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使用基于分子印迹聚合物的热传感平台研究纳米多孔基质的药物递送动力学

Studying the Drug Delivery Kinetics of a Nanoporous Matrix Using a MIP-Based Thermal Sensing Platform.

作者信息

Pawley Christopher J, Perez-Gavilan Ariane, Foley Kaelin S, Lentink Sarah, Welsh Hannah N, Tuijthof Gabrielle, Steen Redeker Erik, Diliën Hanne, Eersels Kasper, Van Grinsven Bart, Cleij Thomas J

机构信息

Maastricht Science Programme, Maastricht University, P.O. Box 616, 6200 MD Maastricht, The Netherlands.

Dublin Institute of Technology, School of Chemical and Pharmaceutical Sciences, Kevin Street, D08 X622 Dublin 2, Ireland.

出版信息

Polymers (Basel). 2017 Oct 28;9(11):560. doi: 10.3390/polym9110560.

Abstract

The implementation of Molecularly Imprinted Polymers (MIPs) into sensing systems has been demonstrated abundantly over the past few decades. In this article, a novel application for an MIP-based thermal sensing platform is introduced by using the sensor to characterize the drug release kinetics of a nanoporous silver-organic framework. This Ag nanoporous matrix was loaded with acetylsalicylic acid (aspirin) which was used as a model drug compound in this study. The drug elution properties were studied by placing the nanoporous matrix in phosphate buffered saline solution for two days and measuring the drug concentration at regular time intervals. To this extent, an acrylamide-based MIP was synthesized that was able to detect aspirin in a specific and selective manner. Rebinding of the template to the MIP was analyzed using a thermal sensor platform. The results illustrate that the addition of aspirin into the sensing chamber leads to a concentration-dependent increase in the phase shift of a thermal wave that propagates through the MIP-coated sensor chip. After constructing a dose-response curve, this system was used to study the drug release kinetics of the nanoporous matrix, clearly demonstrating that the metalorganic framework releases the drug steadily over the course of the first hour, after which the concentration reaches a plateau. These findings were further confirmed by UV⁻Visible spectroscopy, illustrating a similar time-dependent release in the same concentration range, which demonstrates that the MIP-based platform can indeed be used as a low-cost straightforward tool to assess the efficacy of drug delivery systems in a lab environment.

摘要

在过去几十年中,分子印迹聚合物(MIPs)在传感系统中的应用已得到充分证明。在本文中,介绍了一种基于MIP的热传感平台的新应用,即使用该传感器表征纳米多孔银有机框架的药物释放动力学。该银纳米多孔基质负载了乙酰水杨酸(阿司匹林),在本研究中用作模型药物化合物。通过将纳米多孔基质置于磷酸盐缓冲盐溶液中两天,并定期测量药物浓度,研究了药物洗脱特性。在此范围内,合成了一种基于丙烯酰胺的MIP,它能够以特异性和选择性方式检测阿司匹林。使用热传感器平台分析模板与MIP的再结合。结果表明,向传感室中加入阿司匹林会导致传播通过MIP涂层传感器芯片的热波相移呈浓度依赖性增加。构建剂量反应曲线后,该系统用于研究纳米多孔基质的药物释放动力学,清楚地表明金属有机框架在最初一小时内稳定释放药物,之后浓度达到平台期。紫外可见光谱进一步证实了这些发现,表明在相同浓度范围内存在类似的时间依赖性释放,这表明基于MIP的平台确实可以用作在实验室环境中评估药物递送系统功效的低成本直接工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a1f/6418916/5a96aba25ebf/polymers-09-00560-g001.jpg

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