He Jiayi, Spanolios Eleni, Froehlich Clarice E, Wouters Cassandra L, Haynes Christy L
ACS Sens. 2023 Apr 28;8(4):1391-1403. doi: 10.1021/acssensors.3c00082. Epub 2023 Mar 20.
Neurotransmitters act as chemical messengers, determining human physiological and psychological function, and abnormal levels of neurotransmitters are related to conditions such as Parkinson's and Alzheimer's disease. Biologically and clinically relevant concentrations of neurotransmitters are usually very low (nM), so electrochemical and electronic sensors for neurotransmitter detection play an important role in achieving sensitive and selective detection. Additionally, these sensors have the distinct advantage to potentially be wireless, miniaturized, and multichannel, providing remarkable opportunities for implantable, long-term sensing capabilities unachievable by spectroscopic or chromatographic detection methods. In this article, we will focus on advances in the development and characterization of electrochemical and electronic sensors for neurotransmitters during the last five years, identifying how the field is progressing as well as critical knowledge gaps for sensor researchers.
神经递质充当化学信使,决定着人类的生理和心理功能,神经递质水平异常与帕金森病和阿尔茨海默病等病症有关。具有生物学和临床相关性的神经递质浓度通常非常低(纳摩尔级),因此用于神经递质检测的电化学和电子传感器在实现灵敏且选择性的检测方面发挥着重要作用。此外,这些传感器具有潜在的无线、小型化和多通道的显著优势,为植入式长期传感能力提供了非凡机遇,而这是光谱或色谱检测方法无法实现的。在本文中,我们将重点关注过去五年中用于神经递质的电化学和电子传感器的开发与特性研究进展,确定该领域的发展情况以及传感器研究人员面临的关键知识空白。