Departament d'Enginyeria Química, EEBE, Universitat Politècnica de Catalunya, C/ d'Eduard Maristany, 10-14, Building I, E-08019 Barcelona, Spain.
Barcelona Research Center in Multiscale Science and Engineering, Universitat Politècnica de Catalunya, Campus Diagonal Besòs (EEBE), C/ d'Eduard Maristany 10-14, Edifici IS, 08019 Barcelona, Spain.
Molecules. 2020 May 24;25(10):2446. doi: 10.3390/molecules25102446.
Polymer materials offer several advantages as supports of biosensing platforms in terms of flexibility, weight, conformability, portability, cost, disposability and scope for integration. The present study reviews the field of electrochemical biosensors fabricated on modified plastics and polymers, focusing the attention, in the first part, on modified conducting polymers to improve sensitivity, selectivity, biocompatibility and mechanical properties, whereas the second part is dedicated to modified "environmentally friendly" polymers to improve the electrical properties. These ecofriendly polymers are divided into three main classes: bioplastics made from natural sources, biodegradable plastics made from traditional petrochemicals and eco/recycled plastics, which are made from recycled plastic materials rather than from raw petrochemicals. Finally, flexible and wearable lab-on-a-chip (LOC) biosensing devices, based on plastic supports, are also discussed. This review is timely due to the significant advances achieved over the last few years in the area of electrochemical biosensors based on modified polymers and aims to direct the readers to emerging trends in this field.
聚合物材料作为生物传感平台的支持物具有许多优点,例如灵活性、重量、顺应性、便携性、成本、可处置性和集成范围。本研究综述了在改性塑料和聚合物上制备的电化学生物传感器领域,重点关注第一部分中改性导电聚合物在提高灵敏度、选择性、生物相容性和机械性能方面的应用,而第二部分则致力于改性“环保”聚合物以改善电性能。这些环保聚合物分为三大类:由天然来源制成的生物塑料、由传统石化产品制成的可生物降解塑料和由回收塑料材料而不是原始石化产品制成的生态/回收塑料。最后,还讨论了基于塑料载体的柔性可穿戴片上实验室(LOC)生物传感设备。由于在过去几年中,基于改性聚合物的电化学生物传感器领域取得了重大进展,因此本综述具有及时性,旨在为读者指明该领域的新兴趋势。