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用于透皮给药的纳米材料:超越脂质体结构的现有技术水平

Nanomaterials for transdermal drug delivery: beyond the state of the art of liposomal structures.

作者信息

Jijie Roxana, Barras Alexandre, Boukherroub Rabah, Szunerits Sabine

机构信息

Univ. Lille, CNRS, Centrale Lille, ISEN, Univ. Valenciennes, UMR 8520, IEMN, F-59000 Lille, France.

出版信息

J Mater Chem B. 2017 Nov 28;5(44):8653-8675. doi: 10.1039/c7tb02529g. Epub 2017 Nov 1.

Abstract

A wide range of biomedical materials have been proposed to meet the different needs for controlled oral or intravenous drug delivery. The advantages of oral delivery such as self-administration of a pre-determined drug dose at defined time intervals makes it the most convenient means for the delivery of small molecular drugs. It fails however to delivery therapeutic macromolecules due to rapid degradation in the stomach and size-limited transport across the epithelium. The primary mode of administration of macromolecules is presently via injection. This administration mode is not without limitations, as the invasive nature of injections elicits pain and decreases patients' compliance. Alternative routes for drug delivery have been looked for, one being the skin. Delivery of drugs via the skin is based on the therapeutics penetrating the stratum corneum (SC) with the advantage of overcoming first-pass metabolism of drugs, to deliver drugs with a short-half-life time more easily and to eliminate frequent administrations to maintain constant drug delivery. The transdermal market still remains limited to a narrow range of drugs. The low permeability of the SC to water-soluble and macromolecular drugs poses significant challenges to transdermal administration via passive diffusion through the skin, as is the case for all topically administered drug formulations intended to bring the therapeutic into the general circulation. To widen the scope of drugs for transdermal delivery, new procedures to enhance skin permeation to hydrophilic drugs and macromolecules are under development. Next to the integration of skin enhancers into pharmaceutical formulations, nanoparticles based on lipid carriers have been widely considered and reviewed. While being briefly reviewed here, the main focus of this article is on current advancements using polymeric and metallic nanoparticles. Next to these passive technologies, the handful of active technologies for local and systemic transdermal drug delivery will be discussed and put into perspective. While passive approaches dominate the literature and the transdermal market, active delivery based on microneedles or iontophoresis approaches have shown great promise for transdermal drug delivery and have entered the market, in the last decade. This review gives an overall idea of the current activities in this field.

摘要

为满足口服或静脉控释给药的不同需求,人们提出了多种生物医学材料。口服给药的优点包括能在规定时间间隔自行服用预定剂量的药物,这使其成为小分子药物给药最便捷的方式。然而,由于药物在胃中迅速降解以及穿过上皮细胞的尺寸限制运输,口服给药无法递送治疗性大分子。目前大分子的主要给药方式是注射。这种给药方式并非没有局限性,因为注射的侵入性会引起疼痛并降低患者的依从性。人们一直在寻找替代的给药途径,其中之一是皮肤。通过皮肤给药基于治疗药物穿透角质层(SC),其优点是克服药物的首过代谢,更轻松地递送半衰期短的药物,并消除频繁给药以维持恒定的药物递送。透皮给药市场仍然局限于少数几种药物。角质层对水溶性和大分子药物的低渗透性给通过皮肤被动扩散进行透皮给药带来了重大挑战,所有旨在使治疗药物进入体循环的局部给药制剂都是如此。为扩大透皮给药的药物范围,正在开发增强皮肤对亲水性药物和大分子渗透性的新方法。除了将皮肤渗透促进剂整合到药物制剂中,基于脂质载体的纳米颗粒也得到了广泛的考虑和综述。虽然在此简要回顾,但本文的主要重点是使用聚合物和金属纳米颗粒的当前进展。除了这些被动技术,还将讨论并展望用于局部和全身透皮给药的少数主动技术。虽然被动方法在文献和透皮给药市场中占主导地位,但基于微针或离子电渗疗法的主动给药在过去十年中已显示出在透皮给药方面的巨大潜力并已进入市场。本综述给出了该领域当前活动的总体概念。

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