Byrne Mark E, Park Kinam, Peppas Nicholas A
NSF Program on Therapeutic and Diagnostic Devices, Purdue University, West Lafayette, IN 47907, USA.
Adv Drug Deliv Rev. 2002 Jan 17;54(1):149-61. doi: 10.1016/s0169-409x(01)00246-0.
Hydrogels have been used primarily in the pharmaceutical field as carriers for delivery of various drugs, peptides and proteins. These systems have included stimuli-responsive gels that exhibit reversible swelling behavior and hence can show modulated release in response to external stimuli such as pH, temperature, ionic strength, electric field, or specific analyte concentration gradients. The focus of this article is to review molecular imprinting within hydrogels and discuss recent efforts on analyte-responsive intelligent gels, specifically suggesting the possibility of utilizing molecular imprinting strategies to impart analyte specificity and responsiveness within these systems. Molecular imprinting is an emerging field that produces precise chemical architecture that can bind analytes and differentiate between similar molecules with enantiomeric resolution. On the forefront of imprinting gel systems are intelligent, stimuli-sensitive imprinted gels that modify their swelling behavior and in turn modulate their analyte binding abilities. We discuss the challenges creating an imprinting effect in hydrogels and the possibilities of using molecularly imprinted mechanisms within controlled release gels.
水凝胶主要在制药领域用作各种药物、肽和蛋白质递送的载体。这些体系包括刺激响应性凝胶,其表现出可逆的溶胀行为,因此能够响应外部刺激(如pH值、温度、离子强度、电场或特定分析物浓度梯度)而呈现出调节释放。本文的重点是综述水凝胶中的分子印迹,并讨论近期在分析物响应智能凝胶方面的研究成果,特别提出利用分子印迹策略在这些体系中赋予分析物特异性和响应性的可能性。分子印迹是一个新兴领域,它能产生精确的化学结构,可结合分析物并以对映体分辨率区分相似分子。在印迹凝胶体系的前沿是智能、刺激敏感型印迹凝胶,它们能改变自身的溶胀行为,进而调节其分析物结合能力。我们讨论了在水凝胶中产生印迹效应所面临的挑战以及在控释凝胶中使用分子印迹机制的可能性。