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首页> 外文期刊>Angewandte Chemie >Membrane-Penetrating Carbon Quantum Dots for Imaging Nucleic Acid Structures in Live Organisms
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Membrane-Penetrating Carbon Quantum Dots for Imaging Nucleic Acid Structures in Live Organisms

机译:膜穿透碳量子点,用于活生物中的成像核酸结构

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The dynamics of DNA and RNA structures in live cells are important for understanding cell behaviors, such as transcription activity, protein expression, cell apoptosis, and hereditary disease, but are challenging to monitor in live organisms in real time. The difficulty is largely due to the lack of photostable imaging probes that can distinguish between DNA and RNA, and more importantly, are capable of crossing multiple membrane barriers ranging from the cell/organelle to the tissue/organ level. We report the discovery of a cationic carbon quantum dot (cQD) probe that emits spectrally distinguishable fluorescence upon binding with double-stranded DNA and single-stranded RNA in live cells, thereby enabling real-time monitoring of DNA and RNA localization and motion. A surprising finding is that the probe can penetrate through various types of biological barriers invitro and invivo. Combined with standard and super-resolution microscopy, photostable cQDs allow time-lapse imaging of chromatin and nucleoli during cell division and Caenorhabditis elegans (C. elegans) growth.
机译:活细胞中DNA和RNA结构的动态对于了解细胞行为,例如转录活性,蛋白质表达,细胞凋亡和遗传性疾病,但在实时在活体内挑战。难度主要是由于可以区分DNA和RNA的光稳定性成像探针,更重要的是,能够穿过从细胞/细胞器的多个膜屏障范围到组织/器官水平。我们报告了发现阳离子碳量子点(CQD)探针的发现,其在活细胞中与双链DNA和单链RNA结合时发出光谱可区分的荧光,从而能够实时监测DNA和RNA定位和运动。令人惊讶的发现是探针可以通过各种类型的生物屏障invitro和Invivo来渗透。结合标准和超分辨率显微镜,光稳定CQDS允许在细胞分裂和核心杆菌(C.秀丽隐杆线虫)生长期间染色质和核仁的染色质和核仁的延时成像。

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