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Analysis of biomodulative effects of low-intensity laser on human skin fibroblast cells using fiber optic nano-probes

机译:利用光学纳米探针分析低强度激光对人体皮细胞对人体皮细胞的培养效应

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Over the past few decades, many efforts were devoted to study low power laser and cellular interaction. Some of the investigations were performed on cell populations. In this work fiber-optic based nano-probe is used for the precise delivery of laser light on to a single cell and the mechanism of light interaction with the cell during irradiation was studied. A human skin fibroblast cell line was utilized in this investigation. The human fibroblasts were irradiated under two different schemes of exposure: (1) entire cell population was irradiated within a Petri dish using a fan beam, (2) laser energy was precisely delivered on to a single cell using fiber-optic nano-probe. Studies were conducted by variation of laser intensity, exposure time, and the energy dose of exposure. Proliferative effect of laser irradiation was determined through cell counting for both exposure schemes. Enhancement of the rate of proliferation was observed to be dependent on laser parameters and method of laser delivery. Variation of total energy dose had greater effect on the enhancement of the rate of cellular proliferation compared to that of laser intensity. The photobiostimulative effect was also observed to have a finite life-time. Fluorescent life-time imaging of reactive oxygen species (ROS) was performed during the single cell exposure method. ROS generation was found to depend strongly on both laser energy doses and irradiation time. It is demonstrated in this communication that by using specially engineered nano-probes, laser light can be precisely delivered on to a targeted single cell.
机译:在过去的几十年中,致力于研究低功率激光和蜂窝相互作用的许多努力。一些研究是对细胞群体进行的。在该工作中,基于光纤的纳米探针用于将激光的精确递送到单个电池,并且研究了在照射期间与细胞的光相互作用机制。在该研究中使用人皮肤成纤维细胞系。在两种不同的暴露方案下照射人的成纤维细胞:(1)使用风扇梁在培养皿内照射整个细胞群,使用纤维 - 光学纳米探针将激光能量精确地送到单个电池。通过激光强度,暴露时间和暴露的能量剂量的变异进行研究。通过对两种曝光方案进行计数确定激光照射的增殖效应。观察到增殖速率的增强依赖于激光参数和激光递送方法。与激光强度相比,总能量剂量的变异对细胞增殖速率的提高具有更大的影响。还观察到光反对刺激作用具有有限的寿命。在单细胞暴露法中进行反应性氧物质(ROS)的荧光寿命成像。发现ROS生成强烈地依赖于激光能量剂量和照射时间。在这种通信中证明,通过使用特殊设计的纳米探针,可以将激光精确地送到目标单细胞上。

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