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非剥脱性分次激光促进毛囊再生:照射参数及组织反应评估

Enhancing hair follicle regeneration by nonablative fractional laser: Assessment of irradiation parameters and tissue response.

作者信息

Wu Yueh-Feng, Wang Shiou-Han, Wu Pei-Shan, Fan Sabrina Mai-Yi, Chiu Hsien-Yi, Tsai Tsung-Hua, Lin Sung-Jan

机构信息

Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, Taipei, Taiwan.

出版信息

Lasers Surg Med. 2015 Apr;47(4):331-41. doi: 10.1002/lsm.22330. Epub 2015 Apr 10.

Abstract

BACKGROUND AND OBJECTIVE

Identification of methods to enhance anagen entry can be helpful for alopecia. Recently, nonablative laser has been proposed as a potential treatment for alopecia. However, how the laser parameters affect stem cell activity, hair cycles and the associated side effects have not been well characterized. Here we examine the effects of irradiation parameters of 1,550-nm fractional laser on hair cycles.

STUDY DESIGN/MATERIALS AND METHODS: The dorsal skin of eight-week-old female C57BL/6 mice with hair follicles in synchronized telogen was shaved and irradiated with a 1,550-nm fractional erbium-glass laser (Fraxel RE:STORE (SR1500) Laser System, Solta Medical, U.S.A.) with varied beam energies (5-35 mJ) and beam densities (500-3500 microthermal zones/cm(2) ). The cutaneous changes were evaluated both grossly and histologically. Hair follicle stem cell activity was detected by BrdU incorporation and changes in gene expression were quantified by real-time PCR.

RESULTS

Direct thermal injury to hair follicles could be observed early after irradiation, especially at higher beam energy. Anagen induction in the irradiated skin showed an all-or-non change. Anagen induction and ulcer formation were affected by the combination of beam energy and density. The lowest beam energy of 5 mJ failed to promote anagen entry at all beam densities tested. As beam energy increased from 10 mJ to 35 mJ, we found a decreasing trend of beam density that could induce anagen entry within 7-9 days with activation of hair follicle stem cells. Beam density above the pro-regeneration density could lead to ulcers and scarring followed by anagen entry in adjacent skin. Analysis of inflammatory cytokines, including TNF-α, IL-1β, and IL-6, revealed that transient moderate inflammation was associated with anagen induction and intense prolonged inflammation preceded ulcer formation.

CONCLUSION

To avoid side effects of hair follicle injury and scarring, appropriate combination of beam energy and density is required. Parameters outside the therapeutic window can result in either no anagen promotion or ulcer formation.

摘要

背景与目的

确定促进生长期毛囊进入的方法可能有助于治疗脱发。最近,非剥脱性激光已被提议作为一种潜在的脱发治疗方法。然而,激光参数如何影响干细胞活性、毛发周期以及相关副作用尚未得到充分表征。在此,我们研究1550纳米分数激光的照射参数对毛发周期的影响。

研究设计/材料与方法:将毛囊处于同步休止期的8周龄雌性C57BL/6小鼠背部皮肤剃毛,并用1550纳米分数铒玻璃激光(美国Solta Medical公司的Fraxel RE:STORE(SR1500)激光系统)进行照射,光束能量范围为5 - 35毫焦,光束密度范围为500 - 3500微热区/平方厘米。从大体和组织学方面评估皮肤变化。通过BrdU掺入检测毛囊干细胞活性,并通过实时PCR定量基因表达变化。

结果

照射后早期可观察到毛囊的直接热损伤,尤其是在较高光束能量时。照射皮肤的生长期诱导呈现全或无的变化。生长期诱导和溃疡形成受光束能量和密度组合的影响。5毫焦的最低光束能量在所有测试光束密度下均未能促进生长期毛囊进入。随着光束能量从10毫焦增加到35毫焦,我们发现能在7 - 9天内诱导生长期毛囊进入并激活毛囊干细胞的光束密度呈下降趋势。高于促再生密度的光束密度会导致溃疡和瘢痕形成,随后相邻皮肤进入生长期。对包括TNF-α、IL-1β和IL-6在内的炎性细胞因子的分析表明,短暂的中度炎症与生长期诱导相关,而强烈且持续时间长的炎症先于溃疡形成。

结论

为避免毛囊损伤和瘢痕形成的副作用,需要光束能量和密度的适当组合。治疗窗口之外的参数可能导致生长期无促进作用或溃疡形成。

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