Bolzinger Marie-Alexandrine, Briançon Stéphanie, Chevalier Yves
LAGEP, University of Lyon, Villeurbanne, France.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2011 Sep-Oct;3(5):463-478. doi: 10.1002/wnan.146. Epub 2011 May 25.
Toxicity of nanoparticles is a current scientific issue because of the enhanced reactivity of nanomaterials and their possible easy penetration into the body arising from their small size. Because inorganic particles are present in sunscreen cosmetic products, attention has been focused on cutaneous penetration. But organic particles of various sizes are also used in pharmaceutical applications such as skin care and transdermal drug delivery. It appears that organic and inorganic particles penetrate the skin quite differently. The apparent discrepancy is addressed in this review focusing on skin penetration of inorganic sunscreen particles and organic particles for drug delivery. After a short description of the physicochemical properties of these particles, the skin penetration of both types is reviewed with emphasis on the mechanistic issues and the differences that could account for such conflicting results. It appears that investigations by cosmetic and pharmaceutical communities focused on the main issue, i.e., no toxicity in cosmetics and maximum activity of the drug in pharmaceutics. This leaves several fundamental issues as open questions and this does not allow a rigorous comparison between both types of material. While it is claimed that inorganic nanoparticles can only penetrate the outer layer of the skin, it appears that organic submicron particles and even microparticles reach the dermis in an in vitro cell. Besides particle size, the surface chemistry of the particles and the presence of other excipients in the formulations contribute to skin absorption.
纳米颗粒的毒性是当前一个科学问题,这是由于纳米材料的反应活性增强,且因其尺寸小可能易于进入人体。由于无机颗粒存在于防晒化妆品中,所以人们的注意力集中在其经皮渗透方面。但各种尺寸的有机颗粒也用于诸如皮肤护理和透皮给药等制药应用中。有机颗粒和无机颗粒穿透皮肤的方式似乎有很大不同。本综述聚焦于无机防晒颗粒和用于给药的有机颗粒的皮肤渗透情况,探讨了这一明显差异。在简要描述这些颗粒的物理化学性质之后,对这两种颗粒的皮肤渗透情况进行了综述,重点关注其作用机制问题以及可能导致这些相互矛盾结果的差异。化妆品和制药领域的研究似乎都集中在主要问题上,即化妆品中无毒性以及药剂学中药物活性最大化。这使得几个基本问题仍未得到解答,也无法对这两种材料进行严格比较。虽然有人声称无机纳米颗粒只能穿透皮肤外层,但在体外细胞实验中,有机亚微米颗粒甚至微米颗粒似乎能到达真皮层。除颗粒大小外,颗粒的表面化学性质以及配方中其他辅料的存在也会影响皮肤吸收。