Menon G K, Brandsma J L, Schwartz P M
Global Research and Development, Avon Products Inc., Suffern, NY 10901, USA.
Skin Pharmacol Physiol. 2007;20(3):141-7. doi: 10.1159/000098165. Epub 2006 Oct 21.
The particle-mediated delivery systems are becoming a clinically relevant tool in dermatology and immunology. We investigated the qualitative ultrastructural morphology of skin following pressure-driven delivery of gold particles to ex vivo human breast skin, at different pressures ranging from 350 to 1,000 psi. Pressures of 800 and 1,000 psi appear to be more effective, as indicated by distribution of particles in the viable epidermis and dermis. Particle bombardment of the skin with gold beads caused microwounds that spanned the stratum corneum (SC). The SC lipids did not reseal these wounds in the SC after 24 h in organ culture. The implications of particle-mediated delivery to permeability barrier functions of the SC are discussed.
粒子介导的递送系统正成为皮肤病学和免疫学领域具有临床应用价值的工具。我们研究了在350至1000磅力/平方英寸的不同压力下,将金颗粒通过压力驱动递送至离体人乳房皮肤后,皮肤的定性超微结构形态。800和1000磅力/平方英寸的压力似乎更有效,这从活表皮和真皮中颗粒的分布情况可以看出。用金珠对皮肤进行粒子轰击会造成跨越角质层(SC)的微伤口。在器官培养24小时后,SC脂质并未重新封闭角质层中的这些伤口。本文讨论了粒子介导递送对SC渗透屏障功能的影响。