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首页> 外文期刊>Developmental biology >A blood-CSF barrier function controls embryonic CSF protein composition and homeostasis during early CNS development.
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A blood-CSF barrier function controls embryonic CSF protein composition and homeostasis during early CNS development.

机译:在早期中枢神经系统发育过程中,血液CSF屏障功能可控制胚胎CSF蛋白组成和体内稳态。

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In vertebrates, early brain development takes place at the expanded anterior end of the neural tube, which is filled with embryonic cerebrospinal fluid (E-CSF). Most of the proteins contained within the E-CSF, which play crucial roles in CNS development, are transferred from the blood serum. Two important questions are how E-CSF is manufactured and how its homeostasis is controlled. In this respect, the timing of the blood-CSF barrier formation is controversial. Recently, the concept of a functional dynamic barrier has been introduced. This type of barrier is different from that found in adults and is adapted to the specific requirements and environment of the developing nervous system. In this study, we injected a number of proteins into the outflow of the heart and into the cephalic cavities and examined their transport rate between these two embryo compartments. The results indicated that a functional blood-CSF barrier dynamically controls E-CSF protein composition and homeostasis in chick embryos before the formation of functional choroid plexuses. We also showed that proteins are transferred through transcellular routes in a specific area of the brain stem, close to the ventral mesencephalic and prosencephalic neuroectoderm, lateral to the ventral midline, in particular blood vessels. This study contributes to our understanding of the mechanisms involved in CNS development, as this blood-CSF interface regulates the composition of E-CSF by regulating its specific composition.
机译:在脊椎动物中,早期的大脑发育发生在充满胚胎脑脊髓液(E-CSF)的神经管的扩张前端。 E-CSF中包含的大多数蛋白质在中枢神经系统的发展中起着至关重要的作用,这些蛋白质是从血清中转移过来的。两个重要的问题是E-CSF的制造方法及其动态平衡。在这方面,血液-CSF屏障形成的时间是有争议的。近来,已经引入了功能动态屏障的概念。这种类型的障碍与成人不同,可以适应神经系统发育的特定要求和环境。在这项研究中,我们将多种蛋白质注入心脏的流出液和头腔中,并检查了它们在这两个胚胎区室之间的转运速率。结果表明,在形成功能性脉络丛之前,功能性血液CSF屏障可动态控制雏鸡胚胎中的E-CSF蛋白组成和体内稳态。我们还表明,蛋白质是通过跨细胞途径在脑干的特定区域(靠近腹侧中脑和前脑神经外皮,腹侧中线,特别是血管)中的跨细胞途径转移的。这项研究有助于我们了解中枢神经系统发育的机制,因为该血液-CSF界面通过调节其特定组成来调节E-CSF的组成。

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