Noske W, Strauss O, Levarlet B, Wiederholt M, Hirsch M
Eye Clinic, University Clinic Benjamin Franklin, Free University of Berlin, Germany.
J Submicrosc Cytol Pathol. 1995 Jan;27(1):1-8.
Tight junctions of cultured human non-pigmented ciliary epithelial cells were studied with the freeze-fracture technique and related to the transepithelial electrical resistance of these monolayers. Isolated tight junctional fibrils or small groups and networks of tight junctions sometimes associated with gap junctions were revealed in freeze-fracture images of the lateral plasma membrane. The tight junctions always formed incomplete belts, so that the apical and basolateral plasma membrane domains often were in continuity without morphological evidence of interposed intercellular junctions. The monolayers revealed a transepithelial resistance of 19.7 +/- 2.1 omega.cm2. Protamine induced a reversible increase of the transepithelial resistance of the cultures by 91 +/- 12%, but still the tight junctions formed incomplete belts. We conclude that contrary to complete networks of tight junctions in native non-pigmented ciliary epithelium, cultured monolayers only express incomplete belts of tight junctions which may be the morphological correlate of the relatively low transepithelial resistance of these monolayers. Interpretations on transepithelial transport and permeability characteristics of these cultures have to take into account the differences in junctional morphology from their native epithelium.
采用冷冻蚀刻技术研究了培养的人非色素睫状上皮细胞的紧密连接,并将其与这些单层细胞的跨上皮电阻相关联。在外侧质膜的冷冻蚀刻图像中,发现了孤立的紧密连接纤维或紧密连接的小群体和网络,有时与间隙连接相关。紧密连接总是形成不完整的带,因此顶端和基底外侧质膜区域常常连续,没有插入的细胞间连接的形态学证据。这些单层细胞的跨上皮电阻为19.7±2.1Ω·cm²。鱼精蛋白使培养物的跨上皮电阻可逆性增加91±12%,但紧密连接仍然形成不完整的带。我们得出结论,与天然非色素睫状上皮中完整的紧密连接网络相反,培养的单层细胞仅表达紧密连接的不完整带,这可能是这些单层细胞相对较低的跨上皮电阻的形态学相关因素。对这些培养物的跨上皮运输和通透性特征的解释必须考虑到其与天然上皮细胞连接形态的差异。