Almeida-Lopes L, Rigau J, Zângaro R A, Guidugli-Neto J, Jaeger M M
Institute for Research and Development, Universidade Vale do Paraíba-SJC, Brazil.
Lasers Surg Med. 2001;29(2):179-84. doi: 10.1002/lsm.1107.
The low level laser therapy (LLLT) has been used in Dentistry to improve wound healing. In order to analyse the effect of LLLT on the in vitro proliferation of gingival fibroblasts we developed a primary culture of human gingival fibroblasts.
STUDY DESIGN/MATERIALS AND METHODS: The cell line named LMF was grown in Dulbecco's Modified Eagle's medium (DME) with either 5% (nutritional deficit) or 10% fetal bovine serum (fbs). Laser irradiation was carried out with diode lasers with the following wavelengths: 670 nm (L1), 780 nm (L2), 692 nm (L3), and 786 nm (L4). The fluence was fixed in 2 J/cm(2). For growth analysis, control (not irradiated) and treated cultures (irradiated) were plated in 60 mm diameter culture dishes for 12 h before the irradiation.
We found that cells cultured in nutritional deficit condition grown in medium supplemented by only 5% fbs presented a cell proliferation rate significantly smaller that cell grown in ideal culture conditions (10% fbs). However, when irradiated, cells in nutritional deficit presented cell growth similar or higher than that of control cells grown in ideal culture conditions. Using the same fluence, the infrared laser induced a higher cell proliferation than visible laser when the power outputs were different. However, lasers of equal power output presented similar effect on cell growth independently of their wavelengths.
The LLLT acts by improving the in vitro fibroblast proliferation and a smaller laser exposure time results in higher proliferation.
低强度激光疗法(LLLT)已被应用于牙科领域以促进伤口愈合。为了分析LLLT对牙龈成纤维细胞体外增殖的影响,我们建立了人牙龈成纤维细胞原代培养体系。
研究设计/材料与方法:名为LMF的细胞系在含有5%(营养缺乏)或10%胎牛血清(fbs)的杜氏改良 Eagle 培养基(DME)中培养。使用以下波长的二极管激光器进行激光照射:670 nm(L1)、780 nm(L2)、692 nm(L3)和786 nm(L4)。能量密度固定为2 J/cm²。为进行生长分析,在照射前12小时,将对照(未照射)和处理过的培养物(照射过的)接种于直径60 mm的培养皿中。
我们发现,在仅添加5% fbs的培养基中培养的处于营养缺乏条件下的细胞,其增殖速率明显低于在理想培养条件(10% fbs)下生长的细胞。然而,照射后,营养缺乏条件下的细胞生长与在理想培养条件下生长的对照细胞相似或更高。当功率输出不同时,使用相同的能量密度,红外激光比可见光激光诱导更高的细胞增殖。然而,功率输出相同的激光器对细胞生长呈现相似的效果,与波长无关。
LLLT通过促进体外成纤维细胞增殖起作用,且较短的激光照射时间导致更高的增殖。