Clinical Research Center for Hair and Skin Science, Department of Dermatology and Allergy, Charité-Universitätsmedizin Berlin, Germany.
Arch Dermatol Res. 2011 Oct;303(8):533-50. doi: 10.1007/s00403-011-1163-7. Epub 2011 Aug 12.
Recent advances in the field of nanotechnology have allowed the manufacturing of elaborated nanometer-sized particles for various biomedical applications. A broad spectrum of particles, extending from various lipid nanostructures such as liposomes and solid lipid nanoparticles, to metal, nanocrystalline and polymer particles have already been tested as drug delivery systems in different animal models with remarkable results, promising an extensive commercialization in the coming years. Controlled drug release to skin and skin appendages, targeting of hair follicle-specific cell populations, transcutaneous vaccination and transdermal gene therapy are only a few of these new applications. Carrier systems of the new generation take advantage of improved skin penetration properties, depot effect with sustained drug release and of surface functionalization (e.g., the binding to specific ligands) allowing specific cellular and subcellular targeting. Drug delivery to skin by means of microparticles and nanocarriers could revolutionize the treatment of several skin disorders. However, the toxicological and environmental safety of micro- and nanoparticles has to be evaluated using specific toxicological studies prior to a wider implementation of the new technology. This review aims to give an overview of the most investigated applications of transcutaneously applied particle-based formulations in the fields of cosmetics and dermatology.
近年来,纳米技术领域的进展使得能够制造各种用于生物医学应用的精细纳米级颗粒。已经有广泛的颗粒,从各种脂质纳米结构(如脂质体和固体脂质纳米粒)到金属、纳米晶体和聚合物颗粒,作为药物输送系统在不同的动物模型中进行了测试,取得了显著的效果,有望在未来几年得到广泛的商业化。向皮肤和皮肤附属物的控制药物释放、毛囊特异性细胞群的靶向、经皮疫苗接种和透皮基因治疗只是这些新应用中的几个。新一代载体系统利用了改进的皮肤穿透特性、具有持续药物释放的储库效应以及表面功能化(例如,与特定配体的结合),从而允许特定的细胞和亚细胞靶向。通过微粒和纳米载体将药物递送至皮肤可能会彻底改变几种皮肤疾病的治疗方法。然而,在更广泛地实施新技术之前,必须使用特定的毒理学研究来评估微纳米颗粒的毒理学和环境安全性。本综述旨在概述经皮应用的基于颗粒的制剂在化妆品和皮肤病学领域的最受关注的应用。