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营养应激下培养的成纤维细胞经红光激光、红外激光和红光发光二极管照射后的活力。

Viability of fibroblasts cultured under nutritional stress irradiated with red laser, infrared laser, and red light-emitting diode.

机构信息

University of Cuiabá, Cuiabá School of Dentistry, Rua Estevão de Mendonça, 317 apto 501, Goiabeiras, Cuiabá, MT, 78065-480 Brazil.

出版信息

J Biomed Opt. 2011 Jul;16(7):075004. doi: 10.1117/1.3602850.

Abstract

Phototherapy is noninvasive, painless and has no known side effect. However, for its incorporation into clinical practice, more well-designed studies are necessary to define optimal parameters for its application. The viability of fibroblasts cultured under nutritional stress irradiated with either a red laser, an infrared laser, or a red light-emitting diode (LED) was analyzed. Irradiation parameters were: red laser (660 nm, 40 mW, 1 W/cm(2)), infrared laser (780 nm, 40 mW, 1 W/cm(2)), and red LED (637 ± 15 nm, 40 mW, 1 W/cm(2)). All applications were punctual and performed with a spot with 0.4 mm(2) of diameter for 4 or 8 s. The Kruskal-Wallis test and analysis of variance of the general linear model (p ≤ 0.05) were used for statistical analysis. After 72 h, phototherapy with low-intensity laser and LED showed no toxicity at the cellular level. It even stimulated methylthiazol tetrazolium assay (MTT) conversion and neutral red uptake of fibroblasts cultured under nutritional stress, especially in the group irradiated with infrared laser (p = 0.004 for MTT conversion and p < 0.001 for neutral red uptake). Considering the parameters and protocol of phototherapy used, it can be concluded that phototherapy stimulated the viability of fibroblasts cultured under nutritional deficit resembling those found in traumatized tissue in which cell viability is reduced.

摘要

光疗是非侵入性的,无痛的,并且没有已知的副作用。然而,为了将其纳入临床实践,需要进行更多精心设计的研究来确定其应用的最佳参数。分析了在营养应激下培养的成纤维细胞在受到红色激光、红外激光或红色发光二极管(LED)照射后的活力。照射参数为:红色激光(660nm,40mW,1W/cm²)、红外激光(780nm,40mW,1W/cm²)和红色 LED(637±15nm,40mW,1W/cm²)。所有应用均为点状,直径为 0.4mm²,持续时间为 4 或 8s。采用 Kruskal-Wallis 检验和一般线性模型的方差分析(p≤0.05)进行统计学分析。72 小时后,低强度激光和 LED 的光疗在细胞水平上没有毒性。它甚至刺激了在营养缺乏下培养的成纤维细胞的噻唑蓝(MTT)转化和中性红摄取,尤其是在接受红外激光照射的组中(MTT 转化率 p=0.004,中性红摄取率 p<0.001)。考虑到所使用的光疗参数和方案,可以得出结论,光疗刺激了在营养缺乏下培养的成纤维细胞的活力,类似于在创伤组织中发现的细胞活力降低的情况。

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