Department of Dermatology, Kangbuk Samsung Hospital, Sungkyunkwan University School of Medicine, Seoul, Korea.
Dermatol Surg. 2011 Jan;37(1):41-51. doi: 10.1111/j.1524-4725.2010.01833.x. Epub 2010 Dec 28.
Various trials have been conducted on the management of male pattern hair loss (MPHL). A variety of laser and light sources have been used for the treatment of MPHL.
To understand the effects of a 1,550-nm fractional erbium-glass laser on the hair cycle in an alopecia mouse model and to study the clinical effects of the same laser used as treatment for MPHL.
Irradiation was applied to the shaved skin of C3H/HeN mice using various energy and density settings and varied irradiation intervals. In a clinical pilot study involving human subjects, 20 participants were treated over five sessions at 2-week intervals. A fractional photothermolysis laser was used at the energy of 5 mJ and a total density of 300 spots/cm(2).
In the animal study, the hair stimulation effects were dependent upon the energy level, density, and irradiation interval. The anagen conversion of hair and the increase in Wnt 5a, β-catenin signals were observed. In the human pilot study, incremental improvements in hair density and growth rate were observed.
This pilot study showed that a 1,550-nm fractional erbium-glass laser might induce hair growth, but more intensive studies are required to clarify the clinical applications of this treatment.
已经有许多针对男性型脱发(MPHL)管理的试验。各种激光和光源已被用于治疗 MPHL。
了解 1550nm 分段铒玻璃激光对脱发小鼠模型中毛发周期的影响,并研究相同激光用于治疗 MPHL 的临床效果。
用不同的能量和密度设置以及不同的照射间隔,对 C3H/HeN 小鼠的剃毛皮肤进行照射。在一项涉及 20 名受试者的临床初步研究中,在 2 周间隔的 5 次治疗中使用了分段光热解激光。能量为 5mJ,总密度为 300 个斑点/cm2。
在动物研究中,毛发刺激效果取决于能量水平、密度和照射间隔。观察到毛发生长期的转化和 Wnt5a、β-连环蛋白信号的增加。在人体初步研究中,观察到毛发密度和生长速度的逐渐改善。
这项初步研究表明,1550nm 分段铒玻璃激光可能诱导毛发生长,但需要更深入的研究来阐明这种治疗的临床应用。