首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Comparison of the ability of basement membranes produced by corneal endothelial and mouse-derived Endodermal PF-HR-9 cells to support the proliferation and differentiation of bovine kidney tubule epithelial cells in vitro
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Comparison of the ability of basement membranes produced by corneal endothelial and mouse-derived Endodermal PF-HR-9 cells to support the proliferation and differentiation of bovine kidney tubule epithelial cells in vitro

机译:角膜内皮细胞和小鼠来源的内胚层PF-HR-9细胞产生的基底膜在体外支持牛肾小管上皮细胞增殖和分化的能力比较

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摘要

The proliferation and morphological differentiation of bovine kidney collecting-tubule epithelial cells has been examined as a function of substrata and plasma factors. Collecting kidney tubule explant maintained in vitro gave rise to two distinct cell populations; one was composed mostly of fibroblastic cells whereas the other was epithelioid (EP cells). The proliferation of fibroblastic cells when exposed to serum-supplemented medium was best expressed when cells were maintained on a basement membrane produced by bovine corneal endothelial cells. This basement membrane has a composition, which in previous studies has been shown to favor the proliferation of mesenchymal cells. In contrast, the proliferation of EP cells was best expressed when cells were maintained on a basement membrane produced by the mouse-derived endodermal cell line PF-HR-9 (HR-9-BM). This basement membrane has a biochemical composition very similar to the basement membrane underlying the kidney tubules. Although the fibroblast confluent monolayer maintained on bovine corneal endothelial cell extracellular matrix did not undergo morphogenesis, the confluent monolayer of EP cells maintained on HR-9-BM shows hemicyst formation, suggesting that they were capable of vectorial fluid transport. They also built a complex three-dimensional kidney tubulelike network. Some tubules became grossly visible and floated into the tissue culture medium, remaining tethered to the cell monolayer at either end of the tubule. On an ultrastructural level, the tubules consisted of cells held together with junctional complexes arranged so as to form a lumen. The smallest lumen were bordered by 2-3 cells, and the largest ones by 8-15 cells. The lumens of the larger tubules did contain granular fibrillar and amorphous debris. Low-density EP cell cultures maintained on HR-9- BM could be induced to proliferate at a rate approaching that of cultures exposed to serum when they were exposed to medium supplemented with high-density lipoprotein (HDL, 750 micrograms protein/ml) and transferrin (50 micrograms/ml). When exposed to HDL concentrations equal or lower than 250 micrograms protein/ml, low-density cultures proliferated at a slow rate and readily formed tubulelike structures. This observation indicates that EP cells do not need to reach confluence to undergo morphogenesis, and that HDL, which in the presence of transferrin supports the cell proliferation, can favor their differentiation into tubulelike structures once its concentration becomes limiting for mitogenesis.
机译:已经检查了牛肾收集管上皮细胞的增殖和形态分化与基质和血浆因子的关系。收集体外维持的肾小管外植体产生了两个不同的细胞群。一个主要由成纤维细胞组成,而另一个则由上皮样细胞(EP细胞)组成。当将细胞保持在牛角膜内皮细胞产生的基底膜上时,成纤维细胞的增殖最好地表达。该基底膜具有组成,在先前的研究中已经证明其有利于间充质细胞的增殖。相反,当细胞保持在由小鼠衍生的内胚层细胞系PF-HR-9(HR-9-BM)产生的基底膜上时,EP细胞的增殖最佳表达。该基底膜的生化组成与肾小管下面的基底膜非常相似。尽管维持在牛角膜内皮细胞胞外基质上的成纤维细胞汇合单层未发生形态发生,但维持在HR-9-BM上的EP细胞汇合单层显示出半囊形成,表明它们能够进行载体性液体转运。他们还建立了一个复杂的三维肾小管样网络。一些小管变得完全可见,并漂浮在组织培养基中,并保留在小管两端的细胞单层。在超微结构水平上,肾小管由细胞组成,细胞与连接复合物保持在一起,从而形成管腔。最小的管腔以2-3个细胞为边界,最大的管腔以8-15个细胞为边界。较大的小管腔确实含有粒状原纤维和无定形碎片。当维持在HR-9-BM上的低密度EP细胞培养物暴露于补充有高密度脂蛋白(HDL,750微克蛋白/ ml)的培养基时,其增殖速率接近暴露于血清的培养物。转铁蛋白(50微克/毫升)。当暴露于等于或低于250微克蛋白质/毫升的HDL浓度时,低密度培养物以缓慢的速度增殖,并容易形成小管状结构。该观察结果表明EP细胞不需要达到融合就可以进行形态发生,并且一旦转铁蛋白的存在浓度限制了有丝分裂作用,存在运铁蛋白的HDL就可以促进它们分化成小管样结构。

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