staggered terminations that stack along the septo-temporal hippocampal axis. Analysis of individual newborn neuron development further defined an initial phase of rapid axonal and dendritic growth within 21 d after newborn neuron birth, followed by minimal growth of primary axonal and whole dendritic processes through the last time point examined at 77 d. Our results suggest that axonal development and targeting is a highly orchestrated, precise process in the adult brain. These findings demonstrate a striking regenerative capacity of the mature CNS to support long-distance growth and guidance of neuronal axons. Our SEBI approach can be broadly applied for analysis of intact, complex neuronal projections in limitless tissue volume.
机译:在成年哺乳动物的海马体中,新生的齿状颗粒细胞不断整合到现有的电路中,并有助于特定的脑功能。由于技术挑战已无法在成熟的神经系统内大规模重建长,细,复杂的轴突过程,因此成人大脑中这些新生神经元的轴突发育还知之甚少。在这里,我们使用新的串行端块成像(SEBI)技术,在年轻成年小鼠海马体中无缝重建了完整的单个逆转录病毒标记的新生颗粒细胞在不同发育阶段的轴突和树突过程。我们发现成年出生的齿状颗粒细胞向CA3海马亚区显示曲折,但高度定型的轴突投影。大约在同一时间出生的新神经元队列的主要轴突投影组织成层状模式,错开的末端沿着隔时海马轴堆叠。对新生儿新生神经元发育的分析进一步定义了新生儿新生神经元出生后21天内轴突和树突状快速生长的初始阶段,随后是直到77 d的最后一个时间点,原发性轴突和整个树突状过程的最小生长。我们的结果表明,在成人大脑中,轴突的发育和靶向是高度精心策划的精确过程。这些发现表明,成熟的中枢神经系统具有惊人的再生能力,可支持远距离生长和神经元轴突的引导。我们的SEBI方法可广泛应用于无限组织体积中完整,复杂的神经元投影的分析。

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