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果蝇幼虫血脑界面中脊椎动物阴离子位点的类似物。

Analog of vertebrate anionic sites in blood-brain interface of larval Drosophila.

作者信息

Juang J L, Carlson S D

机构信息

Department of Entomology, University of Wisconsin, Madison 53706.

出版信息

Cell Tissue Res. 1994 Jul;277(1):87-95. doi: 10.1007/BF00303084.

Abstract

The blood-brain barrier ensures brain function in vertebrates and in some invertebrates by maintaining ionic integrity of the extraneuronal bathing fluid. Recent studies have demonstrated that anionic sites on the luminal surface of vascular endothelial cells collaborate with tight junctions to effect this barrier in vertebrates. We characterize these two analogous barrier factors for the first time on Drosophila larva by an electron-dense tracer and cationic gold labeling. Ionic lanthanum entered into but not through the extracellular channels between perineurial cells. Tracer is ultimately excluded from neurons in the ventral ganglion mainly by an extensive series of (pleated sheet) septate junctions between perineurial cells. Continuous junctions, a variant of the septate junction, were not as efficient as the pleated sheet variety in blocking tracer. An anionic domain now is demonstrated in Drosophila central nervous system through the use of cationic colloidal gold in LR White embedment. Anionic domains are specifically stationed in the neural lamella and not noted in the other cell levels of the blood-brain interface. It is proposed that in the central nervous system of the Drosophila larva the array of septate junctions between perineurial cells is the physical barrier, while the anionic domains in neural lamella are a "charge-selective barrier" for cations. All of these results are discussed relative to analogous characteristics of the vertebrate blood-brain barrier.

摘要

血脑屏障通过维持神经外液的离子完整性来确保脊椎动物和某些无脊椎动物的脑功能。最近的研究表明,血管内皮细胞腔表面的阴离子位点与紧密连接协同作用,在脊椎动物中形成这一屏障。我们首次通过电子致密示踪剂和阳离子金标记在果蝇幼虫上对这两个类似的屏障因子进行了表征。离子镧进入神经周细胞之间的细胞外通道,但并非穿过这些通道。示踪剂最终主要通过神经周细胞之间一系列广泛的(褶皱片状)分隔连接而被排除在腹神经节的神经元之外。连续连接作为分隔连接的一种变体,在阻断示踪剂方面不如褶皱片状连接有效。通过在LR White包埋中使用阳离子胶体金,现在在果蝇中枢神经系统中证明了一个阴离子结构域。阴离子结构域专门位于神经板中,在血脑界面的其他细胞层面未观察到。有人提出,在果蝇幼虫的中枢神经系统中,神经周细胞之间的分隔连接阵列是物理屏障,而神经板中的阴离子结构域是阳离子的“电荷选择性屏障”。所有这些结果都相对于脊椎动物血脑屏障的类似特征进行了讨论。

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