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临床回顾性分析长脉冲 1064nmNd:YAG 激光治疗甲真菌病及其对真菌病原体超微结构的影响。

Clinical retrospective analysis of long-pulsed 1064-nm Nd:YAG laser in the treatment of onychomycosis and its effect on the ultrastructure of fungus pathogen.

机构信息

Department of Dermatology, Pudong New Area People's Hospital Affiliated to Shanghai University of Medicine and Health Sciences, Shanghai, 201299, People's Republic of China.

Department of Clinical Laboratory, Pudong New Area People' s Hospital Affiliated to Shanghai University of Medicine and Health Sciences, Shanghai, 201299, People's Republic of China.

出版信息

Lasers Med Sci. 2020 Mar;35(2):429-437. doi: 10.1007/s10103-019-02840-2. Epub 2019 Jul 16.

Abstract

The objective of this study was to analyze retrospectively the clinical efficacy and fungal clearance of long-pulsed 1064-nm Nd:YAG laser for treating onychomycosis and explore the inhibitory effects of laser on the fungus pathogen-induced onychomycosis in vitro. We performed a systematic retrospective analysis of clinical patients (162 effected nails) of onychomycosis treatment applying laser with or without topical ketoconazole ointment and followed up 3 months after treatment. Trichophyton rubrum- and Trichophyton mentagrophytes-induced onychomycosis was irradiated with laser superimposed for different cumulative energy, respectively; then, the areas of fungus colonies and growth curve in different days were showed, and changes in ultrastructures were observed under SEM and TEM. The clinical effective rate and fungal clearance rate in the combined group were higher than those in the laser group; however, there was no significant difference between the two groups. In vitro, the areas of T. rubrum colonies were significantly reduced at days 1, 3, and 5 after irradiation with cumulative laser energy ≥ 6400 J/cm. When irradiated with cumulative laser energy ≥ 25600 J/cm, significant difference in the areas of T. mentagrophytes colonies was found at day 5. And ultrastructure of the two strains before and after laser irradiation was damaged at different degrees. This study confirmed that long-pulsed 1064-nm Nd:YAG laser is effective for treating onychomycosis, and the laser irradiation can inhibit the colony growth of T. rubrum and T. mentagrophytes and change their cellular ultrastructures. The mechanism of laser treatment of onychomycosis may be related to direct damage of fungus pathogen.

摘要

本研究旨在回顾性分析长脉冲 1064nmNd:YAG 激光治疗甲真菌病的临床疗效和真菌清除率,并探讨激光对体外真菌病原体诱导的甲真菌病的抑制作用。我们对接受激光治疗(联合或不联合酮康唑软膏)的 162 例甲真菌病患者(162 个受影响的指甲)进行了系统的回顾性分析,并在治疗后 3 个月进行了随访。分别用激光叠加照射红色毛癣菌和须癣毛癣菌诱导的甲真菌病,显示不同累积能量下真菌菌落的面积和生长曲线,并在 SEM 和 TEM 下观察超微结构的变化。联合组的临床有效率和真菌清除率均高于激光组,但两组间无显著差异。体外研究发现,累积激光能量≥6400J/cm 照射后第 1、3、5 天,红色毛癣菌菌落面积明显减小;累积激光能量≥25600J/cm 照射后第 5 天,须癣毛癣菌菌落面积差异有统计学意义。两种菌株的超微结构在激光照射前后均受到不同程度的损伤。本研究证实长脉冲 1064nmNd:YAG 激光治疗甲真菌病有效,激光照射可抑制红色毛癣菌和须癣毛癣菌的菌落生长,并改变其细胞超微结构。激光治疗甲真菌病的机制可能与真菌病原体的直接损伤有关。

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