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原代人皮肤成纤维细胞中响应周期性机械拉伸的基因表达。

Gene expression in response to cyclic mechanical stretch in primary human dermal fibroblasts.

作者信息

Reichenbach Maria, Reimann Kerstin, Reuter Hendrik

机构信息

Research Skin Care, Beiersdorf AG, Unnastraße 48, 20245 Hamburg, Germany.

出版信息

Genom Data. 2014 Oct 16;2:335-9. doi: 10.1016/j.gdata.2014.09.010. eCollection 2014 Dec.

Abstract

The human dermal skin is permanently exposed to mechanical stress, for instance during facial expression, which might cause wrinkles with age. Cyclic mechanical stretching of cells results in cellular and cytoskeleton alignment perpendicular to the stretch direction regulating cellular response. With gene expression profiling it was aimed to identify the differentially expressed genes associated with the regulation of the cytoskeleton to investigate the stretch-induced cell alignment mechanism. Here, the transcription activity of the genome in response to cyclic mechanical stress was measured using DNA microarray technology with Agilent SurePrint G3 Human GE 8x60k Microarrays, based on the overall measurement of the mRNA. Gene expression was measured at the beginning of the alignment process showing first reoriented cells after 5 h stretching and at the end after 24 h, where nearly all cells are aligned. Gene expression data of control vs. stretched primary human dermal fibroblasts after 5 h and 24 h demonstrated the regulation of differentially expressed genes associated with metabolism, differentiation and morphology and were deposited at http://www.ncbi.nlm.nih.gov/geo with the accession number GSE58389.

摘要

人类真皮皮肤始终暴露于机械应力之下,例如在面部表情过程中,这可能随着年龄增长导致皱纹产生。细胞的周期性机械拉伸会导致细胞和细胞骨架沿垂直于拉伸方向排列,从而调节细胞反应。通过基因表达谱分析,旨在鉴定与细胞骨架调节相关的差异表达基因,以研究拉伸诱导的细胞排列机制。在此,基于mRNA的整体测量,使用安捷伦SurePrint G3人类基因表达8x60k微阵列的DNA微阵列技术测量了基因组响应周期性机械应力的转录活性。在排列过程开始时(拉伸5小时后显示首次重新定向的细胞)以及结束时(24小时后几乎所有细胞都已排列)测量基因表达。对照与拉伸后的原代人真皮成纤维细胞在5小时和24小时后的基因表达数据证明了与代谢、分化和形态相关的差异表达基因的调节,并已存入http://www.ncbi.nlm.nih.gov/geo,登录号为GSE58389。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3180/4535970/223a07c0e1c8/gr1.jpg

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