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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Functional thalamocortical synapse reorganization from subplate to layer IV during postnatal development in the reeler-like mutant rat (shaking rat Kawasaki).
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Functional thalamocortical synapse reorganization from subplate to layer IV during postnatal development in the reeler-like mutant rat (shaking rat Kawasaki).

机译:卷筒状突变大鼠(摇动的川崎)在产后发育过程中功能性丘脑突触从亚板重组到第IV层。

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Transient synapse formation between thalamic axons and subplate neurons is thought to be important in thalamocortical targeting. Shaking rat Kawasaki (SRK), having reversed cortical layering similarly observed in reeler mouse, provides an interesting model system to test this idea. The spatial and temporal pattern of excitation was investigated using optical recording with voltage-sensitive dyes in thalamocortical slice preparations from SRK. At postnatal day 0 (P0), a strong optical response was elicited within the superplate of the SRK in the cell layer corresponding to subplate in wild-type (WT) rats. By P3, this response rapidly descended into deep cortical layers comprised of layer IV cells, as identified with 5-bromo-2'-deoxyuridine birthdating at embryonic day 17. During the first 3 postnatal days, both the subplate and cortical plate responses were present, but by P7, the subplate response was abolished. Tracing individual axons in SRK revealed that at P0-P3, a large number of thalamocortical axons reach the superplate, and by P7-P10, the ascending axons develop side branches into the lower or middle cortical layers. Synaptic currents were also demonstrated in WT subplate cells and in SRK superficial cortical cells using whole-cell recording. These currents were elicited monosynaptically, because partial AMPA current blockade did not modify the latencies. These results suggest that the general developmental pattern of synapse formation between thalamic axons and subplate (superplate) neurons in WT and SRK is very similar, and individual thalamic arbors in cortex are considerably remodeled during early postnatal development to find layer IV equivalent neurons.
机译:丘脑轴突和亚板神经元之间的瞬时突触形成在丘脑皮层靶向中被认为是重要的。摇晃的大鼠川崎(SRK)具有类似在绕线器小鼠中观察到的相反的皮质分层功能,提供了一个有趣的模型系统来测试该想法。使用光敏染料在SRK的丘脑皮层切片制剂中进行光学记录,研究了激发的时空模式。在出生后第0天(P0),在与野生型(WT)大鼠亚板相对应的细胞层SRK的超板中引发了强烈的光学反应。通过P3,该反应迅速下降到由IV层细胞构成的深层皮质层,如在胚胎第17天出生的5-溴2'-脱氧尿苷所鉴定的那样。在出生后的前3天,亚板和皮层板反应均存在,但通过P7,取消了底板反应。在SRK中追踪单个轴突表明,在P0-P3处,大量丘脑皮层轴突到达了超板,而在P7-P10时,上升的轴突形成了侧枝,进入了皮层的下层或中层。使用全细胞记录在野生型亚板细胞和SRK浅层皮层细胞中也显示出突触电流。这些电流是单突触地引发的,因为部分AMPA电流封锁不会改变等待时间。这些结果表明,WT和SRK中丘脑轴突与亚板(超板)神经元之间突触形成的一般发育模式非常相似,并且在出生后早期发育过程中,皮层中的单个丘脑轴被大量改造以找到IV层等效神经元。

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