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Design and development of genetically encoded fluorescent sensors to monitor intracellular chemical and physical parameters

机译:用于监测细胞内化学和物理参数的遗传编码荧光传感器的设计和开发

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摘要

Over the past decades many researchers have made major contributions towards the development of genetically encoded (GE) fluorescent sensors derived from fluorescent proteins. GE sensors are now used to study biological phenomena by facilitating the measurement of biochemical behaviors at various scales, ranging from single molecules to single cells or even whole animals. Here, we review the historical development of GE fluorescent sensors and report on their current status. We specifically focus on the development strategies of the GE sensors used for measuring pH, ion concentrations (e.g., chloride and calcium), redox indicators, membrane potential, temperature, pressure, and molecular crowding. We demonstrate that these fluroescent protein-based sensors have a shared history of concepts and development strategies, and we highlight the most original concepts used to date. We believe that the understanding and application of these various concepts will pave the road for the development of future GE sensors and lead to new breakthroughs in bioimaging.
机译:在过去的几十年中,许多研究人员为开发源自荧光蛋白的遗传编码(GE)荧光传感器做出了重要贡献。 GE传感器现在用于通过促进从单个分子到单个细胞甚至整个动物的各种规模的生化行为的测量来研究生物现象。在这里,我们回顾了GE荧光传感器的历史发展并报告了它们的当前状态。我们特别专注于用于测量pH,离子浓度(例如氯和钙),氧化还原指示剂,膜电位,温度,压力和分子拥挤的GE传感器的开发策略。我们证明了这些基于荧光蛋白的传感器在概念和开发策略上有着共同的历史,并且我们重点介绍了迄今为止使用的最原始的概念。我们相信,对这些不同概念的理解和应用将为未来GE传感器的发展铺平道路,并在生物成像领域带来新的突破。

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