Lusina Aleksandra, Cegłowski Michał
Faculty of Chemistry, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.
Polymers (Basel). 2022 Feb 8;14(3):640. doi: 10.3390/polym14030640.
Molecularly Imprinted Polymers (MIPs) are polymeric networks capable of recognizing determined analytes. Among other methods, non-covalent imprinting has become the most popular synthesis strategy for Molecular Imprinting Technology (MIT). While MIPs are widely used in various scientific fields, one of their most challenging applications lies within pharmaceutical chemistry, namely in therapeutics or various medical therapies. Many studies focus on using hydrogel MIPs in transdermal drug delivery, as the most valuable feature of hydrogels in their application in drug delivery systems that allow controlled diffusion and amplification of the microscopic events. Hydrogels have many advantages over other imprinting materials, such as milder synthesis conditions at lower temperatures or the increase in the availability of biological templates like DNA, protein, and nucleic acid. Moreover, one of the most desirable controlled drug delivery applications is the development of stimuli-responsive hydrogels that can modulate the release in response to changes in pH, temperature, ionic strength, or others. The most important feature of these systems is that they can be designed to operate within a particular human body area due to the possibility of adapting to well-known environmental conditions. Therefore, molecularly imprinted hydrogels play an important role in the development of modern drug delivery systems.
分子印迹聚合物(MIPs)是能够识别特定分析物的聚合物网络。在其他方法中,非共价印迹已成为分子印迹技术(MIT)最流行的合成策略。虽然MIPs广泛应用于各个科学领域,但其最具挑战性的应用之一在于药物化学领域,即在治疗学或各种医学疗法中。许多研究聚焦于将水凝胶MIPs用于透皮给药,因为水凝胶在药物递送系统中的最有价值特性是其能够实现可控扩散并放大微观事件。与其他印迹材料相比,水凝胶具有许多优势,例如在较低温度下合成条件更温和,或者像DNA、蛋白质和核酸等生物模板的可用性增加。此外,最理想的可控药物递送应用之一是开发能够响应pH值、温度、离子强度或其他变化来调节释放的刺激响应性水凝胶。这些系统的最重要特征是,由于有可能适应已知的环境条件,它们可以被设计在人体的特定区域内发挥作用。因此,分子印迹水凝胶在现代药物递送系统的开发中发挥着重要作用。