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光敏智能给药系统。

Light-sensitive intelligent drug delivery systems.

作者信息

Alvarez-Lorenzo Carmen, Bromberg Lev, Concheiro Angel

机构信息

Departamento de Farmacia y Tecnología Farmacéutica, Facultad de Farmacia, Universidad de Santiago de Compostela, Santiago de Compostela, Spain.

出版信息

Photochem Photobiol. 2009 Jul-Aug;85(4):848-60. doi: 10.1111/j.1751-1097.2008.00530.x. Epub 2009 Feb 13.

Abstract

Drug delivery systems (DDS) capable of releasing an active molecule at the appropriate site and at a rate that adjusts in response to the progression of the disease or to certain functions/biorhythms of the organism are particularly appealing. Biocompatible materials sensitive to certain physiological variables or external physicochemical stimuli (intelligent materials) can be used for achieving this aim. Light-responsiveness is receiving increasing attention owing to the possibility of developing materials sensitive to innocuous electromagnetic radiation (mainly in the UV, visible and near-infrared range), which can be applied on demand at well delimited sites of the body. Some light-responsive DDS are of a single use (i.e. the light triggers an irreversible structural change that provokes the delivery of the entire dose) while others able to undergo reversible structural changes when cycles of light/dark are applied, behave as multi-switchable carriers (releasing the drug in a pulsatile manner). In this review, the mechanisms used to develop polymeric micelles, gels, liposomes and nanocomposites with light-sensitiveness are analyzed. Examples of the capability of some polymeric, lipidic and inorganic structures to regulate the release of small solutes and biomacromolecules are presented and the potential of light-sensitive carriers as functional components of intelligent DDS is discussed.

摘要

能够在适当部位以响应疾病进展或机体某些功能/生物节律而调整的速率释放活性分子的药物递送系统(DDS)特别具有吸引力。对某些生理变量或外部物理化学刺激敏感的生物相容性材料(智能材料)可用于实现这一目标。由于有可能开发对无害电磁辐射(主要在紫外、可见光和近红外范围内)敏感的材料,光响应性正受到越来越多的关注,这些材料可以按需应用于身体界限分明的部位。一些光响应性DDS是一次性使用的(即光引发不可逆的结构变化,从而促使整个剂量的释放),而其他一些在施加光/暗循环时能够发生可逆结构变化的DDS则表现为多开关载体(以脉冲方式释放药物)。在这篇综述中,分析了用于开发具有光敏感性的聚合物胶束、凝胶、脂质体和纳米复合材料的机制。列举了一些聚合物、脂质和无机结构调节小溶质和生物大分子释放能力的实例,并讨论了光敏感载体作为智能DDS功能组件的潜力。

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