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一种能够支持人视网膜色素上皮细胞分化为功能极化单层细胞的细胞培养基。

A cell culture medium that supports the differentiation of human retinal pigment epithelium into functionally polarized monolayers.

作者信息

Hu J, Bok D

机构信息

Jules Stein Eye Institute, School of Medicine, University of California, Los Angeles, CA 90095, USA.

出版信息

Mol Vis. 2001 Feb 7;7:14-9.

Abstract

PURPOSE

The retinal pigment epithelium (RPE) in vivo is known to have polarized membrane domains that are essential for its normal function. Unless the proper cell culture conditions are used, these polarized features are often lost. In the past, the use of Chee's Essential Medium (CEM) in our RPE cultures has produced functional polarity of the cell monolayers. Unfortunately, except by custom formulation, which is costly, this product is no longer commercially available. We therefore sought to develop a replacement culture medium that would support morphological and functional polarity of RPE membrane domains when the cells are removed from the in vivo milieu.

METHODS

To test the performance of this CEM replacement medium in comparison with three other culture media, we grew fetal human RPE to confluence on Millipore Millicell culture wells. We then used Na,K ATPase as a membrane domain marker by displaying it with polyclonal antibodies. This marker was chosen because it is not always properly polarized in culture. Immunofluorescence was imaged by laser confocal microscopy of whole mounted intact monolayers on their Millicell supports. We also used transepithelial resistance (TER) as a measurement of functional polarity as well as bestrophin protein expression as an index of cell differentiation. The expression of Na,K ATPase and bestrophin was confirmed by Western blot analysis of whole RPE cell extracts.

RESULTS

Immunofluorescence labeling of cultured RPE Na,K ATPase was observed exclusively on the apical membrane when the CEM replacement or DMEM with high glucose was used. However Na,K ATPase was not completely polarized in DMEM/F12 medium and the cells did not express detectable Na,K ATPase in DMEM with low glucose. Western blots showed that Na,K ATPase was expressed at similar levels in CEM replacement, DMEM with high glucose and DMEM/F12 as indicated by the intensity of an approximately 100 kDa band representing the a subunit. The CEM replacement gave superior TERs as well, ranging from about 2 to 5.6 fold higher than the other media. Bestrophin protein was readily detectable by Western blot in CEM replacement medium whereas it was barely detectable in DMEM/F12 and undetectable in DMEM with high and low glucose.

CONCLUSIONS

We have provided immunocytochemical evidence that the CEM replacement medium supports the appropriate membrane domain expression of Na,K ATPase when the cells are grown on Millicell chambers. Excellent TERs and robust expression of bestrophin are also observed. This combination of features was not observed when other, standard culture media were used. The results suggest that, under these conditions, cultured human RPE develops a highly differentiated and functional polarity appropriate for the in vitro modeling of RPE in vivo function.

摘要

目的

已知视网膜色素上皮(RPE)在体内具有极化的膜结构域,这对其正常功能至关重要。除非使用合适的细胞培养条件,这些极化特征往往会丧失。过去,在我们的RPE培养中使用Chee's Essential Medium(CEM)可使细胞单层产生功能性极性。不幸的是,除了定制配方(成本高昂)外,该产品已不再商业化供应。因此,我们试图开发一种替代培养基,当细胞脱离体内环境时,该培养基能支持RPE膜结构域的形态和功能极性。

方法

为了测试这种CEM替代培养基与其他三种培养基相比的性能,我们将人胎儿RPE培养至汇合在密理博Millicell培养孔上。然后,我们通过用多克隆抗体展示Na,K ATP酶,将其作为膜结构域标记物。选择该标记物是因为它在培养中并不总是能正确极化。通过激光共聚焦显微镜对其Millicell支架上完整的单层细胞进行免疫荧光成像。我们还使用跨上皮电阻(TER)作为功能极性的测量指标,并将最佳rophin蛋白表达作为细胞分化的指标。通过对整个RPE细胞提取物进行蛋白质印迹分析来确认Na,K ATP酶和最佳rophin的表达。

结果

当使用CEM替代培养基或高糖DMEM时,培养的RPE的Na,K ATP酶免疫荧光标记仅在顶端膜上观察到。然而,在DMEM/F12培养基中,Na,K ATP酶并未完全极化,并且在低糖DMEM中细胞未表达可检测到的Na,K ATP酶。蛋白质印迹显示,代表α亚基的约100 kDa条带的强度表明,在CEM替代培养基、高糖DMEM和DMEM/F12中,Na,K ATP酶以相似水平表达。CEM替代培养基的TER也更高,比其他培养基高约2至5.6倍。在CEM替代培养基中通过蛋白质印迹很容易检测到最佳rophin蛋白,而在DMEM/F12中几乎检测不到,在高糖和低糖DMEM中均未检测到。

结论

我们提供了免疫细胞化学证据,表明当细胞在Millicell小室上生长时,CEM替代培养基支持Na,K ATP酶的适当膜结构域表达。还观察到了优异的TER和最佳rophin的强劲表达。使用其他标准培养基时未观察到这种特征组合。结果表明,在这些条件下,培养的人RPE形成了高度分化且功能极性,适合于RPE体内功能的体外建模。

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