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利用金纳米颗粒-DNA人工分子对生物大分子动力学的研究。

Studies of the dynamics of biological macromolecules using Au nanoparticle-DNA artificial molecules.

作者信息

Chen Qian, Smith Jessica M, Rasool Haider I, Zettl Alex, Alivisatos A Paul

机构信息

Department of Chemistry, University of California, Berkeley, CA 94720, USA.

出版信息

Faraday Discuss. 2014;175:203-14. doi: 10.1039/c4fd00149d.

Abstract

The recent development of graphene liquid cells, a nanoscale version of liquid bubble wrap, is a breakthrough for in situ liquid phase electron microscopy (EM). Using ultrathin graphene sheets as the liquid sample container, graphene liquid cells have allowed the unprecedented atomic resolution observation of solution phase growth and dynamics of nanocrystals. Here we explore the potential of this technique to probe nanoscale structure and dynamics of biomolecules in situ, using artificial Au nanoparticle-DNA artificial molecules as model systems. The interactions of electrons with both the artificial molecules and the liquid environment have been demonstrated and discussed, revealing both the opportunities and challenges of using graphene liquid cell EM as a new method of bio-imaging.

摘要

石墨烯液体池是纳米级的液体气泡包装材料,其近期的发展是原位液相电子显微镜(EM)的一项突破。石墨烯液体池使用超薄石墨烯片作为液体样品容器,使得对纳米晶体溶液相生长和动力学进行前所未有的原子分辨率观察成为可能。在这里,我们以人工金纳米颗粒 - DNA 人工分子为模型系统,探索该技术原位探测生物分子纳米级结构和动力学的潜力。已经证明并讨论了电子与人工分子以及液体环境的相互作用,揭示了使用石墨烯液体池电子显微镜作为一种生物成像新方法的机遇和挑战。

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