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快速脑发育期(RBG)期间亚砷酸钠暴露后大鼠小脑的初步形态学和形态计量学研究

Preliminary morphological and morphometric study of rat cerebellum following sodium arsenite exposure during rapid brain growth (RBG) period.

作者信息

Dhar Pushpa, Mohari Nivedita, Mehra Raj D

机构信息

Department of Anatomy, All India Institute of Medical Sciences, Delhi, India.

出版信息

Toxicology. 2007 May 5;234(1-2):10-20. doi: 10.1016/j.tox.2007.01.024. Epub 2007 Feb 11.

Abstract

The effects of arsenic exposure during rapid brain growth (RBG) period were studied in rat brains with emphasis on the Purkinje cells of the cerebellum. The RBG period in rats extends from postnatal day 4 (PND 4) to postnatal day 10 (PND 10) and is reported to be highly vulnerable to environmental insults. Mother reared Wistar rat pups were administered intraperitoneal injections (i.p.) of sodium arsenite (aqueous solution) in doses of 1.0, 1.5 and 2.0mg/kg body weight (bw) to groups II, III and IV (n=6 animals/group) from PND 4 to 10 (sub acute). Control animals (group I) received distilled water by the same route. On PND 11, the animals were perfusion fixed with 4% paraformaldehyde in 0.1M phosphate buffer (PB) with pH 7.4. The cerebellum obtained from these animals was post-fixed and processed for paraffin embedding. Besides studying the morphological characteristics of Purkinje cells in cresyl violet (CV) stained paraffin sections (10 microm), morphometric analysis of Purkinje cells was carried out using Image Analysis System (Image Proplus software version 4.5) attached to Nikon Microphot-FX microscope. The results showed that on PND 11, the Purkinje cells were arranged in multiple layers extending from Purkinje cell layer (PL) to outer part of granule cell layer (GL) in experimental animals (contrary to monolayer arrangement within PL in control animals). Also, delayed maturation (well defined apical cytoplasmic cones and intense basal basophilia) was evident in Purkinje cells of experimental animals on PND 11. The mean Purkinje cell nuclear area was significantly increased in the arsenic treated animals compared to the control animals. The observations of the present study (faulty migration, delayed maturation and alteration in nuclear area measurements of Purkinje cells subsequent to arsenic exposure) thus provided the morphological evidence of structural alterations subsequent to arsenite induced developmental neurotoxicity which could be presumed to be the underlying basis for some of the functional deficits encountered in the later period of life.

摘要

在大鼠脑快速生长(RBG)期暴露于砷的影响进行了研究,重点关注小脑的浦肯野细胞。大鼠的RBG期从出生后第4天(PND 4)延伸至出生后第10天(PND 10),据报道该时期极易受到环境损伤。从出生后第4天到第10天(亚急性),对由母鼠饲养的Wistar大鼠幼崽进行腹腔注射(i.p.)亚砷酸钠(水溶液),剂量分别为1.0、1.5和2.0mg/kg体重(bw),将其分为II、III和IV组(每组n = 6只动物)。对照组动物(I组)通过相同途径接受蒸馏水。在PND 11,用pH 7.4的0.1M磷酸盐缓冲液(PB)中的4%多聚甲醛对动物进行灌注固定。从这些动物获得的小脑进行后固定并处理用于石蜡包埋。除了在甲酚紫(CV)染色的石蜡切片(10微米)中研究浦肯野细胞的形态特征外,还使用连接到尼康Microphot-FX显微镜的图像分析系统(Image Proplus软件版本4.5)对浦肯野细胞进行形态计量分析。结果显示,在PND 11时,实验动物的浦肯野细胞排列成多层,从浦肯野细胞层(PL)延伸至颗粒细胞层(GL)的外部(与对照动物PL内的单层排列相反)。此外,在PND 11时,实验动物的浦肯野细胞中明显出现成熟延迟(明确的顶端细胞质锥和强烈的基底嗜碱性)。与对照动物相比,砷处理动物的浦肯野细胞核平均面积显著增加。本研究的观察结果(砷暴露后浦肯野细胞迁移错误、成熟延迟和核面积测量改变)因此提供了亚砷酸盐诱导的发育神经毒性后结构改变的形态学证据,这可以被认为是在生命后期遇到的一些功能缺陷的潜在基础。

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