免疫金研究产前暴露于脂多糖和/或丙戊酸对大鼠血脑屏障血管的影响。

Journal of Neurocytology Pub Date : 2005-12-01 Epub Date: 2006-08-10 DOI:10.1007/s11068-006-8729-x
A W Vorbrodt, D H Dobrogowska, P B Kozlowski, A Rabe, M Tarnawski, M H Lee
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引用次数: 7

摘要

在4周龄大鼠中,研究了产前暴露于脂多糖(LPS)和/或丙戊酸(VPA)引起的脑损伤中,代表血脑屏障(BBB)解剖部位的血管的参与情况。应用免疫金方法在超微结构水平定位内源性白蛋白和葡萄糖转运蛋白(GLUT-1)在大脑皮层、小脑和海马三个脑区。采用四组大鼠:(1)未处理对照组,(2)产前vpa处理组,(3)产前LPS处理组,(4)产前LPS和vpa处理组。血脑屏障的功能状态评估如下:(a)其紧密性,即对血源性白蛋白的渗透性,以及(b)内皮细胞(ECs)中GLUT-1的表达。利用形态测定法,在ECs的管腔和管腔质膜上记录了GLUT-1的标记密度,也提供了它们的功能极性信息。在实验组2和3中,没有观察到血管通透性的广泛增加和/或任何明显的血脑屏障功能障碍,尽管在孤立的血管谱中,注意到内皮细胞的内吞作用甚至白蛋白的胞吞作用增加。实验组:4、部分血管表现为少量渗漏(微渗漏),表现为血管周围白蛋白免疫信号的存在。虽然各实验组中GLUT-1表达均有一定的波动,但以no组最为明显。在第3组中,在大脑的所有三个区域中,观察到标记密度的最明显和显著的减少。4. 这一发现表明产前应用LPS和VPA的协同作用影响微血管内皮中葡萄糖的特定运输功能。特定脑区葡萄糖供应的减少或紊乱可能是导致先前观察到的类似治疗大鼠行为障碍的因素之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Immunogold study of effects of prenatal exposure to lipopolysaccharide and/or valproic acid on the rat blood-brain barrier vessels.

The involvement of blood microvessels, representing the anatomic site of the blood-brain barrier (BBB), in brain damage induced by prenatal exposure to lipopolysaccharide (LPS) and/or valproic acid (VPA) was studied in four-week-old rats. The immunogold procedure was applied for localization at the ultrastructural level of endogenous albumin and glucose transporter (GLUT-1) in three brain regions: cerebral cortex, cerebellum and hippocampus. Four groups of rats were used: (1) untreated control, (2) prenatally VPA-treated, (3) prenatally LPS-treated, and (4) prenatally LPS- and VPA-treated. The functional state of the BBB was evaluated as follows: (a) by its tightness, i.e., permeability to blood-borne albumin, and (b) by the expression of GLUT-1 in the endothelial cells (ECs). Using morphometry, the labelling density for GLUT-1 was recorded over luminal and abluminal plasma membranes of the ECs, also providing information on their functional polarity. No extensive increase of vascular permeability and/or any considerable dysfunction of the BBB in experimental groups nos. 2 and 3 were observed, although in solitary vascular profiles, increased endocytosis or even transcytosis of albumin by ECs was noted. In experimental group no. 4, some vascular profiles showed scanty leakage (microleakage), manifested by the presence of immunosignals for albumin in the perivascular area. Although some fluctuations in the expression of GLUT-1 occurred in all experimental groups, especially in group no. 3, a most pronounced and significant diminution of the labelling density, in all three regions of the brain, was observed in group no. 4. This finding suggests the synergistic action of prenatally applied LPS and VPA that affects specific transport functions of glucose in the microvascular endothelium. The diminished or disturbed supply of glucose to selected brain regions can be one of the factors leading to previously observed behavioral disturbances in similarly treated rats.

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