Dumitrescu Eduard, Andreescu Silvana
Clarkson University, Clarkson, NY, United States.
Clarkson University, Clarkson, NY, United States.
Methods Enzymol. 2017;589:301-350. doi: 10.1016/bs.mie.2017.01.017. Epub 2017 Mar 9.
Recent progress in the electrochemical field enabled development of miniaturized sensing devices that can be used in biological settings to obtain fundamental and practical biochemically relevant information on physiology, metabolism, and disease states in living systems. Electrochemical sensors and biosensors have demonstrated potential for rapid, real-time measurements of biologically relevant molecules. This chapter provides an overview of the most recent advances in the development of miniaturized sensors for biological investigations in living systems, with focus on the detection of neurotransmitters and oxidative stress markers. The design of electrochemical (bio)sensors, including their detection mechanism and functionality in biological systems, is described as well as their advantages and limitations. Application of these sensors to studies in live cells, embryonic development, and rodent models is discussed.
电化学领域的最新进展推动了小型化传感设备的发展,这些设备可用于生物环境中,以获取有关生命系统中生理、代谢和疾病状态的基础且实用的生物化学相关信息。电化学传感器和生物传感器已展现出对生物相关分子进行快速、实时测量的潜力。本章概述了用于生命系统生物研究的小型化传感器开发的最新进展,重点是神经递质和氧化应激标志物的检测。描述了电化学(生物)传感器的设计,包括其检测机制和在生物系统中的功能,以及它们的优点和局限性。还讨论了这些传感器在活细胞、胚胎发育和啮齿动物模型研究中的应用。