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一周内自由选择高脂肪高糖饮食不会破坏进食或夜间禁食大鼠的血脑屏障通透性。

One-week exposure to a free-choice high-fat high-sugar diet does not disrupt blood-brain barrier permeability in fed or overnight fasted rats.

机构信息

a Department of Endocrinology & Metabolism , Academic Medical Center , Amsterdam , Netherlands.

b Laboratory of Endocrinology, Department of Clinical Chemistry , Academic Medical Center , Amsterdam , Netherlands.

出版信息

Nutr Neurosci. 2019 Aug;22(8):541-550. doi: 10.1080/1028415X.2017.1418727. Epub 2017 Dec 29.

Abstract

The hypothalamus lies adjacent to the third ventricle and is in close proximity with the median eminence (ME), a circumventricular organ with an incomplete blood-brain barrier (BBB) which controls direct entry of nutrients into the brain. The blood-CSF barrier of the hypothalamus shows dynamic changes upon neuroendocrine events and adjusts permeability with the tight junction (TJ) complex. It has been shown that chronic exposure to a high-fat diet (HFD) affects BBB permeability. HFD also induces leptin resistance and alters neuropeptide expression in the arcuate nucleus (Arc) of the hypothalamus starting early during overnutrition. We hypothesized altered integrity of the BBB to occur after exposing rats to a free-choice high-fat high-sugar (fcHFHS) diet for 1 week. We measured diffusion of Evans blue dye over the ME and assessed expression of the TJ proteins ZO-1, claudin-5, and occludin in the tanycytic wall of the third ventricle. Furthermore, we assessed protein expression of glucose transporter 1 (GLUT-1), which is highly expressed in the Arc-ME complex and facilitates glucose transport over the BBB. fcHFHS-fed rats increased caloric intake compared to control, however, there was no effect of the fcHFHS diet on permeability of the BBB, nor changes in protein expression of tight TJ proteins or GLUT-1. Fasting acutely affects the BBB and we hypothesized that exposure to the fcHFHS diet affects the BBB differently compared to chow after fasting. We did not, however, find any differences in Evans blue diffusion nor protein expression between chow- and fcHFHS-fed rats when fasted overnight. We conclude that short-term consumption of a fcHFHS diet does not change permeability or diffusion in the hypothalamus barrier in fed or fasted rats.

摘要

下丘脑毗邻第三脑室,与正中隆起(ME)相邻,正中隆起是一种具有不完全血脑屏障(BBB)的室周器官,可控制营养物质直接进入大脑。在神经内分泌事件中,下丘脑的血脑屏障显示出动态变化,并通过紧密连接(TJ)复合物调节通透性。有研究表明,长期摄入高脂肪饮食(HFD)会影响 BBB 通透性。HFD 还会导致肥胖早期就出现瘦素抵抗,并改变下丘脑弓状核(Arc)中的神经肽表达。我们假设,在大鼠暴露于自由选择的高脂肪高糖(fcHFHS)饮食 1 周后,BBB 的完整性会发生改变。我们测量了 ME 中 Evans 蓝染料的扩散,并评估了 TJ 蛋白 ZO-1、claudin-5 和 occludin 在第三脑室的 tanycytes 壁中的表达。此外,我们评估了葡萄糖转运蛋白 1(GLUT-1)的蛋白表达,GLUT-1 在 Arc-ME 复合体中高度表达,可促进葡萄糖通过 BBB 的转运。与对照组相比,fcHFHS 喂养的大鼠增加了热量摄入,但 fcHFHS 饮食对 BBB 的通透性没有影响,也没有改变 TJ 蛋白或 GLUT-1 的蛋白表达。禁食会急性影响 BBB,我们假设与禁食相比,暴露于 fcHFHS 饮食会对禁食后的 BBB 产生不同的影响。然而,当大鼠禁食过夜时,我们没有发现 chow 和 fcHFHS 喂养的大鼠之间在 Evans 蓝扩散或蛋白表达方面有任何差异。我们得出结论,短期摄入 fcHFHS 饮食不会改变 fed 或禁食大鼠下丘脑屏障的通透性或扩散。

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