Houreld N, Abrahamse H
Faculty of Health Sciences, Laser Research Unit, University of Johannesburg, Doornfontein, South Africa.
Photomed Laser Surg. 2007 Apr;25(2):78-84. doi: 10.1089/pho.2006.990.
The aim of the present investigation was to assess morphological, cellular, and molecular effects of exposing wounded diabetic fibroblast cells to He-Ne (632.8 nm) laser irradiation at two different doses.
An alternative treatment modality for diabetic wound healing includes low-level laser therapy (LLLT). Although it's used in many countries and for many medical conditions, too many health care workers are unaware of this therapy, and there is still controversy surrounding its effectiveness.
Normal human skin fibroblast cells (WS1) were used to simulate a wounded diabetic model. The effect of LLLT (632.8 nm, 5 and 16 J/cm(2) once a day on two non-consecutive days) was determined by analysis of cell morphology, cytotoxicity, apoptosis, and DNA damage.
Cells exposed to 5 J/cm(2) showed a higher rate of migration than cells exposed to 16 J/cm(2), and there was complete wound closure by day 4. Exposure of WS1 cells to 5 J/cm(2) on two non-consecutive days did not induce additional cytotoxicity or genetic damage, whereas exposure to 16 J/cm(2) did. There was a significant increase in apoptosis in exposed cells as compared to unexposed cells.
Based on cellular morphology, exposure to 5 J/cm(2) was stimulatory to cellular migration, whereas exposure to 16 J/cm(2) was inhibitory. Exposure to 16 J/cm(2) induced genetic damage on WS1 cells when exposed to a He-Ne laser in vitro, whereas exposure to 5 J/cm(2) did not induce any additional damage.
本研究的目的是评估将受伤的糖尿病成纤维细胞暴露于两种不同剂量的氦氖(632.8nm)激光照射下的形态学、细胞和分子效应。
糖尿病伤口愈合的一种替代治疗方式包括低强度激光疗法(LLLT)。尽管它在许多国家被用于多种医疗状况,但太多医护人员并不了解这种疗法,并且其有效性仍存在争议。
使用正常人皮肤成纤维细胞(WS1)模拟受伤的糖尿病模型。通过分析细胞形态、细胞毒性、凋亡和DNA损伤来确定低强度激光疗法(632.8nm,5和16J/cm²,在两个非连续的日子里每天一次)的效果。
暴露于5J/cm²的细胞比暴露于16J/cm²的细胞显示出更高的迁移率,并且在第4天伤口完全闭合。在两个非连续的日子里将WS1细胞暴露于5J/cm²不会诱导额外的细胞毒性或遗传损伤,而暴露于16J/cm²则会。与未暴露的细胞相比,暴露的细胞中凋亡显著增加。
基于细胞形态,暴露于5J/cm²对细胞迁移有刺激作用,而暴露于16J/cm²则有抑制作用。在体外暴露于氦氖激光时,暴露于16J/cm²会对WS1细胞诱导遗传损伤,而暴露于5J/cm²不会诱导任何额外损伤。