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Chronological Gene Expression of Human Gingival Fibroblasts with Low Reactive Level Laser (LLL) Irradiation

机译:低反应性水平激光(LLL)辐照的人牙龈成纤维细胞的年代基因表达

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摘要

Though previously studies have reported that Low reactive Level Laser Therapy (LLLT) promotes wound healing, molecular level evidence was uncleared. The purpose of this study is to examine the temporal molecular processes of human immortalized gingival fibroblasts (HGF) by LLLT by the comprehensive analysis of gene expression. HGF was seeded, cultured for 24 h, and then irradiated with a Nd: YAG laser at 0.5 W for 30 s. After that, gene differential expression analysis and functional analysis were performed with DNA microarray at 1, 3, 6 and 12 h after the irradiation. The number of genes with up- and downregulated differentially expression genes (DEGs) compared to the nonirradiated group was large at 6 and 12 h after the irradiation. From the functional analysis results of DEGs, Biological Process (BP) based Gene Ontology (GO), BP ‘the defense response’ is considered to be an important process with DAVID. Additionally, the results of PPI analysis of DEGs involved in the defense response with STRING, we found that the upregulated DEGs such as CXCL8 and NFKB1, and the downregulated DEGs such as NFKBIA and STAT1 were correlated with multiple genes. We estimate that these genes are key genes on the defense response after LLLT.
机译:虽然先前的研究报告说,较低的反应水平激光治疗(LLLT)促进伤口愈合,分子水平证据未明确。本研究的目的是通过基因表达的综合分析来检查LLLT的人类永生化牙龈细胞(HGF)的时间分子过程。将HGF接种,培养24小时,然后用Nd:YAG激光照射在0.5W,持续30秒。之后,在照射后1,3,6和12h的DNA微阵列进行基因差异表达分析和功能分析。与非辐射基团相比,与非辐射基团的差异和下调的差异表达基因(DEGS)的基因数在照射后6和12小时大。从DEG的功能分析结果,基于生物过程(BP)的基因本体(GO),BP'防御响应'被认为是大卫的重要过程。另外,涉及串的防御响应的DEG的PPI分析结果,我们发现诸如CXCL8和NFKB1等上调的次数,以及诸如NFKBIA和STAT1的下调的DEGS与多基因相关。我们估计这些基因是在LLTT之后的防御反应的关键基因。

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