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首页> 外文期刊>Lasers in surgery and medicine. >Propionibacterium acnes Propionibacterium acnes susceptibility to low‐level 449?nm blue light photobiomodulation
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Propionibacterium acnes Propionibacterium acnes susceptibility to low‐level 449?nm blue light photobiomodulation

机译:丙酸菌属曼秀雷敦丙酸菌属曼秀雷敦对低量449级?photobiomodulation

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Background and Objective Recent advances in low‐level light devices have opened new treatment options for mild to moderate acne patients. Light therapies have been used to treat a variety of skin conditions over the years but were typically only available as treatments provided by professional clinicians. Clinical application of blue light has proven to be effective for a broader spectral range and at lower fluences than previously utilized. Herein, we tested the hypothesis that sub‐milliwatt/cm 2 levels of long‐wave blue light (449?nm) effectively kills Propionibacterium acnes , a causative agent of acne vulgaris, in vitro . Materials and Methods Two types of LED light boards were designed to facilitate in vitro blue light irradiation to either six‐well plates containing fluid culture or a petri plate containing solid medium. P. acnes . Survival was determined by counting colony forming units (CFU) following irradiation. P. acnes was exposed in the presence and absence of oxygen. Coproporphyrin III (CPIII) photoexcitation was spectrophotometrically evaluated at 415 and 440?nm to compare the relative photochemical activities of these wavelengths. Results 422 and 449?nm blue light killed P. acnes in planktonic culture. Irradiation with 449?nm light also effectively killed P. acnes on a solid agar surface. Variation of time or intensity of light exposure resulted in a fluence‐dependent improvement of antimicrobial activity. The presence of oxygen was necessary for killing of P. acnes with 449?nm light. CPIII displayed clear photoexcitation at both 415 and 440?nm, indicating that both wavelengths are capable of initiating CPIII photoexcitation at low incident light intensities (50?uW/cm 2 ). Conclusion Herein we demonstrate that sub‐milliwatt/cm 2 levels of long‐wave blue light (449?nm) effectively kill P. acnes . The methods and results presented allow for deeper exploration and design of light therapy treatments. Results from these studies are expanding our understanding of the mode of action and functionality of blue light, allowing for improved options for acne patients. Lasers Surg. Med. ? 2019 Wiley Periodicals, Inc.
机译:背景和目的最新进展低优先级光设备开辟了新的治疗选项为轻度至中度痤疮患者。疗法已经用于治疗各种各样的多年来,但通常皮肤条件只有提供的治疗专业的临床医生。蓝色的光已经被证明是有效的更广泛的光谱范围,将低于之前使用。假设辅助毫瓦特/厘米2的水平长期波蓝光(449 ?海里)有效地杀死丙酸菌属曼秀雷敦的病原体寻常痤疮,体外。两种类型的LED灯板的设计促进体外蓝光照射六孔板包含流体应承担的文化或含有固体培养基的培养皿。曼秀雷敦。辐照后集落形成单位(CFU)。丙酸是存在和暴露的氧气。光致激发是spectrophotometrically在415年和440年评估吗?相对这些光化学活动波长。p•曼秀雷敦死亡浮游文化。辐照与449 ?在固体琼脂表面p•曼秀雷敦死亡。曝光时间和强度的变化导致一个影响相关的改善抗菌活性。是必要的杀害p•曼秀雷敦的449 ?光。415年和440年?波长能够启动CPIII光致激发入射光强度较低(50 ?辅助毫瓦特/厘米2水平的长期波蓝色光(449 ?海里)有效地杀死丙酸。方法和结果提出允许更深勘探和设计的光疗法治疗方法。扩大我们的理解的行动方式和功能的蓝光,允许改善痤疮患者的选择。地中海。

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