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在大脑发育过程中,血清素水平升高会改变大鼠体感层 IV 神经网络的结构输入-输出连接。

High serotonin levels during brain development alter the structural input-output connectivity of neural networks in the rat somatosensory layer IV.

机构信息

Department of Cognitive Neuroscience, Centre for Neuroscience, Donders Institute for Brain, Cognition, and Behaviour, Radboud University Nijmegen Medical Centre Nijmegen, Netherlands.

出版信息

Front Cell Neurosci. 2013 Jun 7;7:88. doi: 10.3389/fncel.2013.00088. eCollection 2013.

Abstract

Homeostatic regulation of serotonin (5-HT) concentration is critical for "normal" topographical organization and development of thalamocortical (TC) afferent circuits. Down-regulation of the serotonin transporter (SERT) and the consequent impaired reuptake of 5-HT at the synapse, results in a reduced terminal branching of developing TC afferents within the primary somatosensory cortex (S1). Despite the presence of multiple genetic models, the effect of high extracellular 5-HT levels on the structure and function of developing intracortical neural networks is far from being understood. Here, using juvenile SERT knockout (SERT(-/-)) rats we investigated, in vitro, the effect of increased 5-HT levels on the structural organization of (i) the TC projections of the ventroposteromedial thalamic nucleus toward S1, (ii) the general barrel-field pattern, and (iii) the electrophysiological and morphological properties of the excitatory cell population in layer IV of S1 [spiny stellate (SpSt) and pyramidal cells]. Our results confirmed previous findings that high levels of 5-HT during development lead to a reduction of the topographical precision of TCA projections toward the barrel cortex. Also, the barrel pattern was altered but not abolished in SERT(-/-) rats. In layer IV, both excitatory SpSt and pyramidal cells showed a significantly reduced intracolumnar organization of their axonal projections. In addition, the layer IV SpSt cells gave rise to a prominent projection toward the infragranular layer Vb. Our findings point to a structural and functional reorganization of TCAs, as well as early stage intracortical microcircuitry, following the disruption of 5-HT reuptake during critical developmental periods. The increased projection pattern of the layer IV neurons suggests that the intracortical network changes are not limited to the main entry layer IV but may also affect the subsequent stages of the canonical circuits of the barrel cortex.

摘要

5-羟色胺(5-HT)浓度的内稳态调节对于“正常”丘脑皮质(TC)传入回路的拓扑组织和发育至关重要。5-HT 转运体(SERT)的下调以及突触处 5-HT 的再摄取受损,导致初级体感皮层(S1)中 TC 传入纤维的末端分支减少。尽管存在多种遗传模型,但高细胞外 5-HT 水平对发育中的皮质内神经网络的结构和功能的影响仍远未被理解。在这里,我们使用幼年 SERT 敲除(SERT(-/-))大鼠,在体外研究了增加 5-HT 水平对(i)腹后内侧丘脑核向 S1 的 TC 投射的结构组织、(ii)一般桶状场模式以及(iii)S1 层 IV 中兴奋性细胞群体的电生理和形态特性的影响[棘星状(SpSt)和锥体细胞]。我们的结果证实了之前的发现,即在发育过程中高 5-HT 水平会导致 TCA 投射到桶状皮层的拓扑精度降低。此外,SERT(-/-)大鼠的桶状模式发生改变但未被消除。在层 IV 中,兴奋性 SpSt 和锥体细胞的轴突投射的柱内组织明显减少。此外,层 IV SpSt 细胞向颗粒下层 Vb 产生显著的投射。我们的研究结果表明,在关键发育期间破坏 5-HT 再摄取后,TCAs 以及早期皮质内微电路会发生结构和功能重组。层 IV 神经元的增加投射模式表明,皮质内网络变化不仅限于主要输入层 IV,还可能影响桶状皮层的经典回路的后续阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a32f/3675331/91013f73b935/fncel-07-00088-g0001.jpg

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