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In Vitro Mean Red Blood Cell Volume Change Induced by Diode Pump Solid State Low-Level Laser of 405 nm

机译:405 nm二极管泵浦固态低能激光诱导的体外平均红细胞体积变化

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摘要

>Objective: This study was conducted to investigate the effects of low-level laser (LLL) doses on human red blood cell volume. The effects of exposure to a diode pump solid state (DPSS) (λ = 405 nm) laser were observed. >Background data: The response of human blood to LLL irradiation gives important information about the mechanism of interaction of laser light with living organisms. >Materials and methods Blood samples were collected into ethylenediaminetetraacetic acid (EDTA)-containing tubes, and each sample was divided into two equal aliquots, one to serve as control and the other for irradiation. The aliquot was subjected to laser irradiation for 20, 30, 40, or 50 min at a fixed power density of 0.03 W/cm2. Mean cell volume (MCV) and red blood cell (RBC) counts were measured immediately after irradiation using a computerized hemtoanalyzer. >Results: Significant decrease in RBC volume (p < 0.05, p < 0.0001, p < 0.0001, and p < 0.05, respectively) was induced with variation in laser doses.The highest response was observed with an exposure time of 40 min. This result was reproduced in RBCs suspended in a buffered NaCl solution. In contrast to this finding, laser-induced RBC volume change was completely abolished by suspending RBCs in a solution containing a higher concentration of EDTA. >Conclusions: It was suggested that LLL can reduce RBC volume possibly because of the increased free intracellular Ca+2 concentrations, which activate Ca+2-dependent K+ channels with consequent K+ ion efflux and cell shrinkage.
机译:>目的:该研究旨在研究低剂量激光(LLL)剂量对人红细胞体积的影响。观察到暴露于二极管泵浦固态(DPSS)(λ= 405 nm)激光的影响。 >背景数据:人类血液对LLL辐射的反应提供了有关激光与活生物体相互作用机理的重要信息。 >材料和方法将血液样品收集到装有乙二胺四乙酸(EDTA)的试管中,将每个样品分成两等份,一个作为对照,另一个用于照射。将等分试样以固定的功率密度0.03 W / cm 2 进行20、30、40或50 min的激光照射。辐射后立即使用计算机血细胞分析仪测量平均细胞体积(MCV)和红细胞(RBC)计数。 >结果:随着激光剂量的变化,红细胞体积显着减少(分别为p <0.05,p <0.0001,p <0.0001和p <0.05)。时间为40分钟。该结果在悬浮在缓冲NaCl溶液中的RBC中再现。与此发现相反,通过将RBC悬浮在含有较高浓度EDTA的溶液中,完全消除了激光引起的RBC体积变化。 >结论:提示LLL可能减少RBC的体积,可能是由于游离的细胞内Ca +2 浓度增加,激活了Ca +2 -依赖的K + 通道,从而导致K + 离子流出和细胞收缩。

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