Nurković Jasmin, Zaletel Ivan, Nurković Selmina, Hajrović Šefćet, Mustafić Fahrudin, Isma Jovan, Škevin Aleksandra Jurišić, Grbović Vesna, Filipović Milica Kovačević, Dolićanin Zana
Department of Biomedical Sciences, State University of Novi Pazar, Novi Pazar, Serbia.
Center for Molecular Medicine and Stem Cell Research, Faculty of Medical Sciences, University of Kragujevac, Kragujevac, Serbia.
Lasers Med Sci. 2017 Jan;32(1):151-160. doi: 10.1007/s10103-016-2097-2. Epub 2016 Oct 21.
In recent years, electromagnetic field (EMF) and low-level laser (LLL) have been found to affect various biological processes, the growth and proliferation of cells, and especially that of stem cells. The aim of this study was to investigate the effects of EMF and LLL on proliferation of human adipose tissue-derived mesenchymal stem cells (hAT-MSCs) and thus to examine the impact of these therapeutic physical modalities on stem cell engraftment. hAT-MSCs were isolated from subcutaneous adipose tissue of six persons ranging in age from 21 to 56 years. EMF was applied for a period of 7 days, once a day for 30 min, via a magnetic cushion surface at a frequency of 50 Hz and an intensity of 3 mT. LLL was applied also for 7 days, once a day for 5 min, at radiation energies of 3 J/cm, with a wavelength of 808 nm, power output of 200 mW, and power density of 0.2 W/cm. Nonexposed cells (control) were cultivated under the same culture conditions. Seven days after treatment, the cells were examined for cell viability, proliferation, and morphology. We found that after 7 days, the number of EMF-treated hAT-MSCs was significantly higher than the number of the untreated cells, LLL-treated hAT-MSCs were more numerous than EMF-treated cells, and hAT-MSCs that were treated with the combination of EMF and LLL were the most numerous. EMF and/or LLL treatment did not significantly affect hAT-MSC viability by itself. Changes in cell morphology were also observed, in terms of an increase in cell surface area and fractal dimension in hAT-MSCs treated with EMF and the combination of EMF and LLL. In conclusion, EMF and/or LLL treatment accelerated the proliferation of hAT-MSCs without compromising their viability, and therefore, they may be used in stem cell tissue engineering.
近年来,人们发现电磁场(EMF)和低强度激光(LLL)会影响各种生物过程、细胞的生长和增殖,尤其是干细胞的生长和增殖。本研究的目的是调查EMF和LLL对人脂肪组织来源间充质干细胞(hAT-MSCs)增殖的影响,从而检验这些治疗性物理方式对干细胞植入的影响。hAT-MSCs取自6名年龄在21至56岁之间的人的皮下脂肪组织。通过磁垫表面以50Hz的频率和3mT的强度施加EMF,持续7天,每天一次,每次30分钟。LLL也施加7天,每天一次,每次5分钟,辐射能量为3J/cm,波长为808nm,功率输出为200mW,功率密度为0.2W/cm。未暴露的细胞(对照组)在相同的培养条件下培养。治疗7天后,检查细胞的活力、增殖和形态。我们发现,7天后,接受EMF治疗的hAT-MSCs数量显著高于未治疗的细胞,接受LLL治疗的hAT-MSCs比接受EMF治疗的细胞更多,而接受EMF和LLL联合治疗的hAT-MSCs数量最多。EMF和/或LLL治疗本身对hAT-MSC活力没有显著影响。还观察到细胞形态的变化,表现为接受EMF以及EMF和LLL联合治疗的hAT-MSCs的细胞表面积和分形维数增加。总之,EMF和/或LLL治疗加速了hAT-MSCs的增殖,而不影响其活力,因此,它们可用于干细胞组织工程。