Pillay Viness, Tsai Tong-Sheng, Choonara Yahya E, du Toit Lisa C, Kumar Pradeep, Modi Girish, Naidoo Dinesh, Tomar Lomas K, Tyagi Charu, Ndesendo Valence M K
Department of Pharmacy and Pharmacology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.
J Biomed Mater Res A. 2014 Jun;102(6):2039-54. doi: 10.1002/jbm.a.34869. Epub 2013 Jul 30.
Electroactive polymers (EAPs) are promising candidate materials for the design of drug delivery technologies, especially in conditions where an "on-off" drug release mechanism is required. To achieve this, EAPs such as polyaniline, polypyrrole, polythiophene, ethylene vinyl acetate, and polyethylene may be blended into responsive hydrogels in conjunction with the desired drug to obtain a patient-controlled drug release system. The "on-off" drug release mechanism can be achieved through the environmental-responsive nature of the interpenetrating hydrogel-EAP complex via (i) charged ions initiated diffusion of drug molecules; (ii) conformational changes that occur during redox switching of EAPs; or (iii) electroerosion. These release mechanisms are not exhaustive and new release mechanisms are still under investigation. Therefore, this review seeks to provide a concise incursion and critical overview of EAPs and responsive hydrogels as a strategy for advanced drug delivery, for example, controlled release of neurotransmitters, sulfosalicyclic acid from cross-linked hydrogel, and vaccine delivery. The review further discusses techniques such as linear sweep voltammetry, cyclic voltammetry, impedance spectroscopy, and chronoamperometry for the determination of the redox capability of EAPs. The future implications of the hydrogel-EAP composites include, but not limited to, application toward biosensors, DNA hybridizations, microsurgical tools, and miniature bioreactors and may be utilized to their full potential in the form of injectable devices as nanorobots or nanobiosensors.
电活性聚合物(EAPs)是药物递送技术设计中很有前景的候选材料,尤其是在需要“开-关”药物释放机制的情况下。为实现这一点,聚苯胺、聚吡咯、聚噻吩、乙烯-醋酸乙烯酯和聚乙烯等电活性聚合物可与所需药物一起混入响应性水凝胶中,以获得患者可控的药物释放系统。“开-关”药物释放机制可通过互穿水凝胶-EAP复合物的环境响应特性来实现,具体方式包括:(i)带电离子引发药物分子扩散;(ii)电活性聚合物氧化还原转换过程中发生的构象变化;或(iii)电蚀。这些释放机制并非详尽无遗,新的释放机制仍在研究中。因此,本综述旨在简要介绍并批判性地概述电活性聚合物和响应性水凝胶,将其作为一种先进药物递送策略,例如神经递质的控释、从交联水凝胶中释放磺基水杨酸以及疫苗递送。该综述还讨论了用于测定电活性聚合物氧化还原能力的技术,如线性扫描伏安法、循环伏安法、阻抗谱和计时电流法。水凝胶-EAP复合材料的未来应用包括但不限于生物传感器、DNA杂交、显微手术工具和微型生物反应器,并且可以以可注射装置的形式充分发挥其潜力,用作纳米机器人或纳米生物传感器。