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激光治疗对皮肤的作用,以增强和控制5-氟尿嘧啶的透皮递送。

The effect of laser treatment on skin to enhance and control transdermal delivery of 5-fluorouracil.

作者信息

Lee Woan-Ruoh, Shen Shing-Chuan, Wang Kuo-Hsien, Hu Chung-Hong, Fang Jia-You

机构信息

Department of Dermatology, Taipei Medical University Hospital, Taipei, Taiwan.

出版信息

J Pharm Sci. 2002 Jul;91(7):1613-26. doi: 10.1002/jps.10142.

Abstract

The effect of three lasers (i.e., the ruby, erbium:YAG, and CO2) on the ability to enhance and control skin permeation of 5-fluorouracil (5-FU) was studied in vitro. Light microscopic and ultrastructural (scanning electron microscopic) changes in the nude mouse skin were also compared for these lasers. The histological observations and permeation profiles of each laser differed because the three lasers produce different physical and physiologic effects when striking the skin. The skin permeation of 5-FU could be moderately promoted by a single photomechanical wave generated by the ruby laser (at 4.0 and 7.0 J/cm(2)) without adversely affecting the viability or structure of the skin. The stratum corneum (SC) layer in the skin was partly ablated by an erbium:YAG laser, resulting in a greater enhancement effect on skin permeation of 5-FU. The flux of 5-FU across erbium:YAG laser-treated skin was 53-133-fold higher than that across intact skin. Both SC ablation and a thermal effect may contribute to the effect of the CO2 laser on skin structure. Lower energies of the CO2 laser did not modulate 5-FU permeation. A 36-41-fold increase in 5-FU flux was observed after exposure to higher fluences (4.0 and 7.0 J/cm(2)) of the CO2 laser. Histological changes induced by both the erbium:YAG and CO2 lasers had completely recovered within 4 days.

摘要

研究了三种激光(即红宝石激光、铒:钇铝石榴石激光和二氧化碳激光)对增强和控制5-氟尿嘧啶(5-FU)皮肤渗透能力的体外影响。还比较了这些激光对裸鼠皮肤的光镜和超微结构(扫描电子显微镜)变化。每种激光的组织学观察和渗透情况各不相同,因为这三种激光照射皮肤时会产生不同的物理和生理效应。红宝石激光(4.0和7.0 J/cm²)产生的单个光机械波可适度促进5-FU的皮肤渗透,且不会对皮肤的活力或结构产生不利影响。铒:钇铝石榴石激光部分消融了皮肤中的角质层(SC),从而对5-FU的皮肤渗透产生更大的增强作用。5-FU通过铒:钇铝石榴石激光处理皮肤的通量比通过完整皮肤的通量高53-133倍。SC消融和热效应可能共同作用于二氧化碳激光对皮肤结构的影响。较低能量的二氧化碳激光不会调节5-FU的渗透。暴露于较高能量密度(4.0和7.0 J/cm²)的二氧化碳激光后,观察到5-FU通量增加了36-41倍。铒:钇铝石榴石激光和二氧化碳激光引起的组织学变化在4天内完全恢复。

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