Cui Hui Song, Joo So Young, Lee Dae Hoon, Yu Joo Hyang, Jeong Je Hoon, Kim June-Bum, Seo Cheong Hoon
Burn Institute, Department of Rehabilitation Medicine, Hangang Sacred Heart Hospital, College of Medicine, Hallym University, Seoul, South Korea.
Department of Rehabilitation Medicine, Hangang Sacred Heart Hospital, College of Medicine, Hallym University, Seoul, South Korea.
Arch Biochem Biophys. 2017 Sep 15;630:9-17. doi: 10.1016/j.abb.2017.07.012. Epub 2017 Jul 24.
Numerous studies on the application of low temperature plasma (LTP) have produced impressive results, including antimicrobial, antitumor, and wound healing effects. Although LTP research has branched out to include medical applications, the detailed effects and working mechanisms of LTP on wound healing have not been fully investigated. Here, we investigated the potential effect of inducing growth factor after exposure to LTP and demonstrated the increased expression of angiogenic growth factor mediated by LTP-induced HIF1α expression in primary cultured human dermal fibroblasts. In cell viability assays, fibroblast viability was reduced 6 h and 24 h after LTP treatment for only 5 min, and pre-treating with NAC, a ROS scavenger, prevented cell loss. Fibroblast migration significantly increased at 6 h and 24 h in scratch wound healing assays, the expression of cytokines significantly changed, and regulatory growth factors were induced at 6 h and 24 h after exposure to LTP in RT-PCR or ELISAs. Specifically, LTP treatment significantly induced the expression of HIF1α, an upstream regulator of angiogenesis. Pre-treatment with the inhibitor CAY10585 abolished HIF1α expression and prevented LTP-induced angiogenic growth factor production according to immunoblotting, immunocytochemistry, and ELISA results. Taken together, our results provide information on the molecular mechanism by which LTP application may promote angiogenesis and will aid in developing methods to improve wound healing.
众多关于低温等离子体(LTP)应用的研究已取得令人瞩目的成果,包括抗菌、抗肿瘤和伤口愈合效果。尽管LTP研究已扩展至医学应用领域,但LTP对伤口愈合的详细作用及作用机制尚未得到充分研究。在此,我们研究了暴露于LTP后诱导生长因子的潜在作用,并证明在原代培养的人皮肤成纤维细胞中,LTP诱导的HIF1α表达介导了血管生成生长因子表达的增加。在细胞活力测定中,仅5分钟的LTP处理后6小时和24小时,成纤维细胞活力降低,而用活性氧清除剂NAC预处理可防止细胞损失。在划痕伤口愈合试验中,6小时和24小时时成纤维细胞迁移显著增加,细胞因子表达显著变化,在RT-PCR或ELISA检测中,暴露于LTP后6小时和24小时诱导了调节性生长因子。具体而言,LTP处理显著诱导了血管生成的上游调节因子HIF1α的表达。根据免疫印迹、免疫细胞化学和ELISA结果,用抑制剂CAY10585预处理可消除HIF1α表达并阻止LTP诱导的血管生成生长因子产生。综上所述,我们的结果提供了关于LTP应用可能促进血管生成的分子机制的信息,并将有助于开发改善伤口愈合的方法。