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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A critical period for activity-dependent synaptic development during olfactory bulb adult neurogenesis.
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A critical period for activity-dependent synaptic development during olfactory bulb adult neurogenesis.

机译:嗅球成年神经发生过程中活动依赖的突触发展的关键时期。

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New neurons integrate in large numbers into the mature olfactory bulb circuit throughout life. The factors controlling the synaptic development of adult-born neurons and their connectivity remain essentially unknown. We examined the role of activity-dependent mechanisms in the synaptic development of adult-born neurons by genetic labeling of synapses while manipulating sensory input or cell-intrinsic excitability. Sensory deprivation induced marked changes in the density of input and output synapses during the period when new neurons develop most of their synapses. In contrast, when sensory deprivation started after synaptic formation was complete, input synapses increased in one domain without detectable changes in the other dendritic domains. We then investigated the effects of genetically raising the intrinsic excitability of new neurons on their synaptic development by delivering a voltage-gated sodium channel that triggers long depolarizations. Surprisingly, genetically increasing excitability did not affect synaptic development but rescued the changes in glutamatergic input synapses caused by sensory deprivation. These experiments show that, during adult neurogenesis in the olfactory bulb, synaptic plasticity is primarily restricted to an early period during the maturation of new neurons when they are still forming synapses. The addition of cells endowed with such an initial short-lived flexibility and long-term stability may enable the processing of information by the olfactory bulb to be both versatile and reliable in the face of changing behavioral demands.
机译:新的神经元终生大量整合到成熟的嗅球回路中。控制成年出生的神经元的突触发育及其连接性的因素基本上仍然未知。我们通过操纵感官输入或细胞内在兴奋性的突触的遗传标记,检查了成年神经元的突触发展中活动依赖机制的作用。当新的神经元发展出大部分突触时,感觉剥夺会导致输入突触和输出突触的密度发生明显变化。相反,当在突触形成完成后开始感觉丧失时,输入突触在一个域中增加,而在其他树突域中则没有可检测到的变化。然后,我们通过提供电压门控性钠通道触发长时间去极化,研究了遗传上提高新神经元内在兴奋性对其突触发育的影响。出人意料的是,遗传上增加的兴奋性并不影响突触的发展,但挽救了由于感觉丧失引起的谷氨酸能输入突触的变化。这些实验表明,在嗅球的成年神经发生过程中,新神经元仍在形成突触时,突触可塑性主要局限于新神经元成熟的早期。面对这样的行为需求,添加具有这种初始的短期灵活性和长期稳定性的细胞可以使嗅球对信息的处理既通用又可靠。

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