Univ. Lyon, University Claude Bernard Lyon-1, CNRS, LAGEP UMR 5007, 43 boulevard du 11 November 1918, F-69100, Villeurbanne, France.
SRSMC, UMR 7565, Université de Lorraine-CNRS, F-54506 Vandœuvre-lès-Nancy, France.
Int J Pharm. 2018 Jan 15;535(1-2):1-17. doi: 10.1016/j.ijpharm.2017.10.046. Epub 2017 Oct 27.
During the past decades, lipid nanocarriers are gaining momentum with their multiple advantages for the management of skin diseases. Lipid nanocarriers enable to target the therapeutic payload to deep skin layers or even to reach the blood circulation making them a promising cutting-edge technology. Lipid nanocarriers refer to a large panel of drug delivery systems. Lipid vesicles are the most conventional, known to be able to carry lipophilic and hydrophilic active agents. A variety of lipid vesicles with high flexibility and deformability could be obtained by adjusting their composition; namely ethosomes, transfersomes and penetration enhancer lipid vesicles which achieve the best results in term of skin permeation. Others are designed with the objective to perform higher encapsulation rate and higher stability, such as solid lipid nanoparticles and nanostructured lipid nanocarriers. In this review, we attempted to give an overview of lipid based nanocarriers developed with the aim to enhance dermal and transdermal drug delivery. A special focus is put on the nanocarrier composition, behavior and interaction mechanisms with the skin. Recent applications of lipid-based nanocarriers for the management of skin diseases and other illnesses are highlighted as well.
在过去几十年中,脂质纳米载体因其在皮肤病管理方面的多种优势而备受关注。脂质纳米载体能够将治疗有效载荷靶向到深层皮肤层,甚至可以到达血液循环,使它们成为一种有前途的前沿技术。脂质纳米载体是指一大类药物传递系统。脂质体是最常见的,已知能够携带亲脂性和亲水性活性剂。通过调整其组成,可以获得多种具有高柔韧性和可变形性的脂质体,即醇质体、转质体和渗透增强脂质体,它们在皮肤渗透方面取得了最佳效果。其他脂质体的设计目的是提高包封率和稳定性,如固体脂质纳米颗粒和纳米结构脂质纳米载体。在本文中,我们试图概述旨在增强皮肤和经皮药物传递的基于脂质的纳米载体的发展。特别关注纳米载体的组成、行为以及与皮肤的相互作用机制。还强调了基于脂质的纳米载体在皮肤病和其他疾病管理中的最新应用。