Salkın Hasan, Basaran Kemal Erdem
Vocational School, Department of Medical Services and Techniques, Program of Pathology Laboratory Techniques, Beykent University, Istanbul, Turkey.
Faculty of Medicine, Department of Physiology, Erciyes University, Kayseri, Turkey.
Connect Tissue Res. 2023 Jan;64(1):14-25. doi: 10.1080/03008207.2022.2083613. Epub 2022 Jun 1.
The effect of ibuprofen, an NSAID, on biological characteristics such as proliferation, viability, DNA damage and cell cycle in dental pulp derived stem cells (DPSCs) can be important for regenerative medicine. Our aim is to investigate how low and high doses of ibuprofen affect stem cell characteristics in DPSCs.
DPSCs were isolated from human teeth and characterized by flow cytometry and differentiation tests. Low dose (0.1 mmol/L) and high dose (3 mmol/L) ibuprofen were administered to DPSCs. Surface markers between groups were analyzed by immunofluorescence staining. Membrane depolarization, DNA damage, viability and cell cycle analysis were performed between groups using biological activity test kits. Cellular proliferation was measured by the MTT and cell count kit. Statistical analyzes were performed using GraphPad Prism software.
High dose ibuprofen significantly increased CD44 and CD73 expression in DPSCs. High-dose ibuprofen significantly reduced mitochondrial membrane depolarization in DPSCs. It was determined that DNA damage in DPSCs decreased significantly with high dose ibuprofen. Parallel to this, cell viability increased significantly in the ibuprofen applied groups. High-dose ibuprofen was found to increase mitotic activity in DPSCs. Proliferation in DPSCs increased in parallel with the increase in mitosis stage because of high-dose ibuprofen administration compared to the control and low-dose ibuprofen groups. Our proliferation findings appeared to support cell cycle analyses.
High dose ibuprofen improved the immunophenotypes and biological activities of DPSCs. The combination of ibuprofen in the use of DPSCs in regenerative medicine can make stem cell therapy more effective.
非甾体抗炎药布洛芬对牙髓干细胞(DPSCs)的增殖、活力、DNA损伤和细胞周期等生物学特性的影响,对再生医学可能具有重要意义。我们的目的是研究低剂量和高剂量布洛芬如何影响DPSCs的干细胞特性。
从人牙中分离出DPSCs,并通过流式细胞术和分化试验进行鉴定。将低剂量(0.1 mmol/L)和高剂量(3 mmol/L)布洛芬应用于DPSCs。通过免疫荧光染色分析各组之间的表面标志物。使用生物活性测试试剂盒在各组之间进行膜去极化、DNA损伤、活力和细胞周期分析。通过MTT和细胞计数试剂盒测量细胞增殖。使用GraphPad Prism软件进行统计分析。
高剂量布洛芬显著增加了DPSCs中CD44和CD73的表达。高剂量布洛芬显著降低了DPSCs中的线粒体膜去极化。确定高剂量布洛芬使DPSCs中的DNA损伤显著降低。与此同时,布洛芬应用组的细胞活力显著增加。发现高剂量布洛芬可增加DPSCs中的有丝分裂活性。与对照组和低剂量布洛芬组相比,由于高剂量布洛芬给药,DPSCs中的增殖与有丝分裂阶段的增加平行。我们的增殖结果似乎支持细胞周期分析。
高剂量布洛芬改善了DPSCs的免疫表型和生物学活性。在再生医学中使用DPSCs时联合使用布洛芬可使干细胞治疗更有效。