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Tight junctions in the choroid plexus epithelium. A freeze-fracture study including complementary replicas

机译:脉络丛上皮的紧密连接。包含互补复制品的冻裂研究

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摘要

The tight junctions of the choroid plexus epithelium of rats were studied by freeze-fracture. In glutaraldehyde-fixed material, the junctions exhibited rows of aligned particles and short bars on P- faces, the E-faces showing grooves bearing relatively many particles. A particulate nature of the junctional strands could be established by using unfixed material. The mean values of junctional strands from the lateral, third, and fourth ventricles of Lewis rats were 7.5 +/- 2.6, 7.4 +/- 2.2, and 7.5 +/- 2.4; and of Sprague-Dawley rats 7.7 +/- 3.4, 7.4 +/- 2.3, and 7.3 +/- 1.6. Examination of complementary replicas (of fixed tissue) showed that discomtinuities are present in the junctional strands: 42.2 +/- 4.6% of the length of measured P-face ridges were discontinuities, and the total amount of complementary particles in E- face grooves constituted 17.8 +/- 4.4% of the total length of the grooves, thus approximately 25% of the junctional strands can be considered to be discontinuous. The average width of the discontinuities, when corrected for complementary particles in E-face grooves, was 7.7 +/- 4.5 nm. In control experiments with a "tighter" tight junction (small intestine), complementary replicas revealed that the junctional fibrils are rather continuous and that the very few particles in E-face grooves mostly filled out discontinuities in the P- face ridges. Approximately 5% of the strands were found to be discontinuous. These data support the notion that the presence of pores in the junctional strands of the choroid plexus epithelium may explain the high transepithelial conductance in a "leaky" epithelium having a high number of junctional strands. However, loss of junctional material during fracturing is also considered as an alternative explanation of the present results.
机译:通过冷冻断裂研究大鼠脉络丛上皮的紧密连接。在戊二醛固定的材料中,接合处在P面上显示成排的对齐颗粒和短条,而E面显示带有相对较多颗粒的凹槽。可以通过使用未固定的材料来确定连接线的颗粒性质。 Lewis大鼠的侧脑室,第三脑室和第四脑室的连接链平均值为7.5 +/- 2.6、7.4 +/- 2.2和7.5 +/- 2.4。 Sprague-Dawley大鼠为7.7 +/- 3.4、7.4 +/- 2.3和7.3 +/- 1.6。对(固定组织的)互补复制品的检查表明,在连接链中存在不连续性:测得的P面脊的长度的42.2 +/- 4.6%是不连续的,构成E面凹槽的互补颗粒总数凹槽总长度的17.8 +/- 4.4%,因此大约25%的连接线可以认为是不连续的。当校正E面凹槽中的互补颗粒时,不连续的平均宽度为7.7 +/- 4.5nm。在具有“更紧密的”紧密连接(小肠)的对照实验中,互补的复制品显示,连接纤维非常连续,并且E形凹槽中的极少颗粒大部分填充了P面脊中的不连续性。发现约5%的链是不连续的。这些数据支持了脉络丛上皮的连接链中存在孔的观点可能解释了具有大量连接链的“渗漏”上皮中的高跨上皮电导。但是,压裂过程中结合材料的损失也被认为是对本研究结果的一种替代解释。

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