在短期口腔粘膜细胞体外培养过程中,稳态、趋化性以及有机和无机反应过程显著上调

Q4 Biochemistry, Genetics and Molecular Biology
B. Borowiec, S. Ciesiółka, Krzysztof Janowicz, P. Celichowski, A. Bryja, Lisa Moncrieff, Greg Hutchings, C. Dompe, B. Kempisty, J. Shibli, P. Mozdziak, K. Gerreth, M. Dyszkiewicz-Konwińska
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引用次数: 0

摘要

粘膜出现在全身的各个部位,发挥着相似的功能。然而,它们根据粘膜的位置而有所不同。它在呼吸系统、泌尿生殖系统和消化系统中起屏障作用。在这项研究中,我们将严格关注口腔黏膜。角化细胞和成纤维细胞主要构成口腔黏膜的结构,受多种因素的影响。作为构成动物有机体的百万个部件之一,它们参与了各种各样的过程。在这项研究中,我们将试图证实,在口腔粘膜细胞的体外培养中,我们选择的基因的表达发生了重大变化,这些变化与生物体的稳态、趋化和有机/无机反应等过程有关。本研究选用20头青春期长白杂交后备母猪。屠宰后,获得颊袋粘膜样本并运送到实验室。按照方案准备和处理切除的组织。最后的颗粒在补充的DMEM中重悬。一旦培养达到70-80%的融合度,就进行传代。每个混合样本的总RNA进行两轮意义cDNA扩增。在芯片上处理cDNA。对扫描到的阵列进行分析。这些文件被导入下游数据分析软件。DAVID分析显示,不同表达的基因属于56个基因本体群。在本文中,我们重点介绍了“细胞二价无机阳离子稳态”、“化学稳态”、“趋化性”、“稳态过程”和“对有机物质的响应”等GO BP术语。对这些基因进行分层聚类处理。总之,我们收集的数据显示,基因表达的变化主要发生在口腔黏膜组织细胞培养的30天。我们假设所指示的基因可能是研究过程的新基因标记。题目:口腔黏膜细胞的内稳态
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The processes of homeostasis, chemotaxis and organic and inorganic response are significantly up-regulated during short-term oral mucosal cells in vitro cultivation
Abstract Mucous membranes appear in various parts of the whole body performing similar functions. However, they differ based on where the mucosa is located. It functions as a barrier in such systems as: respiratory, urogenital and digestive . In this study we will be focusing strictly on the oral mucosa. Keratinocytes and fibroblasts, which mainly form the structure of the oral mucosa, are subjected to numerous factors. Being one of the million parts that build the animal organism, they are involved in various processes. In this study, we will try to confirm that in the in vitro culture of oral mucosa cells, the expression of our selected genes undergoes significant changes which are tied to such processes as: homeostasis, chemotaxis and organic/inorganic response of the organism. For this study, 20 pubertal crossbred Landrace gilts were used. After slaughter, samples of buccal pouch mucosa were obtained and transported to the laboratory. The excised tissue was prepared and processed due to protocols. The final pellet was resuspended in supplemented DMEM. Once the cultures attained 70–80% confluency, they were passaged. Total RNA from each pooled sample was subjected to two rounds of sense cDNA amplification. The cDNA was processed on microarrays. Analysis of the scanned arrays was performed. The files were imported into downstream data analysis software. The DAVID analysis showed that differently expressed genes belongs to 56 Gene ontology groups. In this paper we focused on “cellular divalent inorganic cation homeostasis”, “chemical homeostasis”, “chemotaxis”, “homeostatic process” and “response to organic substance” GO BP terms. These sets of genes were subjected to hierarchical clusterization procedure. In summary, the data we collected showed primarily changes in gene expression that occurred in the thirty-day cell culture of oral mucosa tissue. We assume that indicated genes could be new gene markers for studied processes. Running title: Homeostasis in oral mucosa cells
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来源期刊
Medical Journal of Cell Biology
Medical Journal of Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
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