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近年来,PEDOT/PProDOT 衍生纳米生物传感器的进展:纳米组装工程促进生物分子检测的先进检测平台。

Recent advances in PEDOT/PProDOT-derived nano biosensors: engineering nano assemblies for fostering advanced detection platforms for biomolecule detection.

机构信息

Smart Organic Materials Laboratory (SOML), Institute of Chemistry, Academia Sinica No. 128, Sec. 2, Nankang District, Taipei City 115201, Taiwan.

出版信息

Nanoscale. 2024 Sep 26;16(37):17202-17229. doi: 10.1039/d4nr01449a.

Abstract

With the recent unprecedented emergence of a global pandemic, unknown diseases and new metabolic patterns expressing serious health issues, the requirement to develop new diagnostic tools, therapeutic solutions, and healthcare and environmental monitoring systems are significantly higher in the present situation. Considering that high sensitivity, selectivity, stability and a low limit of detection (LOD) are inevitable requirements for an ideal biosensor, the class of conducting polymers of poly(3,4-ethylenedioxythiophene) (PEDOT) and recently poly(3,4-propylenedioxythiophene) (PProDOT) materials have been demonstrated to be promising candidates for designing sensor devices. Nanostructure engineering of these polymeric materials with tunable surface properties and side chain functionalization to enable sensor probe conjugation combined with signal amplification devices such as OECTs and OFETs can fulfil the requirements of next-generation smart nano-biosensors. In this review, we analyze recent reports on PEDOT/PProDOT nanostructures and nanocomposites for developing nano-biosensors and their application in the detection of different biomarkers, environmental, toxicology, marine and aquatic monitoring, forensic and illicit drug detection, . In addition, we discuss the challenges associated with the design of PEDOT/PProDOT nano-biosensors and future perspectives on the exploration of novel sensor platforms, particularly PProDOT derivatives for bioelectronics and novel design strategies for next-generation smart nano-biosensors.

摘要

随着最近全球大流行病的空前出现,未知疾病和表达严重健康问题的新代谢模式的出现,目前对开发新的诊断工具、治疗解决方案以及医疗保健和环境监测系统的需求明显更高。鉴于高灵敏度、选择性、稳定性和低检测限(LOD)是理想生物传感器的必然要求,聚(3,4-乙撑二氧噻吩)(PEDOT)和最近的聚(3,4-丙撑二氧噻吩)(PProDOT)类导电聚合物材料已被证明是设计传感器设备的有前途的候选材料。这些聚合物材料的纳米结构工程具有可调表面性质和侧链功能化,可实现传感器探针的结合,并结合 OECT 和 OFET 等信号放大器件,可满足下一代智能纳米生物传感器的要求。在这篇综述中,我们分析了最近关于 PEDOT/PProDOT 纳米结构和纳米复合材料用于开发纳米生物传感器及其在不同生物标志物、环境、毒理学、海洋和水监测、法医和非法药物检测等方面的应用的报告。此外,我们还讨论了设计 PEDOT/PProDOT 纳米生物传感器所面临的挑战以及对探索新型传感器平台的未来展望,特别是针对生物电子学的 PProDOT 衍生物和下一代智能纳米生物传感器的新型设计策略。

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