首页> 外文会议>Laser Florence (Conference) >PROLIFERATION OF CHICKEN FIBROBLASTS INDUCED BY LIGHT EMITTING DIODES: A COMPARATIVE TRIAL FOR DIFFERENT WAVELENGTHS
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PROLIFERATION OF CHICKEN FIBROBLASTS INDUCED BY LIGHT EMITTING DIODES: A COMPARATIVE TRIAL FOR DIFFERENT WAVELENGTHS

机译:发光二极管诱导的鸡成纤维细胞的增殖:不同波长的比较试验

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The effectiveness and applicability of a variety of light sources, in the treatment of wounds has thoroughly been investigated, in vitro as well as in vivo. The current commercial availability of Light Emitting Diode (LED) sources therefore also invites research to explore the effect of low power infrared, red and green light on wound healing, e.g. by means of fibroblast proliferation. Therefore a controlled and randomised study on cultured embryonic chicken fibroblasts was conducted. The fibroblasts were irradiated during three consecutive days, at several wavelengths (950 nm, 660 nm and 570 nm) and a respective power output of 160 mW, 80 mW or 10 mW. Treatment duration varied from 1 minute to 3 minutes to obtain a surface energy density of 0.9 J/cm~2 (infrared and red light) or 0.2 J/cm~2 (green light). Statistical analysis revealed that LED irradiation for all three wavelengths induced a higher rate of proliferation in comparison of the control group. This difference was statistically significant (p<.001). With regard to the amount of proliferation the green probe yielded a significantly higher number of cells, than the red (p<.001) an the infrared probe (p<.001). Furthermore, the red probe provided a higher increase (p<.001) than the IR probe. LED irradiation results in an increased fibroblast proliferation in vitro. This outcome postulates beneficial stimulatory effects of LED at the applied wavelength, energy density and power output on wound healing in vivo. Further investigation is necessary to examine this hypothesis.
机译:各种光源的有效性和适用性,在伤口的治疗中已经彻底研究了体外以及体内的彻底研究。因此,发光二极管(LED)源的目前的商业可用性也邀请了研究,以探索低功率红外,红色和绿灯对伤口愈合的影响,例如,通过成纤维细胞增殖。因此,进行了对培养的胚胎鸡成纤维细胞的受控和随机研究。在连续三天内辐射成纤维细胞,在几个波长(950nm,660nm和570nm),相应的功率输出为160mW,80mW或10mW。治疗持续时间从1分钟到3分钟变化,获得0.9J / cm〜2(红外和红光)或0.2J / cm〜2(绿灯)的表面能密度。统计分析显示,对于对照组的比较,所有三个波长的LED辐照诱导较高的增殖速率。这种差异是统计学意义(P <.001)。关于增殖量,绿色探针产生比红外探针(P <.001)的红色(P <.001)产生明显较高的细胞数。此外,红色探针提供比IR探针更高的增加(p <.001)。 LED辐射导致体外成纤维细胞增殖增加。这一结果消除了LED在体内伤口愈合的施用波长,能量密度和功率输出处的受益刺激效果。进一步调查是审查这一假设的必要条件。

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