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红外发射量子点:DNA 缀合和 DNA 折纸导向的自组装。

Infrared emitting quantum dots: DNA conjugation and DNA origami directed self-assembly.

机构信息

Department of Chemistry and Biochemistry, Center for Single Molecule Biophysics, Biodesign Institute at Arizona State University, 1001 South McAllister Avenue, Tempe, Arizona 85287-5601, USA.

出版信息

Nanoscale. 2014 May 7;6(9):4486-90. doi: 10.1039/c3nr06578b.

Abstract

QDs that emit in the infrared (IR) range are of special interest at the moment because of their potential as tissue imaging reagents. Due to autofluorescence from tissues, QDs that emit in the visible range fail to produce good signal to noise ratios. Here we report the production of Cd(x)Pb(1-x)Te tertiary-alloyed QDs that emit in the 1100-1300 nm wavelength range, capped with the hydrophilic ligands mercaptopropionic acid (MPA) or glutathione (GSH), together with DNA, as specific surface tags. We observed an interesting dependence of the QD emission peaks on the species of capping ligand used. ICP-MS analysis confirmed that changing the identity of the surface ligand in the reaction mixture shifted the elemental composition of the particles and resulted in different Cd/Pb ratios. Further, DNA directed assembly of the particles onto DNA nanostructures ensures that the particle remains stable in high salt conditions, which is crucial to biological applications.

摘要

目前,发射红外(IR)范围的量子点因其作为组织成像试剂的潜力而受到特别关注。由于组织的自发荧光,发射可见光范围的量子点无法产生良好的信噪比。在这里,我们报告了发射波长在 1100-1300nm 范围内的 Cd(x)Pb(1-x)Te 三元合金量子点的制备,该量子点采用亲水配体巯基丙酸(MPA)或谷胱甘肽(GSH)作为表面标记,并与 DNA 一起使用。我们观察到量子点发射峰与所使用的封端配体的种类之间存在有趣的依赖性。ICP-MS 分析证实,改变反应混合物中表面配体的种类会改变颗粒的元素组成,并导致不同的 Cd/Pb 比。此外,DNA 引导颗粒在 DNA 纳米结构上的组装确保了颗粒在高盐条件下保持稳定,这对生物应用至关重要。

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