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首页> 外文期刊>Cytometry: The Journal of the Society for Analytical Cytology >Coating of coverslips with glow-discharged carbon promotes cell attachment and spreading probably due to carboxylic groups
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Coating of coverslips with glow-discharged carbon promotes cell attachment and spreading probably due to carboxylic groups

机译:盖玻片上涂有辉光放电的碳可能会由于羧基而促进细胞附着和扩散

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摘要

Background: For high-resolution microscopy, cells have to be analyzed through thin glass coverslips. Therefore, it is necessary to culture cells on coverslips for preservation of cell morphology. We found cell attachment and spreading to be relatively slow processes, even when cells were plated on coated coverslips. This slowness presents a problem, particularly when synchronized cell populations are used. Methods: In this paper, we present a method that is based on grow-discharged carbon coating of coverslips which promotes rapid attachment and spreading of cells, enabling rapid analysis of cells after plating. Results obtained with carbon-coated coverslips were compared with those of other types of coating. Two fibroblast lines, an epithelial cell line, and a carcinoma cell line were tested. Results and Conclusions: All cell lines showed a rapid adhesion on carbon-coated coverslips. With fibroblasts we found the carbon coating to be superior to other coatings tested, mainly because the carbon did not influence cell morphology. Using synchronized or irradiated cells produced similar results. The superior performance of carbon coating is probably due to carboxylic groups on the glow-discharged carbon layer. The carbon layer does not interfere with microscopy or immunocytochemical staining procedures. Cytometry 39:295-299, 2000. (C) 2000 Wiley-Liss, Inc. [References: 12]
机译:背景:对于高分辨率显微镜,必须通过薄玻璃盖玻片分析细胞。因此,有必要在盖玻片上培养细胞以保持细胞形态。我们发现,即使将细胞铺在涂层盖玻片上,细胞的附着和扩散过程也相对较慢。这种缓慢性带来了一个问题,尤其是在使用同步细胞群体时。方法:在本文中,我们提出了一种基于盖玻片的生长放电碳涂层的方法,该涂层可促进细胞的快速附着和扩散,从而能够在电镀后快速分析细胞。用碳涂层盖玻片获得的结果与其他类型的涂层进行了比较。测试了两个成纤维细胞系,上皮细胞系和癌细胞系。结果与结论:所有细胞系均显示出对碳涂层盖玻片的快速粘附。对于成纤维细胞,我们发现碳涂层要优于其他测试的涂层,主要是因为碳不影响细胞形态。使用同步或辐射的细胞产生相似的结果。碳涂层的优越性能可能归因于辉光放电碳层上的羧基。碳层不会干扰显微镜或免疫细胞化学染色程序。 Cytometry 39:295-299,2000。(C)2000 Wiley-Liss,Inc. [参考:12]

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