高岭土诱导脑积水Wistar大鼠侧脑室和大脑皮层的进行性组织形态学分析

O. Ayannuga
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摘要

背景:脑积水在脑脊液分泌过量和/或引流受损后导致脑室肿大。侧脑室(LV)被海马和丘脑等关键结构所包围;它的扩大将对包括大脑皮层在内的周围大脑结构产生不利影响。目的:观察脑积水患者4周内大脑皮层及左室形态变化。设置与设计:51只3周龄大鼠分为A组(实验= 6;对照组= 5),B组(实验组= 8;对照组= 6),C组(实验组= 8;对照组= 6),D组(试验组= 6;对照组= 6),分别于1、2、3、4周末处死。材料与方法:实验大鼠在氯胺酮(90mg /kbw)和地西泮(12.5 mg/kbw)麻醉下,将200mg /ml高岭土悬浮液0.04 ml注入大池诱导。取大鼠颈椎脱位,脑固定于10%生理盐水中。视交叉水平的脑切片进行处理,并用苏木精和伊红染色。统计分析采用单因素方差分析和Student-Newman-Keuls检验。结果:实验大鼠出现嗜睡、摄食不良、球状头、眼球突出等现象。诱导后第1周至第4周,左室宽度和左室/皮质厚度(CT)比显著增加(各周P < 0.0001)。CT从第2周到第4周显著降低(各周P < 0.0001)。皮质下白质(SWM)/CT比值在第1 ~ 3周显著降低(各周P < 0.0001),但在第4周升高(P = 0.0003)。从第3到第4周可见脉络膜丛变薄/脱离。结论:白质/皮质变薄和脑室增大是急性期的特征,尽管皮质变薄滞后于其他特征。脉络膜丛脱离和SWM变薄逆转是慢性的特征。
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Progressive histomorphometric analysis of the lateral ventricle and cerebral cortex of Wistar rats following kaolin-induced hydrocephalus
Context: Hydrocephalus results in ventriculomegaly following excess production and/or impaired drainage of cerebrospinal fluid. The lateral ventricle (LV) is surrounded by critical structures such as hippocampus and thalamus; its enlargement will adversely impact surrounding brain structures including the cerebral cortex. Aims: This study aims to evaluate the morphometry of cerebral cortex and LV in hydrocephalus over 4 weeks. Settings and Design: Fifty-one 3-week-old rats were divided into Groups A (experimental = 6; control = 5), B (experimental = 8; control = 6), C (experimental = 8; control = 6) and D (experimental = 6; control = 6), sacrificed at the end of 1, 2, 3 and 4 weeks, respectively. Materials and Methods: Experimental rats were induced by injection of 0.04 ml of 200 mg/ml kaolin suspension into the cisterna magnum under ketamine (90 mg/kbw) and diazepam (12.5 mg/kbw) anaesthesia. Rats were sacrificed by cervical dislocation and brain fixed in 10% formal saline. Brain slices at the level of the optic chiasma were processed and stained with haematoxylin and eosin. Statistical Analysis Used: One-way ANOVA and Student–Newman–Keuls test. Results: In experimental rats, lethargy, poor feeding, globular head and exophthalmos were noted. The LV width and the LV/cortical thickness (CT) ratio were significantly increased from the 1st to the 4th post-induction week (P < 0.0001 across the weeks). CT was significantly reduced from the 2nd to 4th week (P < 0.0001 across the weeks). The subcortical white matter (SWM)/CT ratio was significantly reduced from 1st to 3rd week (P < 0.0001 across the weeks), but increased in the 4th week (P = 0.0003). Thinning/detachment of the choroid plexus was noted from the 3rd to the 4th week. Conclusions: White matter/cortical thinning and ventriculomegaly are acute-phase features, although cortical thinning lags behind others. Detachment of the choroid plexus and reversal of SWM thinning are features of chronicity.
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