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新生期胡须修剪改变成年大鼠的行为、神经元结构和神经活动。

Neonatal whisker clipping alters behavior, neuronal structure and neural activity in adult rats.

机构信息

Graduate Institute of Zoology, National Taiwan University, Taipei, Taiwan.

出版信息

Behav Brain Res. 2013 Feb 1;238:124-33. doi: 10.1016/j.bbr.2012.10.022. Epub 2012 Oct 23.

DOI:10.1016/j.bbr.2012.10.022
PMID:23098795
Abstract

Early experience plays critical roles during the development of sensory systems. For example, neonatal surgical manipulations of the whiskers in rodents lead to altered neural activity and behaviors later in life. However, while surgical procedures damage the sensory pathway; it is hard to examine the impact of whisker deprivation on adult animals. To address this issue, we performed a neonatal whisker clipping (WC0-3) paradigm, a non-invasive procedure, from the day of birth (P0) to postnatal day (P) 3, and examined behavioral performances in their adult age. With fully regrown whiskers, the WC0-3 rats exhibited shorter crossable distance than controls in a gap-crossing task, suggesting a defect in their whisker-specific tactile function. In their somatosensory cortex, the layer IV spiny stellate neurons had reduced dendritic complexity and spine density. After exploration in a novel environment, the expression of an activity-dependent immediate early gene, c-fos, increased dramatically in the somatosensory cortex. However, in WC0-3 rats, the number of c-Fos positive cells was less than those in control rats, indicating a fault in transducing sensory-related neural activity between cortical layers in WC0-3 rats. Together, our results demonstrate the roles of early tactile experience on the establishment of layer-specific excitatory connection in the barrel cortex. Early sensory insufficiency would leave long-lasting functional deficits in the sensory system.

摘要

早期经验在感觉系统的发育中起着至关重要的作用。例如,新生期对啮齿动物胡须的外科操作会导致其后期的神经活动和行为发生改变。然而,虽然外科手术会损伤感觉通路,但很难研究胡须缺失对成年动物的影响。为了解决这个问题,我们采用了一种非侵入性的新生期胡须修剪(WC0-3)方案,从出生当天(P0)到出生后第 3 天(P3)进行,然后在成年期检查其行为表现。在完全再生的胡须下,WC0-3 大鼠在穿越任务中比对照组的可穿越距离更短,这表明它们的胡须特定触觉功能存在缺陷。在其体感皮层中,IV 层棘状星状神经元的树突复杂性和棘突密度降低。在新环境中探索后,体感皮层中活性依赖性早期基因 c-fos 的表达显著增加。然而,在 WC0-3 大鼠中,c-Fos 阳性细胞的数量少于对照组大鼠,表明在 WC0-3 大鼠中,皮质层之间的感觉相关神经活动的转换存在故障。总之,我们的结果表明,早期触觉经验在桶状皮层中建立层特异性兴奋性连接方面发挥着重要作用。早期感觉不足会导致感觉系统长期存在功能缺陷。

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