Arjmand Babak, Safari-Alighiarloo Nahid, Razzaghi Mohhamadreza, Rezaei Tavirani Mostafa, Rostami Nejad Mohammad, Rezaei Tavirani Majid
Cell Therapy and Regenerative Medicine Research Center, Endocrinology and Metabolism Molecular-Cellular Sciences Institute, Tehran University of Medical Sciences, Tehran, Iran.
Endocrine Research Center, Institute of Endocrinology and Metabolism, Iran University of Medical Sciences, Tehran, Iran.
J Lasers Med Sci. 2021 Dec 30;12:e91. doi: 10.34172/jlms.2021.91. eCollection 2021.
Widespread application of lasers in different fields of medicine implies more investigations into the molecular mechanism of laser effects on the human body. Network analysis of the dysregulated genes of samples are irradiated by a UV laser and harvested 30 minutes after radiation compared with a 15-minute group is the aim of this research. The significant dysregulated genes interacted via the STRING database, and the central nodes were determined by "Networkanalyzer" application of Cytoscape software. The critical genes and the related biological terms were identified via action map analysis and gene ontology assessment. The gene expression profiles of the samples with 30-minute post-radiation time were different from the samples with 15 minutes of post-radiation time. 9 potent central genes, 50% of which were similar to the nodes of the 15-minute group, were identified. The terms "positive regulation of telomere maintenance" were targeted in the two sample groups. In spite of large alteration in the gene expression profiles of the samples, the results indicated that the main affected biological term for the 15-minute and 30-minute groups was similar.
激光在医学不同领域的广泛应用意味着需要对激光作用于人体的分子机制进行更多研究。本研究的目的是对紫外线激光照射后的样本失调基因进行网络分析,与辐射15分钟后的样本相比,分析辐射30分钟后收获的样本。通过STRING数据库对显著失调基因进行相互作用分析,并通过Cytoscape软件的“Networkanalyzer”应用程序确定中心节点。通过作用图谱分析和基因本体评估确定关键基因和相关生物学术语。辐射后30分钟样本的基因表达谱与辐射后15分钟样本的不同。确定了9个有效的中心基因,其中50%与15分钟组的节点相似。两个样本组的目标都是“端粒维持的正调控”。尽管样本的基因表达谱有很大变化,但结果表明,15分钟组和30分钟组主要受影响的生物学术语相似。