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Simultaneous Imaging of Ribonucleic Acid and Hydrogen Sulfide in Living Systems with Distinct Fluorescence Signals Using a Single Fluorescent Probe

机译:使用单个荧光探针同时对具有独特荧光信号的生物系统中的核糖核酸和硫化氢进行同时成像

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摘要

Ribonucleic acid (RNA) and hydrogen sulfide (H2S) are important genes and gaseous signal molecules in physiological environment. However, simultaneous investigation of distribution and interrelation of RNA and H2S in living systems is restricted by lack of functional molecular tools. To address this critical challenge, the development of >TP‐MIVC is described as the first paradigm of the probes that can concurrently report ribonucleic acid and hydrogen sulfide with distinct fluorescence signals in the cancer cells, zebrafish, and living animals. The advantageous features of the probe include high stability, low background fluorescence, high sensitivity, and two‐photon imaging property. Significantly, regardless of normal mice or tumor mice, tumor tissues exhibit stronger fluorescence intensity than other organs. More interestingly, it is found that >TP‐MIVC is capable of distinguishing normal mice and tumor mice by in vivo imaging. This study may open a new pathway for distinguishing malignant and benign tumor by fluorescence imaging of RNA.
机译:核糖核酸(RNA)和硫化氢(H2S)是生理环境中的重要基因和气体信号分子。然而,由于缺乏功能性分子工具,无法同时研究生物系统中RNA和H2S的分布和相互关系。为了应对这一严峻挑战,> TP-MIVC 的开发被描述为探针的第一个范例,该探针可以同时报告癌细胞,斑马鱼和活体中具有不同荧光信号的核糖核酸和硫化氢。动物。该探头的优势包括高稳定性,低背景荧光,高灵敏度和双光子成像特性。显着地,无论正常小鼠还是肿瘤小鼠,肿瘤组织均显示出比其他器官更强的荧光强度。更有趣的是,发现> TP-MIVC 能够通过体内成像区分正常小鼠和肿瘤小鼠。这项研究可能为通过RNA荧光成像区分恶性和良性肿瘤开辟一条新途径。

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