CMN-CIMBIOS Group, Escuela de Física, Universidad Industrial de Santander, Cra 27 Cll 9, Bucaramanga 680002, Colombia.
Instituto de Micro y Nanotecnología, IMN-CNM, CSIC (CEI UAM+CSIC), Isaac Newton 8, E-28760 Madrid, Spain.
Sensors (Basel). 2021 Sep 14;21(18):6167. doi: 10.3390/s21186167.
TiO electrochemical biosensors represent an option for biomolecules recognition associated with diseases, food or environmental contaminants, drug interactions and related topics. The relevance of TiO biosensors is due to the high selectivity and sensitivity that can be achieved. The development of electrochemical biosensors based on nanostructured TiO surfaces requires knowing the signal extracted from them and its relationship with the properties of the transducer, such as the crystalline phase, the roughness and the morphology of the TiO nanostructures. Using relevant literature published in the last decade, an overview of TiO based biosensors is here provided. First, the principal fabrication methods of nanostructured TiO surfaces are presented and their properties are briefly described. Secondly, the different detection techniques and representative examples of their applications are provided. Finally, the functionalization strategies with biomolecules are discussed. This work could contribute as a reference for the design of electrochemical biosensors based on nanostructured TiO surfaces, considering the detection technique and the experimental electrochemical conditions needed for a specific analyte.
TiO 电化学生物传感器是一种用于识别与疾病、食品或环境污染物、药物相互作用及相关主题相关的生物分子的选择。TiO 生物传感器的相关性在于可以实现高选择性和灵敏度。基于纳米结构 TiO 表面的电化学生物传感器的发展需要了解从它们中提取的信号及其与换能器特性(例如,结晶相、TiO 纳米结构的粗糙度和形态)的关系。使用过去十年中发表的相关文献,对基于 TiO 的生物传感器进行了概述。首先,介绍了纳米结构 TiO 表面的主要制造方法,并简要描述了它们的特性。其次,提供了不同的检测技术及其应用的代表性示例。最后,讨论了与生物分子的功能化策略。这项工作可以作为基于纳米结构 TiO 表面的电化学生物传感器设计的参考,考虑到检测技术和特定分析物所需的实验电化学条件。