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决定纳米载体经皮渗透和细胞摄取的因素:临床开发的新希望。

The Factors Determining the Skin Penetration and Cellular Uptake of Nanocarriers: New Hope for Clinical Development.

机构信息

Food and Drug Safety Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Neurosciences Research Center (NSRC), Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Curr Pharm Des. 2021;27(42):4315-4329. doi: 10.2174/1381612827666210810091745.

Abstract

The skin provides a protective barrier against toxic environments and also offers a valuable route for topical drug delivery. The stratum corneum (SC) is the outermost layer of the skin and serves as the major barrier to chemical transfer through the skin. The human skin barrier is particularly difficult to overcome because of the complex composition and structure of the SC. Nanoparticulate carriers have gained widespread attention in topical drug delivery due to their tunable and versatile properties. The present review summarizes the main factors involved in skin penetration of nanocarriers containing the drug. Employment of nanotechnology in topical delivery has grown progressively during recent years; however, it is important to monitor the skin penetration of nanocarriers prior to their use to avoid possible toxic effects. Nanocarriers can act as a means to increase skin permeation of drugs by supporting direct interaction with the SC and increasing the period of permanence on the skin. Skin penetration is influenced by the physicochemical characteristics of nanocarriers such as composition, size, shape, surface chemistry, as well as skin features. Considering that the target of topical systems based on nanocarriers is the penetration of therapeutic agents in the skin layers, so a detailed understanding of the factors influencing skin permeability of nanocarriers is essential for safe and efficient therapeutic applications.

摘要

皮肤为人体提供了一道抵御有毒环境的屏障,同时也是药物经皮给药的重要途径。表皮层(Stratum Corneum,SC)是皮肤的最外层,是化学物质经皮传递的主要屏障。由于 SC 的复杂组成和结构,人体皮肤屏障特别难以克服。由于其可调且多功能的特性,纳米载体在经皮药物传递中得到了广泛关注。本综述总结了载药纳米载体经皮渗透的主要影响因素。近年来,纳米技术在经皮给药中的应用逐渐增多;然而,在使用纳米载体之前,监测其皮肤渗透情况非常重要,以避免可能的毒性作用。纳米载体可以通过与 SC 直接相互作用并增加在皮肤表面的停留时间,从而增加药物的皮肤渗透。纳米载体的经皮渗透受到其物理化学特性的影响,如组成、大小、形状、表面化学性质以及皮肤特征等。考虑到基于纳米载体的经皮给药系统的目标是将治疗剂渗透到皮肤层中,因此,详细了解影响纳米载体皮肤渗透性的因素对于安全有效的治疗应用至关重要。

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