首页> 外文OA文献 >Disruption of embryonic blood-CSF barrier in chick embryos reveals the actual importance of this barrier to control E-CSF composition and homeostasis in early brain development
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Disruption of embryonic blood-CSF barrier in chick embryos reveals the actual importance of this barrier to control E-CSF composition and homeostasis in early brain development

机译:破坏雏鸡胚胎中的血液CSF屏障揭示了该屏障在早期大脑发育中控制E-CSF组成和体内稳态的实际重要性

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摘要

In vertebrates, early brain development takes place at the expanded anterior end of the neural tube. After closure of the anterior neuropore, the brain wall forms a physiologically sealed cavity that encloses embryonic cerebrospinal fluid (E-CSF), a complex and protein-rich fluid that is initially composed of trapped amniotic fluid. E-CSF has several crucial roles in brain anlagen development. Recently, we reported the presence of transient blood-CSF barrier located in the brain stem lateral to the ventral midline, at the mesencephalon and prosencephalon level, in chick and rat embryos by transporting proteins, water, ions and glucose in a selective manner via transcellular routes. To test the actual relevance of the control of E-CSF composition and homeostasis on early brain development by this embryonic blood-CSF barrier, we block the activity of this barrier by treating the embryos with 6-aminonicotinamide gliotoxin (6-AN). We demonstrate that 6-AN treatment in chick embryos blocks protein transport across the embryonic blood-CSF barrier, and that the disruption of the barrier properties is due to the cease transcellular caveolae transport, as detected by CAV-1 expression cease. We also show that the lack of protein transport across the embryonic blood-CSF barrier influences neuroepithelial cell survival, proliferation and neurogenesis, as monitored by neurepithelial progenitor cells survival, proliferation and neurogenesis. The blockage of embryonic blood-CSF transport also disrupts water influx to the E-CSF, as revealed by an abnormal increase in brain anlagen volume. These experiments contribute to delineate the actual extent of this blood-CSF embryonic barrier controlling E-CSF composition and homeostasis and the actual important of this control for early brain development, as well as to elucidate the mechanism by which proteins and water are transported thought transcellular routes across the neuroectoderm, reinforcing the crucial role of E-CSF for brain development.
机译:在脊椎动物中,早期的大脑发育发生在神经管的扩张前端。闭合前神经孔后,脑壁形成一个生理上密封的腔,该腔封闭了胚胎脑脊髓液(E-CSF),这是一种复杂且富含蛋白质的液体,最初是由捕获的羊水组成。 E-CSF在脑胶原蛋白的发育中起着至关重要的作用。最近,我们报道了通过选择性地通过跨细胞转运蛋白,水,离子和葡萄糖,在雏鸡和大鼠胚胎中存在位于中腹侧脑干侧中脑和前脑水平的短暂性血脑脊液屏障路线。为了测试通过这种胚胎血液-CSF屏障控制E-CSF组成和体内稳态对早期大脑发育的实际相关性,我们通过用6-氨基烟酰胺类神经胶质毒素(6-AN)处理胚胎来阻断该屏障的活性。我们证明了在鸡胚中进行6-AN处理可阻止蛋白跨胚胎血液CSF屏障的转运,并且屏障性质的破坏是由于经CAV-1表达停止检测到的跨细胞小窝转运的停止。我们还显示,缺乏跨胚胎血液CSF屏障的蛋白质运输会影响神经上皮细胞的存活,增殖和神经发生,如通过神经上皮祖细胞的存活,增殖和神经发生所监测的。胚胎血CSF转运的阻滞也破坏了水向E-CSF的流入,这是脑血管生成胶原蛋白量异常增加所显示的。这些实验有助于描述控制E-CSF组成和稳态的血液CSF胚胎屏障的实际范围,以及这种控制对于早期大脑发育的实际重要性,以及阐明蛋白质和水通过跨细胞转运的机制。穿过神经外胚层的途径,增强了E-CSF在大脑发育中的关键作用。

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