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Small molecule-based ratiometric fluorescence probes for cations anions and biomolecules

机译:基于小分子的比例荧光探针用于阳离子阴离子和生物分子

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摘要

Quantitative determination of specific analytes is essential for a variety of applications ranging from life sciences to environmental monitoring. Optical sensing allows non-invasive measurements within biological milieus, parallel monitoring of multiple samples, and less invasive imaging. Among the optical sensing methods currently being explored, ratiometric fluorescence sensing has received particular attention as a technique with the potential to provide precise and quantitative analyses. Among its advantages are high sensitivity and inherent reliability, which reflect the self-calibration provided by monitoring two (or more) emissions. A wide variety of ratiometric sensing probes using small fluorescent molecules have been developed for sensing, imaging, and biomedical applications. In this research highlight, we provide an overview of the design principles underlying small fluorescent probes that have been applied to the ratiometric detection of various analytes, including cations, anions, and biomolecules in solution and in biological samples. This highlight is designed to be illustrative, not comprehensive.
机译:从生命科学到环境监测的各种应用中,特定分析物的定量测定至关重要。光学感测允许在生物环境内进行非侵入性测量,并行监视多个样本以及侵入性较小的成像。在目前正在探索的光学传感方法中,比例荧光传感作为一种有潜力提供精确和定量分析的技术而受到了特别关注。它的优势包括高灵敏度和固有可靠性,它们反映了通过监视两个(或多个)排放物而提供的自校准。已经开发出了多种使用小荧光分子的比例式传感探头,用于传感,成像和生物医学应用。在本研究重点中,我们概述了小型荧光探针的设计原理,这些探针已用于按比例检测溶液和生物样品中的各种分析物,包括阳离子,阴离子和生物分子。此重点仅是说明性的,而不是全面的。

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