Alkahtani Manal E, Elbadawi Moe, Chapman Christopher A R, Green Rylie A, Gaisford Simon, Orlu Mine, Basit Abdul W
UCL School of Pharmacy, University College London, 29-39 Brunswick Square, London, WC1N 1AX, UK.
Department of Pharmaceutics, College of Pharmacy, Prince Sattam bin Abdulaziz University, Alkharj, 11942, Saudi Arabia.
Adv Healthc Mater. 2024 Jan;13(3):e2301759. doi: 10.1002/adhm.202301759. Epub 2023 Nov 12.
Conductive materials have played a significant role in advancing society into the digital era. Such materials are able to harness the power of electricity and are used to control many aspects of daily life. Conductive polymers (CPs) are an emerging group of polymers that possess metal-like conductivity yet retain desirable polymeric features, such as processability, mechanical properties, and biodegradability. Upon receiving an electrical stimulus, CPs can be tailored to achieve a number of responses, such as harvesting energy and stimulating tissue growth. The recent FDA approval of a CP-based material for a medical device has invigorated their research in healthcare. In drug delivery, CPs can act as electrical switches, drug release is achieved at a flick of a switch, thereby providing unprecedented control over drug release. In this review, recent developments in CP as electroactive polymers for voltage-stimuli responsive drug delivery systems are evaluated. The review demonstrates the distinct drug release profiles achieved by electroactive formulations, and both the precision and ease of stimuli response. This level of dynamism promises to yield "smart medicines" and warrants further research. The review concludes by providing an outlook on electroactive formulations in drug delivery and highlighting their integral roles in healthcare IoT.
导电材料在推动社会进入数字时代方面发挥了重要作用。这类材料能够利用电力,被用于控制日常生活的许多方面。导电聚合物(CPs)是一类新兴的聚合物,它们具有类似金属的导电性,但仍保留了诸如可加工性、机械性能和生物降解性等理想的聚合物特性。在受到电刺激时,导电聚合物可以被定制以实现多种响应,如收集能量和刺激组织生长。美国食品药品监督管理局(FDA)最近批准了一种用于医疗设备的基于导电聚合物的材料,这激发了它们在医疗保健领域的研究。在药物递送中,导电聚合物可以充当电开关,轻按开关即可实现药物释放,从而对药物释放提供前所未有的控制。在这篇综述中,评估了导电聚合物作为用于电压刺激响应型药物递送系统的电活性聚合物的最新进展。该综述展示了电活性制剂实现的独特药物释放曲线,以及刺激响应的精确性和简便性。这种动态水平有望产生“智能药物”,值得进一步研究。综述最后展望了药物递送中的电活性制剂,并强调了它们在医疗物联网中的不可或缺的作用。