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    • 10. 发明申请
    • NANOARRAYS OF SINGLE VIRUS PARTICLES, METHODS AND INSTRUMENTS FOR THE FABRICATION AND USE THEREOF
    • 纳米阵列病毒粒子,方法和仪器的制造和使用
    • WO2008020851A2
    • 2008-02-21
    • PCT/US2006/032316
    • 2006-08-18
    • NORTHWESTERN UNIVERSITYMIRKIN, Chad, A.VEGA, Rafael, A.MASPOCH, DanielSALAITA, Khalid
    • MIRKIN, Chad, A.VEGA, Rafael, A.MASPOCH, DanielSALAITA, Khalid
    • G01N33/50
    • A61K31/70B82Y5/00B82Y30/00C12N7/00C12N2770/00011G01N33/56983Y10S977/802
    • A novel coordination chemistry or metal ion binding approach to controlling the site- isolation and orientation of virus particles, such as TMV, on a nanoarray template generated by lithography including Dip Pen Nanolithography. By using the surface chemistry that is inherent in many viruses, metal-ion based or inorganic coordination chemistry was used to immobilize individual virus particles without the need for their genetic modification. Single particle control will enable a wide variety of studies involving viruses that are not possible with microarrays because of the size mismatch between the architecture of the virus and the features that make up such arrays. These include: single particle, single cell infectivity studies, the exploration of such structures as templates in materials synthesis and molecular electronics, and studies aimed at understanding how surface presentation can influence their bioactivity. This is a pioneering example of such control at the single-particle level, and therefore, commercial use of nanoarrays in biological systems.
    • 一种新颖的配位化学或金属离子结合方法,用于控制纳米阵列模板上的病毒颗粒(例如TMV)的位点分离和取向,所述纳米阵列模板通过包括浸笔纳米光刻术的光刻产生。 通过使用许多病毒中固有的表面化学,金属离子基或无机配位化学被用于固定各个病毒颗粒而不需要它们的基因修饰。 由于病毒架构与组成这些阵列的功能之间的尺寸不匹配,单粒子控制将使得涉及病毒的各种研究成为微阵列不可能实现的。 这些包括:单粒子,单细胞传染性研究,材料合成和分子电子学模板等结构的探索,以及旨在了解表面表达如何影响其生物活性的研究。 这是单粒子水平上这种控制的开创性例子,因此纳米阵列在生物系统中的商业应用。