Suhito Intan Rosalina, Koo Kyeong-Mo, Kim Tae-Hyung
School of Integrative Engineering, Chung-Ang University, Seoul 06974, Korea.
Integrative Research Center for Two-Dimensional Functional Materials, Institute of Interdisciplinary Convergence Research, Chung Ang University, Seoul 06974, Korea.
Biomedicines. 2020 Dec 26;9(1):15. doi: 10.3390/biomedicines9010015.
Electrochemical sensors are considered an auspicious tool to detect biomolecules (e.g., DNA, proteins, and lipids), which are valuable sources for the early diagnosis of diseases and disorders. Advances in electrochemical sensing platforms have enabled the development of a new type of biosensor, enabling label-free, non-destructive detection of viability, function, and the genetic signature of whole cells. Numerous studies have attempted to enhance both the sensitivity and selectivity of electrochemical sensors, which are the most critical parameters for assessing sensor performance. Various nanomaterials, including metal nanoparticles, carbon nanotubes, graphene and its derivatives, and metal oxide nanoparticles, have been used to improve the electrical conductivity and electrocatalytic properties of working electrodes, increasing sensor sensitivity. Further modifications have been implemented to advance sensor platform selectivity and biocompatibility using biomaterials such as antibodies, aptamers, extracellular matrix (ECM) proteins, and peptide composites. This paper summarizes recent electrochemical sensors designed to detect target biomolecules and animal cells (cancer cells and stem cells). We hope that this review will inspire researchers to increase their efforts to accelerate biosensor progress-enabling a prosperous future in regenerative medicine and the biomedical industry.
电化学传感器被认为是检测生物分子(如DNA、蛋白质和脂质)的一种有前景的工具,这些生物分子是疾病和紊乱早期诊断的宝贵来源。电化学传感平台的进展使得新型生物传感器得以开发,能够对活细胞的活力、功能和基因特征进行无标记、非破坏性检测。众多研究试图提高电化学传感器的灵敏度和选择性,这是评估传感器性能的最关键参数。各种纳米材料,包括金属纳米颗粒、碳纳米管、石墨烯及其衍生物以及金属氧化物纳米颗粒,已被用于改善工作电极的电导率和电催化性能,提高传感器灵敏度。还采用了进一步的修饰,使用抗体、适体、细胞外基质(ECM)蛋白和肽复合材料等生物材料来提高传感器平台的选择性和生物相容性。本文总结了最近设计用于检测目标生物分子和动物细胞(癌细胞和干细胞)的电化学传感器。我们希望这篇综述能激励研究人员加大努力,加速生物传感器的进展,为再生医学和生物医学产业带来繁荣的未来。