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Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles

机译:基于局部释放光吸收金微粒的皮脂囊的选择性光热解的痤疮治疗。

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摘要

The pathophysiology of acne vulgaris depends on active sebaceous glands, implying that selective destruction of sebaceous glands could be an effective treatment. We hypothesized that light-absorbing microparticles could be delivered into sebaceous glands, enabling local injury by optical pulses. A suspension of topically applied gold-coated silica microparticles exhibiting plasmon resonance with strong absorption at 800 nm was delivered into human pre-auricular and swine sebaceous glands in vivo, using mechanical vibration. After exposure to 10–50 J cm−2, 30 milliseconds, 800 nm diode laser pulses, microscopy revealed preferential thermal injury to sebaceous follicles and glands, consistent with predictions from a computational model. Inflammation was mild; gold particles were not retained in swine skin 1 month after treatment, and uptake in other organs was negligible. Two independent prospective randomized controlled clinical trials were performed for treatment of moderate-to-severe facial acne, using unblinded and blinded assessments of disease severity. Each trial showed clinically and statistically significant improvement of inflammatory acne following three treatments given 1–2 weeks apart. In Trial 2, inflammatory lesions were significantly reduced at 12 weeks (P=0.015) and 16 weeks (P=0.04) compared with sham treatments. Optical microparticles enable selective photothermolysis of sebaceous glands. This appears to be a well-tolerated, effective treatment for acne vulgaris.
机译:寻常痤疮的病理生理取决于活跃的皮脂腺,这意味着皮脂腺的选择性破坏可能是一种有效的治疗方法。我们假设可以将吸收光的微粒递送到皮脂腺中,从而通过光脉冲对局部造成伤害。使用机械振动,将在800 goldnm处具有等离振子共振和强吸收作用的局部涂覆的金包被的二氧化硅微粒的悬浮液体内递送到人耳前皮脂腺和猪皮脂腺。暴露于10–50 J cm −2 ,30毫秒,800 nm二极管激光脉冲后,显微镜显示对皮脂囊和腺体的优先热损伤,与计算模型的预测一致。炎症轻度。治疗后1个月,金颗粒没有保留在猪皮中,其他器官的吸收可忽略不计。进行了两项独立的前瞻性随机对照临床试验,以对疾病严重程度进行无盲和双盲评估,以治疗中度至重度面部痤疮。每项试验显示,相隔1-2周的三种治疗方法在治疗痤疮方面具有临床和统计学意义的显着改善。在试验2中,与假手术相比,炎症损伤在第12周(P = 0.015)和第16周(P = 0.04)显着减少。光学微粒能够对皮脂腺进行选择性光热解。这似乎是寻常痤疮的耐受良好的有效治疗方法。

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