Division of Histology and Cell Biology, Department of Anatomy, School of Medicine, Jichi Medical University, Shimotsuke, Japan.
Australian Regenerative Medicine Institute, Monash University, 15 Innovation Walk, Clayton, VIC, 3800, Australia.
Neurochem Res. 2022 Sep;47(9):2815-2825. doi: 10.1007/s11064-022-03689-8. Epub 2022 Aug 6.
An appropriate sensory experience during the early developmental period is important for brain maturation. Dark rearing during the visual critical period delays the maturation of neuronal circuits in the visual cortex. Although the formation and structural plasticity of the myelin sheaths on retinal ganglion cell axons modulate the visual function, the effects of dark rearing during the visual critical period on the structure of the retinal ganglion cell axons and their myelin sheaths are still unclear. To address this question, mice were reared in a dark box during the visual critical period and then normally reared to adulthood. We found that myelin sheaths on the retinal ganglion cell axons of dark-reared mice were thicker than those of normally reared mice in both the optic chiasm and optic nerve. Furthermore, whole-mount immunostaining with fluorescent axonal labeling and tissue clearing revealed that the myelin internodal length in dark-reared mice was shorter than that in normally reared mice in both the optic chiasm and optic nerve. These findings demonstrate that dark rearing during the visual critical period affects the morphology of myelin sheaths, shortens and thickens myelin sheaths in the visual pathway, despite the mice being reared in normal light/dark conditions after the dark rearing.
在早期发育阶段获得适当的感官体验对大脑成熟很重要。在视觉关键期进行暗室饲养会延迟视觉皮层神经元回路的成熟。尽管视网膜神经节细胞轴突上的髓鞘形成和结构可塑性调节视觉功能,但在视觉关键期进行暗室饲养对视网膜神经节细胞轴突及其髓鞘的结构的影响尚不清楚。为了解决这个问题,我们在视觉关键期将小鼠饲养在暗箱中,然后正常饲养至成年。我们发现,与正常饲养的小鼠相比,暗室饲养的小鼠的视神经交叉和视神经中的视网膜神经节细胞轴突上的髓鞘更厚。此外,用荧光轴突标记和组织透明化进行的全组织免疫染色显示,暗室饲养的小鼠的视神经交叉和视神经中的髓鞘节间长度比正常饲养的小鼠短。这些发现表明,尽管在暗室饲养后小鼠在正常的明暗条件下饲养,但在视觉关键期进行暗室饲养会影响髓鞘的形态,缩短并增厚视觉通路上的髓鞘。