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高岭土诱导脑积水的神经行为改变和小脑浦肯野细胞形态学研究。

Neurobehavioural changes and morphological study of cerebellar purkinje cells in kaolin induced hydrocephalus.

机构信息

Department of Anatomy, College of Medicine, University of Ibadan, PO Box 200284, Ibadan, Nigeria.

Department of Surgery, College of Medicine, University of Ibadan, Ibadan, Nigeria.

出版信息

Anat Sci Int. 2021 Jan;96(1):87-96. doi: 10.1007/s12565-020-00561-z. Epub 2020 Aug 13.

Abstract

Cerebellar abnormalities are commonly associated with hydrocephalus. However, the effect of hydrocephalus on the otherwise normal cerebellum has been largely neglected. This study assesses the morphological changes in the Purkinje cells in relation to cerebellar dysfunction observed in juvenile hydrocephalic rats. Fifty-five three-week old albino Wistar rats were used, hydrocephalus was induced by intracisternal injection of kaolin (n = 35) and others served as controls (n = 20). Body weight measurements, hanging wire, negative geotaxis, and open field tests were carried out at the onset and then weekly for 4 weeks, rats were killed, and their cerebella processed for Hematoxylin and Eosin, Cresyl violet and Golgi staining. Qualitative and quantitative studies were carried out; quantitative data were analyzed using two-way ANOVA and independent T tests at p < 0.05. Hydrocephalic rats weighed less than controls (p = 0.0247) but their cerebellar weights were comparable. The hydrocephalic rats had a consistently shorter latency to fall in the hanging wire test (F(4,112) = 18.63; p < 0.0001), longer latency to turn in the negative geotaxis test (F(4,112) = 22.2; p < 0.0001), and decreased horizontal (F(4,112) = 4.172, p = 0.0035) and vertical movements (F(4,112) = 4.397; p = 0.0024) in the open field test than controls throughout the 4 weeks post-induction. Cellular compression in the granular layer, swelling of Purkinje cells with vacuolations, reduced dendritic arborization and increased number of pyknotic Purkinje cells were observed in hydrocephalic rats. Hydrocephalus caused functional and morphological changes in the cerebellar cortex. Purkinje cell loss, a major pathological feature of hydrocephalus, may be responsible for some of the motor deficits observed in this condition.

摘要

小脑异常通常与脑积水有关。然而,脑积水对正常小脑的影响在很大程度上被忽视了。本研究评估了幼发性脑积水大鼠小脑功能障碍时浦肯野细胞的形态变化。使用了 55 只 3 周龄的白化 Wistar 大鼠,通过脑室内注射高岭土诱导脑积水(n = 35),其余作为对照组(n = 20)。在开始时以及之后每周进行体重测量、悬挂线、负趋地性和旷场试验 4 周,处死大鼠,处理其小脑进行苏木精和伊红、甲苯胺蓝和高尔基染色。进行了定性和定量研究;定量数据采用双因素方差分析和独立 T 检验进行分析,p < 0.05。脑积水大鼠的体重低于对照组(p = 0.0247),但小脑重量相当。在悬挂线试验中,脑积水大鼠的跌落潜伏期始终较短(F(4,112) = 18.63;p < 0.0001),在负趋地性试验中转身的潜伏期较长(F(4,112) = 22.2;p < 0.0001),并且水平(F(4,112) = 4.172,p = 0.0035)和垂直运动(F(4,112) = 4.397;p = 0.0024)在诱导后 4 周内均低于对照组。在脑积水大鼠中观察到颗粒层的细胞压缩、浦肯野细胞肿胀伴空泡化、树突分支减少和凋亡浦肯野细胞增多。脑积水导致小脑皮质功能和形态发生变化。浦肯野细胞丢失是脑积水的主要病理特征,可能是这种情况下观察到一些运动缺陷的原因。

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