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中国真菌学杂志 2020, Vol. 15  Issue (2): 106-110.

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氧化应激在长脉宽1064nm Nd: YAG激光治疗甲真菌病中的作用

邢召静1, 蔡宏2, 刘玮1,2   

  1. 1. 中国医科大学, 沈阳 110001;
    2. 空军特色医学中心, 北京 100142
  • 收稿日期:2019-12-23 出版日期:2020-04-28 发布日期:2020-04-28
  • 通讯作者: 刘玮,E-mail:Lwei5811@126.com;蔡宏,E-mail:ch1031@163.com E-mail:Lwei5811@126.com;ch1031@163.com
  • 作者简介:邢召静,女(汉族),硕士研究生在读.E-mail:xing_zhaojing@163.com
  • 基金资助:

    军队医学科技青年培育计划拔尖项目(19QNP027);首都临床诊疗技术研究及示范应用专项(Z191100006619053)

The role of oxidative stress in the treatment of onychomycosis with the 1064-nm long pulse Nd: YAG laser

XING Zhao-jing1, CAI Hong2, LIU Wei1,2   

  1. 1. China Medical University, Shenyang 110001, China;
    2. Air Force Medical Center, Beijing 100142, China
  • Received:2019-12-23 Online:2020-04-28 Published:2020-04-28

摘要:

目的 探讨长脉宽1064nm Nd: YAG激光对引起甲真菌病的最常见致病菌-红色毛癣菌(Trichophyton rubrum)的体外抑制/杀灭作用及活性氧簇(ROS)介导的氧化应激反应在其中发挥的作用。方法 改变长脉宽1064nm Nd: YAG激光脉冲数(7次脉冲、9次脉冲、11次、13次脉冲),固定其他参数照射红色毛癣菌菌落,绘制生长曲线,确定有抑制作用的最小脉冲数。在此脉冲数条件下干预红色毛癣菌菌落及孢子悬液,比较菌落形态学改变,检测孢子悬液相对活力的改变,同时检测ROS在不同处理后的表达水平变化。结果 激光对红色毛癣菌的抑制/杀灭作用随能量的增加而增强,相对活力随时间的增加而下降,呈能量和时间依赖性;激光干预后,菌丝失去正常形态结构,孢子悬液的荧光强度及ROS含量较未照射的高,P=0.0157。结论 长脉宽1064nm Nd: YAG激光体外对红色毛癣菌有抑制/杀灭作用,ROS介导的氧化应激反应可能在该激光治疗红色毛癣菌甲真菌病中发挥了一定的作用。

关键词: 红色毛癣菌, 长脉宽1064nm Nd: YAG激光, 生长曲线, 体外, ROS

Abstract:

Objective To investigate the inhibition/killing effect of 1064-nm long pulse Nd:YAG laser on Trichophyton rubrum in vitro-the most common pathogen causing onychomycosis-and the role of oxidative stress mediated by reactive oxygen species (ROS). Methods Colonies of Trichophyton rubrum were irradiated by using 1064-nm long pulse Nd:YAG laser with various pulse numbers (7 pulses, 9 pulses, 11 pulses and 13 pulses) and other parameters were fixed. Colony areas were photographed to draw growth curves before treatment and 1, 3, 5 and 7 days after treatment and assess the minimum number of pulses with the effect of growth inhibition. The colony and spore suspension of Trichophyton rubrum were irradiated with this pulse number to compare the changes of colony morphological structure, the relative activity of the spore suspension by WST-8, and the expression level of ROS after different treatments by using DCFH-DA probe. Results Nine pulses were the minimum numbers to induce the inhibitory effect. With the increase of energy, the inhibition/killing effect of laser on Trichophyton rubrum was enhanced, while the relative vitality decreased with the increase of time, showing the laser intervention had energy and time dependence. After laser intervention, mycelia lost their normal morphological structure, and the fluorescence intensity and ROS content of the spore suspension were higher than those of the unirradiated, P=0.0157 <0.05. Conclusion The 1064-nm long pulse Nd:YAG laser could inhibit/kill Trichophyton rubrum. The oxidative stress mediated by ROS may play an important role in the treatment of onychomycosis inducing by Trichophyton rubrum with 1064-nm long pulse Nd:YAG laser.

Key words: Trichophyton rubrum, the 1064-nm long pulse Nd: YAG laser, growth curve, in vitro, ROS

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