Department of Fundamental Chemistry, Institute of Chemistry, University of São Paulo, Av. Prof. Lineu Prestes, 748, São Paulo, 05508-000, Brazil.
Mikrochim Acta. 2022 Feb 8;189(3):94. doi: 10.1007/s00604-022-05184-x.
Recent research in the field of electrochemical biosensors equipped with peptides and nanomaterials have been categorized, reviewed, and critically analyzed. Indeed, using these innovative biosensors can revolutionize biomedical diagnostics in the future. Saving lives, time, and money in this field will be considered as some main benefits of this type of diagnosis. Here, these biosensors have been categorized and evaluated in four main sections. In the first section, the focus is on investigating the types of electrochemical peptide-based nanobiosensors applied to detect pathogenic microorganisms, microbial toxins, and viruses. In the second section, due to the importance of rapid diagnosis and prognosis of various cancers, the electrochemical peptide-based nanobiosensors designed to detect cancer biomarkers have been reviewed and analyzed. In the third section, the electrochemical peptide-based nanobiosensors, which were applied to detect the essential and effective biomolecules in the various diseases, and health control, including enzymes, hormones, biomarkers, and other biomolecules, have been considered. Finally, using a comprehensive analysis, all the used elements in these biosensors have been presented as conceptual diagrams that can effectively guide researchers in future developments. The essential factors in evaluating and analyzing these electrochemical peptide-based nanobiosensors such as analyte, peptide sequence, functional groups interacted between the peptide sequences and other biosensing components, the applied nanomaterials, diagnostic techniques, detection range, and limit of detection have also been included. Other analyzable items such as the type of used redox marker and the location of the peptide sequence against the signal transducer were also considered.
最近在配备肽和纳米材料的电化学生物传感器领域的研究已经进行了分类、综述和批判性分析。事实上,未来使用这些创新的生物传感器可以彻底改变生物医学诊断。在这个领域,节省生命、时间和金钱将被视为这种诊断的一些主要好处。在这里,这些生物传感器已经分为四个主要部分进行评估。在第一部分,重点研究了应用于检测病原体微生物、微生物毒素和病毒的基于电化学肽的纳米生物传感器的类型。在第二部分,由于快速诊断和各种癌症预后的重要性,设计用于检测癌症生物标志物的基于电化学肽的纳米生物传感器已经进行了综述和分析。在第三部分,研究了应用于检测各种疾病和健康控制中必需和有效生物分子的基于电化学肽的纳米生物传感器,包括酶、激素、生物标志物和其他生物分子。最后,通过综合分析,展示了这些生物传感器中使用的所有元素作为概念图,可有效指导研究人员进行未来的发展。还包括了评估和分析这些基于电化学肽的纳米生物传感器的重要因素,如分析物、肽序列、肽序列与其他生物传感组件之间相互作用的官能团、应用的纳米材料、诊断技术、检测范围和检测限。还考虑了其他可分析的项目,如使用的氧化还原标记物的类型和肽序列相对于信号转换器的位置。