论文标题

石墨烯纳米纤维在Zeptoliter Precision处启用了液体输送

Graphene nanopipette enabled liquid delivery at zeptoliter precision

论文作者

Qiu, Shi, Chen, Yu, Gervinskas, Gediminas, Marceau, Ross K. W., Zheng, Changxi, Sha, Gang, Fu, Jing

论文摘要

准确提取液体是迈向低量液体递送和纳米饰面的第一步,在生物医学研究中起着重要作用。在这项研究中,提出了通过用石墨烯封装在预制金属尖端上的二物石墨烯纳米夹(GNP)。通过调整封装速度和石墨烯封装弹的数量,封装液体的体积在Zeptoliter精度下高度可控。以蛋白质(铁蛋白)溶液为例,已通过有限元分析和受控实验证实了GNP允许在Zeptoliter-Scale中递送铁蛋白溶液。此外,GNP被证明是一种新型的尖端液体细胞,适用于多种纳米饰面技术。特别是,由于超出尖端的形状,同位素(13C)标签的葡萄糖溶液封装在GNP中的葡萄糖溶液已在激光脉冲模式下以原子探针断层扫描(APT)为特征。质谱和重建的三维化学图的分析揭示了单个葡萄糖分子的定量分布和组成。预计将引入GNP,以在Zeptoliter的范围内将液体传递给修饰者,并带来新的能力,以表征其近乎本地的生物标本。

Accurate extraction of liquid is the first step towards low-volume liquid delivery and nanocharacterization, which plays a significant role in biomedical research. In this study, a tip-shaped graphene nanopipette (GNP) is proposed by encapsulating the biomolecule solution on the prefabricated metal tip with graphene. The volume of the encapsulated liquid is highly controllable at zeptoliter precision by tuning the encapsulating speed and the number of graphene encapsulation rounds. Using protein (ferritin) solution as an example, it has been confirmed by finite element analysis and the controlled experiments that the GNP allows the delivery of ferritin solution at the zeptoliter-scale. Furthermore, GNP is demonstrated as a new type of tip-shaped liquid cell, which is suitable for multiple nanocharacterization techniques. In particular, due to the ultra-sharp tip shape, isotope (13C)-labelled glucose solution encapsulated in GNP has been characterized by atom probe tomography (APT) in the laser-pulsed mode. Analysis of the mass spectrum and the reconstructed three-dimensional chemical maps reveals the quantitative distribution and the compositions of individual glucose molecules. The GNP is expected to be introduced to deliver liquid in the range of zeptoliters to attoliters, and brings a new capability for characterization of biological specimens in their near-native state.

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