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首页> 外文期刊>Brain structure & function >Development of the blood-brain barrier within the paraventricular nucleus of the hypothalamus: influence of fetal glucocorticoid excess
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Development of the blood-brain barrier within the paraventricular nucleus of the hypothalamus: influence of fetal glucocorticoid excess

机译:下丘脑室旁核内血脑屏障的发展:胎儿糖皮质激素过多的影响

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The blood-brain barrier (BBB) is a critical contributor to brain function. To understand its development and potential function in different brain regions, the postnatal (P) BBB was investigated in the mouse cortex (CTX), lateral hypothalamus, and paraventricular nucleus of the hypothalamus (PVN). Brains were examined on postnatal days (P)12, P22 and P52 for BBB competency and for pericytes as key cellular components of the BBB demarcated by immunoreactive desmin. Glucocorticoid influences (excess dexamethasone; dex) during prenatal development were also assessed for their impact on the blood vessels within these regions postnatally. At P12, there was significantly more extravascular leakage of a low molecular weight dye (fluorescein isothiocyanate) in the CTX than within hypothalamic regions. For pericytes, there were low levels of desmin immunoreactivity at P12 that increased with age for all regions. There was more desmin immunoreactivity present in the PVN at each age examined. Fetal dex exposure resulted in decreased blood vessel density within the PVN at P20. In the CTX, dex exposure increased BBB competency, in contrast to the PVN where there was a decrease in BBB competency and increased pericyte presence. Overall, unique alterations in the functioning of the BBB within the PVN may provide a novel mechanism for fetal antecedent programming that may influence adult disorders.
机译:血脑屏障(BBB)是脑功能的关键因素。为了了解其在不同大脑区域的发育和潜在功能,在小鼠皮层(CTX),下丘脑外侧和下丘脑室旁核(PVN)中研究了产后(P)BBB。在出生后第(P)12,P22和P52天检查大脑的BBB能力和周细胞,作为免疫反应性结蛋白界定的BBB关键细胞成分。还评估了产前发育过程中糖皮质激素的影响(地塞米松过量;右旋糖酐)对这些区域产后血管的影响。在P12,与下丘脑区域相比,CTX中低分子量染料(异硫氰酸荧光素)的血管外泄漏明显更多。对于周细胞,在所有区域,P12的结蛋白免疫反应性均较低,并随年龄增长而增加。在每个检查的年龄,PVN中都存在更多的结蛋白免疫反应性。胎儿右旋暴露导致P20处PVN内血管密度降低。在CTX中,与PVN相比,dex暴露会增加BBB的能力,而PVN会降低BBB的能力并增加周细胞的存在。总体而言,PVN中BBB功能的独特改变可能为胎儿前程编程提供一种新颖的机制,从而可能影响成人疾病。

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