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Synthetic fluorescent sensors for studying the cell biology of metals

机译:用于研究金属细胞生物学的合成荧光传感器

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摘要

Metals are essential for sustaining all forms of life, but alterations in their cellular homeostasis are connected to severe human disorders, including cancer, diabetes and neurodegenerative diseases. Fluorescent small molecules that respond to metal ions in the cell with appropriate selectivity and sensitivity offer the ability to probe physiological and pathological consequences of the cell biology of metals with spatial and temporal fidelity. Molecular imaging of normal and abnormal cellular metal ion pools using these new chemical tools provides a host of emerging opportunities for visualizing, in real time, aspects of metal accumulation, trafficking, and function or toxicity in living systems. This review presents a brief survey of available synthetic small-molecule sensor types for fluorescence detection of cellular metals.
机译:金属对于维持所有形式的生命至关重要,但金属细胞稳态的改变与人类的严重疾病有关,包括癌症,糖尿病和神经退行性疾病。以适当的选择性和敏感性对细胞中的金属离子作出反应的荧光小分子具有以空间和时间保真度探测金属细胞生物学的生理和病理后果的能力。使用这些新的化学工具对正常和异常细胞金属离子池进行分子成像,可提供大量新兴机会,以实时可视化金属在生物系统中的积累,运输,功能或毒性方面。这篇评论提出了对用于细胞金属荧光检测的可用合成小分子传感器类型的简要调查。

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