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Inside single cells: quantitative analysis with advanced optics and nanomaterials.

机译:在单细胞内部:利用先进的光学技术和纳米材料进行定量分析。

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Single-cell explorations offer a unique window to inspect molecules and events relevant to mechanisms and heterogeneity constituting the central dogma of biology. A large number of nucleic acids, proteins, metabolites, and small molecules are involved in determining and fine-tuning the state and function of a single cell at a given time point. Advanced optical platforms and nanotools provide tremendous opportunities to probe intracellular components with single-molecule accuracy, as well as promising tools to adjust single-cell activity. To obtain quantitative information (e.g., molecular quantity, kinetics, and stoichiometry) within an intact cell, achieving the observation with comparable spatiotemporal resolution is a challenge. For single-cell studies, both the method of detection and the biocompatibility are critical factors as they determine the feasibility, especially when considering live-cell analysis. Although a considerable proportion of single-cell methodologies depend on specialized expertise and expensive instruments, it is our expectation that the information content and implication will outweigh the costs given the impact on life science enabled by single-cell analysis.
机译:单细胞探索提供了一个独特的窗口,可以检查与构成生物学中心教条的机制和异质性有关的分子和事件。在给定的时间点,大量核酸,蛋白质,代谢物和小分子参与确定和微调单个细胞的状态和功能。先进的光学平台和纳米工具为以单分子精度探测细胞内组分提供了巨大的机会,同时也为调节单细胞活性提供了有前途的工具。为了获得完整细胞内的定量信息(例如分子数量,动力学和化学计量),以相当的时空分辨率实现观察是一个挑战。对于单细胞研究,检测方法和生物相容性都是决定可行性的关键因素,尤其是考虑活细胞分析时。尽管相当多的单细胞方法学依赖于专业知识和昂贵的仪器,但我们期望,鉴于单细胞分析对生命科学的影响,信息内容和含义将超过成本。

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