Department of Dermatology, University of Regensburg, Germany.
Photochem Photobiol Sci. 2019 Feb 13;18(2):349-358. doi: 10.1039/c8pp00416a.
Decorative tattoos including permanent make-up are very popular world-wide. However, some people regret tattooing and seek tattoo removal. Tattooed skin contains numerous solid particles of tattoo pigments. A major mechanism of tattoo removal is laser assisted fragmentation of these particles, which are then transported away from the skin. For many years, Q-switched lasers with nanosecond pulse durations at high light intensities have been applied to cause such fragmentation via rapid heating up while sparing the adjacent tissue. Despite the long-lasting use of such laser treatment, the exact mechanisms of laser assisted fragmentation are hardly investigated. Due to short and intense laser pulses applied, non-linear effects of light (e.g. photoacoustic and optical breakdown) and nonlinear thermal properties in tattoo particles may play a crucial role. In the past few years, lasers with even shorter pulse duration in the sub-nanosecond range were launched for tattoo removal. Theoretical considerations assumed that pulse durations shorter than nanoseconds allow even more effective fragmentation of tattoo particles. A couple of initial studies affirm the effectiveness of picosecond pulses in tattoo treatment, especially in clearing black tattoos. Furthermore, treatment with picosecond lasers seems to be less painful. Consequently, picosecond technology may be a new strategy for more effective removal of tattoo pigments at a lower rate of side effects. But there is an urgent need for more well-designed and randomized controlled trials to compare this treatment modality to the traditional nanosecond technology regarding efficacy and adverse reactions.
装饰性纹身,包括永久性化妆,在全球范围内非常流行。然而,有些人后悔纹身并寻求去除纹身。纹身的皮肤中含有大量的纹身颜料固体颗粒。去除纹身的主要机制是通过激光辅助将这些颗粒碎裂,然后将其从皮肤中运走。多年来,一直使用纳秒脉冲持续时间和高强度的 Q 开关激光器通过快速加热来引起这种碎裂,同时保护相邻组织。尽管这种激光治疗已经使用了很长时间,但激光辅助碎裂的确切机制几乎没有得到研究。由于应用了短而强的激光脉冲,光的非线性效应(例如光声和光击穿)和纹身颗粒中的非线性热特性可能发挥着关键作用。在过去的几年中,推出了用于去除纹身的甚至更短脉冲持续时间的亚纳秒范围的激光器。理论考虑假设,脉冲持续时间短于纳秒可以更有效地碎裂纹身颗粒。最初的几项研究证实了皮秒脉冲在纹身治疗中的有效性,特别是在清除黑色纹身方面。此外,皮秒激光治疗似乎疼痛更小。因此,皮秒技术可能是一种新的策略,可以以较低的副作用发生率更有效地去除纹身颜料。但是,迫切需要更多精心设计和随机对照试验,以比较这种治疗方式与传统的纳秒技术在疗效和不良反应方面的差异。