Molecularly imprinted materials as advanced excipients for drug delivery systems.

Carmen Alvarez-Lorenzo, Angel Concheiro
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引用次数: 59

Abstract

The application of the molecular imprinting technology in the design of new drug delivery systems (DDS) and devices useful in closely related fields, such as diagnostic sensors or biological traps, is receiving increasing attention. Molecular imprinting technology can provide polymeric materials with the ability to recognize specific bioactive molecules and with a sorption/release behaviour that can be made sensitive to the properties of the surrounding medium. In this review, an introduction to the imprinting technology presenting the different approaches in preparing selective polymers of different formats is given, and the key factors involved in obtaining of imprinted binding sites in materials useful for pharmaceutical applications are analysed. Examples of DDS based on molecularly imprinted polymers (MIPs) can be found for the three main approaches developed to control the moment at which delivery should begin and/or the drug release rate; i.e., rate-programmed, activation-modulated or feedback-regulated drug delivery. This review seeks to highlight the most remarkable advantages of the imprinting technique in the development of new efficient DDS as well as to point out some possibilities of adapting the synthesis procedures to create systems compatible with both the relative instable drug molecules, especially of peptide nature, and the sensitive physiological tissues with which MIP-based DDS would enter into contact when administered. The prospects for future development are also analysed.

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分子印迹材料作为药物输送系统的高级赋形剂。
分子印迹技术在新型给药系统(DDS)和相关设备(如诊断传感器或生物陷阱)设计中的应用越来越受到重视。分子印迹技术可以为聚合物材料提供识别特定生物活性分子的能力,并具有对周围介质特性敏感的吸附/释放行为。本文介绍了印迹技术,介绍了制备不同形式选择性聚合物的不同方法,并分析了在药物应用材料中获得印迹结合位点所涉及的关键因素。基于分子印迹聚合物(MIPs)的DDS的例子可以找到三种主要方法来控制应该开始给药的时刻和/或药物释放速度;即,速率编程,激活调节或反馈调节的药物传递。本文综述了印迹技术在开发新型高效DDS方面最显著的优势,并指出了调整合成程序以创建与相对不稳定的药物分子(特别是肽性质的药物分子)和基于mip的DDS在给药时可能接触的敏感生理组织兼容的系统的一些可能性。并对未来的发展前景进行了分析。
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