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Nanopipettes as Monitoring Probes for the Single Living Cell: State of the Art and Future Directions in Molecular Biology

机译:纳米移液器作为单个活细胞的监测探针:分子生物学的最新发展和未来方向

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摘要

Examining the behavior of a single cell within its natural environment is valuable for understanding both the biological processes that control the function of cells and how injury or disease lead to pathological change of their function. Single-cell analysis can reveal information regarding the causes of genetic changes, and it can contribute to studies on the molecular basis of cell transformation and proliferation. By contrast, whole tissue biopsies can only yield information on a statistical average of several processes occurring in a population of different cells. Electrowetting within a nanopipette provides a nanobiopsy platform for the extraction of cellular material from single living cells. Additionally, functionalized nanopipette sensing probes can differentiate analytes based on their size, shape or charge density, making the technology uniquely suited to sensing changes in single-cell dynamics. In this review, we highlight the potential of nanopipette technology as a non-destructive analytical tool to monitor single living cells, with particular attention to integration into applications in molecular biology.
机译:检查单个细胞在其自然环境中的行为,对于了解控制细胞功能的生物学过程以及损伤或疾病如何导致其功能的病理变化都非常有价值。单细胞分析可以揭示有关遗传变化原因的信息,并且可以为基于细胞转化和增殖的分子基础研究做出贡献。相比之下,整个组织活检仅能产生关于在不同细胞群中发生的几个过程的统计平均值的信息。纳米移液器内的电润湿为从单个活细胞中提取细胞材料提供了纳米活检平台。此外,功能化的纳米移液管传感探针可以根据分析物的大小,形状或电荷密度对其进行区分,从而使该技术特别适用于传感单细胞动力学的变化。在这篇综述中,我们强调了纳米移液器技术作为监测单个活细胞的非破坏性分析工具的潜力,并特别关注与分子生物学应用的整合。

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