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局部轴突形态指导了小鼠和人类新皮层中间神经元的髓鞘形成的拓扑结构。

Local axonal morphology guides the topography of interneuron myelination in mouse and human neocortex.

机构信息

Department of Psychiatry, Erasmus MC University Medical Center, Rotterdam, Netherlands.

Erasmus Optical Imaging Center, Department of Pathology, Erasmus MC University Medical Center, Rotterdam, Netherlands.

出版信息

Elife. 2019 Nov 19;8:e48615. doi: 10.7554/eLife.48615.

Abstract

GABAergic fast-spiking parvalbumin-positive (PV) interneurons are frequently myelinated in the cerebral cortex. However, the factors governing the topography of cortical interneuron myelination remain incompletely understood. Here, we report that segmental myelination along neocortical interneuron axons is strongly predicted by the joint combination of interbranch distance and local axon caliber. Enlargement of PV+ interneurons increased axonal myelination, while reduced cell size led to decreased myelination. Next, we considered regular-spiking SOM+ cells, which normally have relatively shorter interbranch distances and thinner axon diameters than PV+ cells, and are rarely myelinated. Consistent with the importance of axonal morphology for guiding interneuron myelination, enlargement of SOM+ cell size dramatically increased the frequency of myelinated axonal segments. Lastly, we confirm that these findings also extend to human neocortex by quantifying interneuron axonal myelination from ex vivo surgical tissue. Together, these findings establish a predictive model of neocortical GABAergic interneuron myelination determined by local axonal morphology.

摘要

大脑皮层中的 GABA 能快速放电的 parvalbumin 阳性(PV)中间神经元通常有髓鞘。然而,支配皮层中间神经元髓鞘形成的位置的因素仍不完全清楚。在这里,我们报告说,沿新皮层中间神经元轴突的节段性髓鞘形成强烈地取决于分支间距离和局部轴突口径的联合组合。PV+中间神经元的增大增加了轴突的髓鞘形成,而细胞大小的减小则导致髓鞘形成减少。接下来,我们考虑了具有相对较短分支间距离和比 PV+细胞更细的轴突直径的常规放电 SOM+细胞,这些细胞通常很少有髓鞘形成。与轴突形态对指导中间神经元髓鞘形成的重要性一致,SOM+细胞大小的增大显著增加了有髓鞘化轴突段的频率。最后,我们通过从离体手术组织中定量中间神经元轴突的髓鞘形成来证实这些发现也适用于人类新皮层。总之,这些发现建立了一个由局部轴突形态决定的新皮层 GABA 能中间神经元髓鞘形成的预测模型。

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