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ICG laser therapy of acne vulgaris

机译:ICG寻常痤疮激光治疗

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摘要

The near-infrared (NIR) laser radiation due to its high penetration depth is widely used in phototherapy. In application to skin appendages a high selectivity of laser treatment is needed to prevent light action on surrounding tissues. Indocyanine Green (ICG) dye may provide a high selectivity of treatment due to effective ICG uploading by a target and its narrow band of considerable absorption just at the wavelength of the NIR diode laser. The goal of this study is to demonstrate the efficacy of the NIR diode laser phototherapy in combination with topical application of ICG suggested for soft and thermal treatment of acne vulgaris. 28 volunteers with facile or back-located acne were enrolled. Skin sites of subjects were stained by ICG and irradiated by NIR laser-diode light (803 or 809 nm). Untreated, only stained and only light irradiated skin areas served as controls. For soft acne treatment, the low-intensity (803 nm, 10 - 50 mW/cm~2, 5-10 mm) or the medium-intensity (809 nm, 150 - 190 mW/cm~2, 15 mm) protocols were used. The single and multiple (up to 8-9) treatments were provided. The individual acne lesions were photothermally treated at 18 W/cm~2 (803 nm, 0.5 sec) without skin surface cooling or at 200 W/cm~2 (809 nm, 0.5 sec) with cooling. The results of the observations during 1-2 months after the completion of the treatment have shown that only in the case of the multiple-wise treatment a combined action of ICG and NTR irradiation reduces inflammation and improves skin state during a month without any side effects. At high power densities (up to 200 W/cm~2) ICG stained acne inflammatory elements were destructed for light exposures of 0.5 sec. Based on the concept that hair follicle, especially sebaceous gland, can be intensively and selectively stained by ICG due to dye diffusion through pilosebaceous canal and its fast uptake by living microorganisms, by vital keratinocytes of epithelium of the canal and sebaceous duct, and by rapidly proliferating sebocytes, new technologies of soft and thermal acne lesions treatment that could be used in clinical treatment of acne were proposed.
机译:由于其高渗透深度引起的近红外(NIR)激光辐射广泛用于光疗法。在施用于皮肤附属物中,需要高选择性的激光处理,以防止围绕组织的光照动作。由于在NIR二极管激光器的波长下,吲哚菁绿(ICG)染料可以提供高选择性的治疗方法,并且其仅在NIR二极管激光器的波长处上传。本研究的目的是证明NIR二极管激光光疗法与ICG的局部应用组合的疗效表明,痤疮寻常痤疮的柔软处理。注册了28名设有宽松或背部痤疮的志愿者。受试者的皮肤位点被ICG染色并由NIR激光二极管光(803或809nm)照射。未经处理的,只有染色,只有光照射的皮肤区域作为对照。对于软痤疮处理,低强度(803nm,10-50 mw / cm〜2,5-10mm)或中强(809nm,150-190mW / cm〜2,15 mm)方案用过的。提供单一和多个(最多8-9)处理。在18W / cm〜2(803nm,0.5秒)的情况下,在没有皮肤表面冷却或在200w / cm〜2(809nm,0.5秒)下,单个痤疮病变在18 w / cm〜2(803nm,0.5秒)下进行冷热处理。治疗完成后1-2个月的观察结果表明,只有在多明显治疗的情况下,ICG和NTR辐射的组合作用可减少炎症并在一个月内改善皮肤状态,而不会产生任何副作用。在高功率密度(高达200W / cm〜2)ICG染色痤疮炎症元素被破坏为0.5秒的曝光。基于毛囊,特别是皮脂腺的概念,ICG由于染料扩散通过皮甲酸卷管和活性微生物的快速吸收,通过生物微生物的快速吸收,通过迅速的角质形成,迅速增加提出了可用于痤疮临床治疗的软和热痤疮病灶治疗的增殖Sebocytes。

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