Drug Research and Development Center (NPDM), Federal University of Cearà, Fortaleza 60430-270, CE, Brazil.
Department of Physiology and Pharmacology, Faculty of Medicine, Federal University of Cearà, Fortaleza 60430-270, CE, Brazil.
Biosensors (Basel). 2023 Jun 28;13(7):689. doi: 10.3390/bios13070689.
The utilization of electrochemical detection techniques in paper-based analytical devices (PADs) has revolutionized point-of-care (POC) testing, enabling the precise and discerning measurement of a diverse array of (bio)chemical analytes. The application of electrochemical sensing and paper as a suitable substrate for point-of-care testing platforms has led to the emergence of electrochemical paper-based analytical devices (ePADs). The inherent advantages of these modified paper-based analytical devices have gained significant recognition in the POC field. In response, electrochemical biosensors assembled from paper-based materials have shown great promise for enhancing sensitivity and improving their range of use. In addition, paper-based platforms have numerous advantageous characteristics, including the self-sufficient conveyance of liquids, reduced resistance, minimal fabrication cost, and environmental friendliness. This study seeks to provide a concise summary of the present state and uses of ePADs with insightful commentary on their practicality in the field. Future developments in ePADs biosensors include developing novel paper-based systems, improving system performance with a novel biocatalyst, and combining the biosensor system with other cutting-edge tools such as machine learning and 3D printing.
电化学检测技术在纸基分析器件(PADs)中的应用彻底改变了即时检测(POC)测试,能够精确、有辨别力地测量各种(生物)化学分析物。电化学传感技术与纸张作为 POC 检测平台合适底物的应用催生了电化学纸基分析器件(ePADs)。这些改良的纸基分析器件具有内在优势,在 POC 领域得到了广泛认可。相应地,由纸基材料组装的电化学生物传感器在提高灵敏度和扩大其用途方面显示出巨大的潜力。此外,纸基平台具有许多优势特性,包括自主输送液体、降低阻力、制造费用低廉和环保。本研究旨在简要总结 ePADs 的现状和用途,并深入探讨其在该领域的实用性。ePADs 生物传感器的未来发展包括开发新型纸基系统、使用新型生物催化剂改善系统性能,以及将生物传感器系统与机器学习和 3D 打印等其他前沿工具相结合。