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生发基质、大脑皮质和白质血管中紧密连接分子的发育。

Development of tight junction molecules in blood vessels of germinal matrix, cerebral cortex, and white matter.

作者信息

Ballabh Praveen, Hu Furong, Kumarasiri Mithun, Braun Alex, Nedergaard Maiken

机构信息

Department of Pediatrics, Westchester Medicak Center--New York Medical College, Valhalla, 10595, USA.

出版信息

Pediatr Res. 2005 Oct;58(4):791-8. doi: 10.1203/01.PDR.0000180535.14093.FB.

Abstract

Tight junction (TJ) molecules confer cell-to-cell adhesion to endothelial cells and, thus, provide structural integrity to blood vessels. Therefore, decreased expression of these molecules may be a cause of germinal matrix (GM) fragility and their propensity to hemorrhage in premature infants. The objective of this study was to compare the expression of endothelial TJ molecules, including claudin-5, occludin, and junction adhesion molecules (JAM), among blood vessels of GM, cortex, and white matter for fetuses and premature infants of gestational age 16-40 wk, and to examine their maturational changes with advancing gestational age. We measured the expression of claudin-1, claudin-5, occludin, and JAM in GM, cortex, and white matter in postmortem brain samples. We performed immunohistochemical staining on brain sections and Western blot to quantify these molecules. We found that claudin-5, occludin, and JAM-1 were expressed as early as 16 wk in GM, cortex, and white matter. Claudin-1, JAM-2, and JAM-3 were not detected in the GM, cortex, and white matter. Claudin-5, occludin, and JAM-1 did not change significantly as a function of gestational age. There was no significant difference in the expression of these molecules in the vasculature of GM compared with cortex and white matter. Because the primary endothelial TJ molecules, including claudin-5, occludin, and JAM-1, are expressed as early as 16 wk in the blood brain barrier and since as they are not decreased in GM vasculature compared with cortex and white matter, they are unlikely to be responsible for GM fragility and vulnerability to hemorrhage in premature infants.

摘要

紧密连接(TJ)分子赋予内皮细胞间细胞黏附能力,从而为血管提供结构完整性。因此,这些分子表达的降低可能是早产儿生发基质(GM)脆弱及其出血倾向的一个原因。本研究的目的是比较16 - 40周胎龄胎儿和早产儿的GM、皮质和白质血管中内皮TJ分子(包括claudin - 5、闭合蛋白和连接黏附分子(JAM))的表达,并研究其随胎龄增加的成熟变化。我们测量了死后脑样本中GM、皮质和白质中claudin - 1、claudin - 5、闭合蛋白和JAM的表达。我们对脑切片进行免疫组织化学染色和蛋白质印迹法以量化这些分子。我们发现claudin - 5、闭合蛋白和JAM - 1早在16周时就在GM、皮质和白质中表达。在GM、皮质和白质中未检测到claudin - 1、JAM - 2和JAM - 3。claudin - 5、闭合蛋白和JAM - 1不会随胎龄发生显著变化。与皮质和白质相比,GM脉管系统中这些分子的表达没有显著差异。因为主要的内皮TJ分子,包括claudin - 5、闭合蛋白和JAM - 1,早在16周时就在血脑屏障中表达,并且由于与皮质和白质相比,它们在GM脉管系统中并未降低,所以它们不太可能是早产儿GM脆弱和出血易感性的原因。

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