Sensor-based measurements of the role and interactions of free radicals in cellular systems

Calum J McNeil, Philip Manning
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引用次数: 28

Abstract

Direct real-time electrochemical measurements have offered new insight into the importance of free radical interplay in a number of cell culture and in vivo models of neurodegenerative processes. This review highlights investigations carried out in this laboratory of real-time superoxide and nitric oxide free radical generation, and presents evidence of complex inter-relationships between these species. These include: a novel function for astrocytic nitric oxide synthase in controlling neuronal nitric oxide availability; and the demonstration that extracellular superoxide flux can lead to the generation of NO by glial cells. The possible consequences of these interactions are discussed.

基于传感器的自由基在细胞系统中的作用和相互作用的测量
直接的实时电化学测量为自由基相互作用在许多细胞培养和神经退行性过程的体内模型中的重要性提供了新的见解。本文综述了在该实验室进行的实时超氧化物和一氧化氮自由基生成的研究,并提供了这些物种之间复杂相互关系的证据。这些包括:星形细胞一氧化氮合酶在控制神经元一氧化氮可用性方面的新功能;以及细胞外超氧化物通量可导致胶质细胞生成NO的证明。讨论了这些相互作用可能产生的后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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