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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dendritic BDNF synthesis is required for late-phase spine maturation and recovery of cortical responses following sensory deprivation
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Dendritic BDNF synthesis is required for late-phase spine maturation and recovery of cortical responses following sensory deprivation

机译:后期脊柱成熟和感觉剥夺后皮质反应的恢复需要树突状BDNF合成。

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Sensory experience in early postnatal life shapes neuronal connections in the brain. Here we report that the local synthesis of brainderived neurotrophic factor (BDNF) in dendrites plays an important role in this process. We found that dendritic spines of layer 2/3 pyramidal neurons of the visual cortex in mutant mice lacking dendritic Bdnf mRNA and thus local BDNF synthesis were normal at 3 weeks of age, but thinner, longer, and more closely spaced (morphological features of immaturity) at 4 months of age than in wild-type (WT) littermates. Layer 2/3 of the visual cortex in these mutant animals also had fewer GABAergic presynaptic terminals at both ages. The overall size and shape of dendritic arbors were, however, similar in mutant andWTmice at both ages. By using optical imaging of intrinsic signals and single-unit recordings, we found that mutant animals failed to recover cortical responsiveness following monocular deprivation (MD) during the critical period, although they displayed normally the competitive loss of responsiveness to an eye briefly deprived of vision. Furthermore,MDstill induced a loss of responsiveness to the closed eye in adult mutant mice, but not in adultWTmice. These results indicate that dendritic BDNF synthesis is required for spine pruning, late-phase spine maturation, and recovery of cortical responsiveness following sensory deprivation. They also suggest that maturation of dendritic spines is required for the maintenance of cortical responsiveness following sensory deprivation in adulthood.
机译:产后早期的感官体验塑造了大脑中的神经元连接。在这里,我们报告树突状脑源性神经营养因子(BDNF)的本地合成在此过程中起重要作用。我们发现在缺乏树突状Bdnf mRNA的突变小鼠中,视觉皮层的2/3层锥体神经元的树突状棘突在3周龄时是正常的,但更薄,更长,且间隔更紧密(不成熟的形态特征) )在4个月大时比野生型(WT)同窝仔中的多。在这些突变动物中,视觉皮层的2/3层在两个年龄段都具有较少的GABA能突触前末端。但是,在两个年龄的突变体和野生型小鼠中,树突状乔木的总体大小和形状都相似。通过使用固有信号的光学成像和单单位记录,我们发现突变动物在关键时期未能在单眼剥夺(MD)后恢复皮质反应性,尽管它们通常表现出对短暂失去视力的眼睛的竞争性反应性丧失。此外,MDstill在成年突变小鼠中引起对闭眼的反应性丧失,而在成年WT小鼠中则没有。这些结果表明,树突状BDNF合成对于脊柱修剪,晚期脊柱成熟以及感觉丧失后皮质反应性的恢复是必需的。他们还建议,树突棘的成熟是成年后感觉丧失后维持皮层反应性所必需的。

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