Silica-shelled single quantum dot micelles as imaging probes with dual or multimodality

被引:101
作者
Bakalova, Rumiana
Zhelev, Zhivko
Aoki, Ichio
Ohba, Hideki
Imai, Yusuke
Kanno, Iwao
机构
[1] Natl Inst Adv Ind Sci & Technol, AIST Kyushu, On Site Sensing & Diag Res Lab, Tosu, Saga 8410052, Japan
[2] Meiji Univ Med, Dept Med Informat, Kyoto 6290392, Japan
[3] Natl Inst Radiol Sci, Mol Imaging Ctr, Dept Biophys, Chiba 2638555, Japan
关键词
SPHERES; NANOPARTICLES; FLUORESCENT; COLLOIDS; CDSE;
D O I
10.1021/ac060412b
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The present study describes a stabilization of single quantum dot (QD) micelles by a "hydrophobic" silica precursor and an extension of a silica layer to form a silica shell around the micelle using "amphiphilic" and "hydrophilic" silica precursors. The obtained product consists of similar to 92% single nanocrystals (CdSe, CdSe/ZnS, or CdSe/ZnSe/ZnS QDs) into the silica micelles, coated with a silica shell. The thickness of the silica shell varies, starting from 3-4 nm. Increasing the shell thickness increases the photoluminescence characteristics of QDs in an aqueous solution. The silica-shelled single CdSe/ZnS QD micelles possess a comparatively high quantum yield in an aqueous solution, a controlled small size, sharp photoluminescence spectra (fwhm similar to 30 nm), an absence of aggregation, and a high transparency. The surface of the nanoparticles is amino-functionalized and ready for conjugation. A comparatively good biocompatibility is demonstrated. The nanoparticles show ability for intracellular delivery and are noncytotoxic during long-term incubation with viable cells in the absence of light exposure, which makes them appropriate for cell tracing and drug delivery. The presence of the hydrophobic layer between the QD and silica-shell ensures an incorporation of other hydrophobic molecules with interesting properties (e.g., hydrophobic paramagnetic substances, hydrophobic photosensitizers, membrane stabilizers, lipid-soluble antioxidants or prooxidants, other hydrophobic organic dyes, etc.) in the close proximity of the nanocrystal. Thus, it is possible to combine the characteristics of hybrid materials with the priority of small size. The silica-shelled single QD micelles are considered as a basis for fabrication of novel hybrid nanomaterials for industrial and life science applications, for example, nanobioprobes with dual modality for simultaneous application in different imaging techniques (e.g., fluorescent imaging and functional magnetic resonance imaging).
引用
收藏
页码:5925 / 5932
页数:8
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