Puoci Francesco, Iemma Francesca, Picci Nevio
Dipartimento di Scienze Farmaceutiche, Università della Calabria, Edificio Polifunzionale, Arcavacata di Rende (CS), Italy.
Curr Drug Deliv. 2008 Apr;5(2):85-96. doi: 10.2174/156720108783954888.
Molecular imprinting is an efficient technique for introducing regions with a highly specific molecular arrangement into a polymeric matrix. The first example of a molecularly imprinted polymer (MIP) was reported half a century ago; however, the use of molecular imprinting has become a well established practical tool only in the last decade. Recently, MIPs are widely used, for example, in chromatographic applications or enzyme antibody mimics. MIPs have also been used in biological applications such as drug delivery systems (DDS), and they have also been successfully applied as excipients in controlled delivery systems. Their huge potential could bring about intelligent drug release; this refers to the release, in a predictable way, of therapeutic agents in response to specific environmental stimuli (the presence of another molecule, pH changes, temperature, etc.). This review is focused on particular intelligent devices of this type that exhibit selective recognition (traps for toxic molecules) and release (of drugs in order to prolong the duration of pharmacological action) in response to specific stimuli. The "stimuli-responsive molecularly imprinted polymers" reviewed in this paper are expected to contribute significantly to the exploration and development of new generations of intelligent and self-regulated drug delivery systems.
分子印迹是一种将具有高度特异性分子排列的区域引入聚合物基质的有效技术。分子印迹聚合物(MIP)的首个实例是在半个世纪前报道的;然而,分子印迹技术直到最近十年才成为一种成熟的实用工具。近来,MIP被广泛应用,例如用于色谱应用或模拟酶抗体。MIP也已用于生物应用,如药物递送系统(DDS),并且它们也已成功用作控释系统中的辅料。它们的巨大潜力可能带来智能药物释放;这是指治疗剂以可预测的方式响应特定环境刺激(另一种分子的存在、pH变化、温度等)而释放。本综述聚焦于这类特定的智能装置,它们能够响应特定刺激表现出选择性识别(捕获有毒分子)和释放(释放药物以延长药理作用持续时间)。本文所综述的“刺激响应性分子印迹聚合物”有望为新一代智能和自我调节药物递送系统的探索与开发做出重大贡献。