首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Persistence of tight junctions and changes in apical structures and protein expression in choroid plexus epithelium of rats after short-term head-down tilt.
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Persistence of tight junctions and changes in apical structures and protein expression in choroid plexus epithelium of rats after short-term head-down tilt.

机译:短期向下俯仰后大鼠脉络丛上皮紧密连接的持久性以及根尖结构和蛋白质表达的变化。

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摘要

Major alterations of choroidal cell polarity and protein expression were previously shown to be induced in rats by long-term adaptation to space flight (14 days aboard a space shuttle) or anti-orthostatic suspension (14 and 28 days) performed by tilting rats head-down (i.e. using a ground-based model known to simulate several effects of weightlessness). In rabbits, it was hypothesized that the blood-CSF barrier was opened in choroid plexus, after a short head-down suspension. To understand the early responses to fluid shifts induced by head-down tilts and evaluate the tightness of the choroidal junctions, we have investigated the effects of acute adaptations to anti-orthostatic restraints, using hindlimb-suspended Sprague-Dawley and Wistar rats. Ultrastructural and immunocytochemical studies were performed on choroid plexuses from lateral, third and fourth ventricles, after 30, 90 and 180 minutes of head-down tilt. Alterations were not perceptible at the level of choroidal tight junctions, as shown by freeze-fracture, claudin-1 and ZO-1 immunolocalizations and conventional electron microscopy, after intravenous injection of cytochrome C. The apical surface of choroidal cells was clearly more affected. Microvilli were longer and thinner and ezrin was over-expressed during all the periods of time considered, showing an early cytoskeletal response. Several proteins involved in the choroidal production of cerebrospinal fluid (sodium-potassium ATPase, carbonic anhydrase II, aquaporin 1) appeared first increased (30 minutes after the tilt), and then, returned to the control level or were lowered (after a 3-hour head-down suspension). Although head-down tilts do not seem to damage the blood-cerebrospinal fluid barrier in choroid plexus, it seemed that the expression of several apical proteins is affected very early.
机译:先前已证明,通过长期适应太空飞行(在航天飞机上飞行14天)或通过将大鼠头向后倾斜进行的抗直立性悬吊(14天和28天),可诱导大鼠脉络膜细胞极性和蛋白质表达发生重大变化。向下(即使用已知的地面模型来模拟失重的几种影响)。在兔中,假设在短暂的头朝下悬吊后,脉络丛中的血脑脊液屏障打开。为了了解由头向下倾斜引起的流体移位的早期反应并评估脉络膜连接的紧密性,我们使用后肢悬吊的Sprague-Dawley和Wistar大鼠研究了急性适应抗直立性约束的作用。头向下倾斜30、90和180分钟后,对侧脑室,第三脑室和第四脑室的脉络丛进行超微结构和免疫细胞化学研究。静脉内注射细胞色素C后,如冷冻断裂,claudin-1和ZO-1免疫定位以及常规电子显微镜所示,脉络膜紧密连接水平的变化是无法察觉的。脉络膜细胞的顶表面显然受到更大的影响。在所有考虑的时间段中,微绒毛更长,更薄,并且ezrin过表达,显示出早期的细胞骨架反应。脑脊液脉络膜产生中涉及的几种蛋白质(钠钾ATPase,碳酸酐酶II,水通道蛋白1)首先出现增加(倾斜30分钟后),然后恢复到对照水平或降低(3-小时低头悬挂)。尽管头顶向下的倾斜似乎并未破坏脉络丛中的血脑脊液屏障,但似乎很早就影响了几种根尖蛋白的表达。

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