Dvergsten C L, Fosmire G J, Ollerich D A, Sandstead H H
Brain Res. 1983 Jul 25;271(2):217-26. doi: 10.1016/0006-8993(83)90284-6.
The effects of zinc deficiency on cerebellar development were investigated in suckling rats. In 21-day-old zinc-deficient rats the cerebellum as well as the whole brain was reduced in size. The cerebellar cortex was underdeveloped and showed a persistence of the external granule cell layer, a reduction in the thickness of molecular layer and a decrease in the area of the internal granule cell layer. Lobular variations were present. Along the posterior superior fissure there was approximately a 60% reduction in the number of granule cells and in the number of granule cells per Purkinje cell. It was suggested that the reduction in the number of granule cells was predominantly the result of impaired cell proliferation in the external granule cell layer. Comparisons with undernourished, pair-fed pups indicated that the effects of zinc deficiency could not be mediated totally through the reduced food consumption experienced by zinc deficient dams.
在乳鼠中研究了锌缺乏对小脑发育的影响。在21日龄的缺锌大鼠中,小脑以及整个大脑的体积都减小了。小脑皮质发育不全,表现为外颗粒细胞层持续存在、分子层厚度减小以及内颗粒细胞层面积减小。存在小叶变异。沿着后上裂,颗粒细胞数量以及每个浦肯野细胞的颗粒细胞数量减少了约60%。有人提出,颗粒细胞数量的减少主要是外颗粒细胞层细胞增殖受损的结果。与营养不良的配对喂养幼崽的比较表明,锌缺乏的影响不能完全通过缺锌母鼠食物摄入量减少来介导。