Department of Chemistry, Durban University of Technology, PO Box 1334, Durban 4000, South Africa.
Department of Chemistry, School of Mathematical and Natural Sciences, University of Venda, Private Bag X5050, Thohoyandou 0950, South Africa.
J Pharm Biomed Anal. 2018 Jan 5;147:624-633. doi: 10.1016/j.jpba.2017.04.010. Epub 2017 Apr 23.
The occurrence of pharmaceuticals used as non-steroidal anti-inflammatory drugs (NSAIDs) and analgesics in the aquatic environment is a threat to humans and aquatic species at large. The primary route of these pharmaceuticals to aquatic environment is through human waste such as urine and faeces. The application of molecularly imprinted polymers (MIPs) in the solid-phase extraction (SPE) of such pollutants from environmental and biological samples is important for the pre-concentration of compounds and selectivity of the analytical methods. To date, there are still limited commercial suppliers of MIPs. However, it is easy to synthesize such polymers via non-covalent imprinting approach using easily available and affordable reagents. Therefore, the applications of MIPs in the SPE of NSAIDs and analgesics from environmental and biological samples are reviewed. This is very important because despite the fact that review articles on applications of MIPs for organic compounds have been reported, very little has focussed on NSAIDs and analgesics which are the major studied pharmaceuticals in the environment and biological samples. The review also brings out important aspects of common reagents used including the template molecules during MIP synthesis. Application and future trends are also discussed. Gaps such as little use of environmental friendly reagents such as ionic liquids have been identified. Also, the lack of MIP applications to some compounds such as fenoprofen has been observed which is likely to be developed in the near future.
用于非甾体抗炎药(NSAIDs)和镇痛药的药物在水生环境中的出现对人类和水生生物构成了威胁。这些药物进入水生环境的主要途径是通过人类的尿液和粪便等废物。分子印迹聚合物(MIPs)在固相萃取(SPE)中用于从环境和生物样品中提取此类污染物,对于化合物的预浓缩和分析方法的选择性非常重要。迄今为止,用于 MIP 的商业供应商仍然有限。但是,通过使用易于获得且价格合理的试剂的非共价印迹方法,很容易合成此类聚合物。因此,综述了 MIP 在 SPE 中从环境和生物样品中分离 NSAIDs 和镇痛药的应用。这非常重要,因为尽管已经有关于 MIP 用于有机化合物的应用的综述文章,但很少有文章集中于 NSAIDs 和镇痛药,它们是环境和生物样品中主要研究的药物。该综述还介绍了 MIP 合成过程中模板分子等常用试剂的重要方面。还讨论了应用和未来趋势。已经确定了一些空白,例如很少使用环境友好型试剂,例如离子液体。此外,还观察到 MIP 应用于某些化合物(例如芬布芬)的缺乏,这可能在不久的将来得到开发。