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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Trans/paracellular, surface/crypt, and epithelial/subepithelial resistances of mammalian colonic epithelia.
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Trans/paracellular, surface/crypt, and epithelial/subepithelial resistances of mammalian colonic epithelia.

机译:哺乳动物结肠上皮细胞的跨/旁细胞,表面/隐窝和上皮/耻骨上皮抗性。

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摘要

The epithelial barrier function of the large intestine resides in the trans- and paracellular pathways of the surface epithelium and crypts. Conventional transmural resistance and permeability measurements, however, yield only the resistance of the whole tissue and not that of its individual components. Combining conductance scanning techniques and impedance analysis, we determined the resistance of epithelial and subepithelial tissues, crypts and surface epithelium, and trans- and paracellular pathways of the mouse distal colon. The subepithelial tissue contributed 15% to the transmural resistance of 118+/-9 omega x cm2. In the epithelium proper the resistance of crypts (429+/-86 omega x cm2) exceeded that of the surface epithelium (132+/-15 omega x cm2). The paracellular resistance (3.2+/-0.4 k omega x cm2) of the surface epithelium was 23-fold higher than the transcellular resistance (137+/-16 omega x cm2), and thus the epithelium was classified as "medium tight". In order to investigate the trans- and paracellular resistances of the crypt epithelium as well, flat monolayers of HT-29/B6 cultured colon crypt cells were studied, which had a transepithelial resistance of 349+/-32 omega x cm2. With transcellular resistance (377+/-41 omega x cm2) tenfold lower than the paracellular resistance (3.9+/-1.3 k omega x cm2), this cryptal monolayer was also classified as "medium tight". Hence, considering the 1.2 times larger area of the crypt epithelium, the surface epithelium has a 4 times larger ion permeability than the crypt epithelium. However, the paracellular resistances are not different. Thus the lower transcellular resistance of the surface compared to the crypt epithelium suggests a higher density of ion channels in the apical membrane of surface cells.
机译:大肠的上皮屏障功能位于表面上皮和隐窝的跨细胞途径和旁细胞途径。然而,常规的透壁电阻和通透性测量仅产生整个组织的电阻,而不产生其单个组件的电阻。结合电导扫描技术和阻抗分析,我们确定了小鼠远端结肠的上皮和上皮下组织,隐窝和表面上皮以及跨细胞通路和旁细胞通路的抵抗力。上皮下组织对118 +/- 9Ωx cm2的透壁阻力贡献了15%。在适当的上皮中,隐窝的电阻(429 +/- 86Ωx cm2)超过表面上皮的电阻(132 +/- 15Ωx cm2)。表面上皮细胞的细胞旁电阻(3.2 +/- 0.4 k omega x cm2)比跨细胞电阻(137 +/- 16 omega x cm2)高23倍,因此上皮被分类为“中等紧密”。为了研究隐窝上皮细胞的跨细胞和旁细胞抵抗力,研究了HT-29 / B6培养的结肠隐窝细胞的平坦单层膜,其跨上皮抵抗力为349 +/- 32Ωx cm2。跨细胞抵抗力(377 +/- 41 omega x cm2)比旁细胞抵抗力(3.9 +/- 1.3 k omega x cm2)低十倍,因此该隐窝单层也被归类为“中等紧密性”。因此,考虑隐窝上皮的1.2倍大面积,表面上皮的离子渗透率是隐窝​​上皮的4倍。但是,旁细胞抵抗力没有不同。因此,与隐窝上皮相比,表面的较低跨细胞电阻表明表面细胞的顶膜中离子通道的密度较高。

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