Laboratorio di Chimica Analitica, Dipartimento di Scienze e Tecnologie Biologiche e Ambientali (Di.S.Te.B.A.), Università del Salento, Via Monteroni, 73100 Lecce, Italy.
Biosensors (Basel). 2024 Jul 22;14(7):358. doi: 10.3390/bios14070358.
Nanoparticles of molecularly imprinted polymers (nanoMIPs) combine the excellent recognition ability of imprinted polymers with specific properties related to the nanosize, such as a high surface-to-volume ratio, resulting in highly performing recognition elements with surface-exposed binding sites that promote the interaction with the target and, in turn, binding kinetics. Different synthetic strategies are currently available to produce nanoMIPs, with the possibility to select specific conditions in relation to the nature of monomers/templates and, importantly, to tune the nanoparticle size. The excellent sensing properties, combined with the size, tunability, and flexibility of synthetic protocols applicable to different targets, have enabled the widespread use of nanoMIPs in several applications, including sensors, imaging, and drug delivery. The present review summarizes nanoMIPs applications in sensors, specifically focusing on electrochemical detection, for which nanoMIPs have been mostly applied. After a general survey of the most widely adopted nanoMIP synthetic approaches, the integration of imprinted nanoparticles with electrochemical transducers will be discussed, representing a key step for enabling a reliable and stable sensor response. The mechanisms for electrochemical signal generation will also be compared, followed by an illustration of nanoMIP-based electrochemical sensor employment in several application fields. The high potentialities of nanoMIP-based electrochemical sensors are presented, and possible reasons that still limit their commercialization and issues to be resolved for coupling electrochemical sensing and nanoMIPs in an increasingly widespread daily-use technology are discussed.
纳米印迹聚合物(nanoMIPs)纳米粒子将印迹聚合物的优异识别能力与纳米尺寸相关的特定性质相结合,例如高的表面积与体积比,从而产生具有暴露于表面的结合位点的高性能识别元件,这些结合位点促进与目标的相互作用,并进而促进结合动力学。目前有多种合成策略可用于制备 nanoMIPs,可以根据单体/模板的性质选择特定的条件,并且重要的是,可以调整纳米粒子的尺寸。出色的传感性能,加上合成方案的尺寸、可调节性和灵活性,适用于不同的目标,使得 nanoMIPs 在包括传感器、成像和药物输送在内的多个应用领域得到了广泛的应用。本综述总结了 nanoMIPs 在传感器中的应用,特别是侧重于电化学检测,这是 nanoMIPs 应用最多的领域。在对最广泛采用的 nanoMIP 合成方法进行了一般性调查之后,将讨论印迹纳米粒子与电化学换能器的集成,这是实现可靠和稳定传感器响应的关键步骤。还将比较电化学信号产生的机制,然后说明基于 nanoMIP 的电化学传感器在几个应用领域的应用。提出了基于 nanoMIP 的电化学传感器的高潜力,并讨论了仍然限制其商业化的可能原因以及在日益普及的日常使用技术中结合电化学传感和 nanoMIPs 时需要解决的问题。