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Synthesis and characterization of self-assembled CdHgTe/gelatin nanospheres as stable near infrared fluorescent probes in vivo

机译:自组装CdHgTe /明胶纳米球的合成与表征作为体内稳定的近红外荧光探针

摘要

This work presented a kind of novel near infrared emitting CdHgTe/gelatin nanospheres which were synthesized with Cd(NO3)(2), Hg(NO3)(2). NaHTe and a thiol stabilizer in gelatin solution The self-assembled nanospheres were megranate-like and nearly 40 nm in diameter, with CdHgTe QDs uniformly embedded in gelatin matrix. They exhibited strong fluorescence ranging from 580 to 800 nm that could be tuned by molar ratios of Hg2+ and gelatin. The full widths at half-maximum of the emission spectra were in the range of 60-80 nm. Compared with bare CdHgTe QDs, the photostability of this compact complex nanostructure remarkably improved. Moreover, the fluorescence of CdHgTe/gelatin nanospheres was much more resistant to the interference from certain kinds of endogenous biomolecules such as HSA, transferrin and hemoglobin Further applications of living cells and mouse imaging were demonstrated with an in vivo near infrared fluorescence imaging system The Inherent advantages of high stability as well as high fluorescence intensity make the nanospheres particular interested NIR bioprobe candidates for in vivo imaging studies (C) 2010 Elsevier B.V. All rights reserved
机译:这项工作提出了一种新型的近红外发射CdHgTe /明胶纳米球,其与Cd(NO3)(2),Hg(NO3)(2)合成。明胶溶液中的NaHTe和硫醇稳定剂自组装的纳米球呈石榴石状,直径近40 nm,CdHgTe QD均匀地嵌入明胶基质中。它们显示出从580到800 nm的强荧光,可以通过Hg2 +和明胶的摩尔比进行调节。发射光谱的半峰全宽在60-80 nm的范围内。与裸露的CdHgTe量子点相比,这种紧凑的复杂纳米结构的光稳定性显着提高。此外,CdHgTe /明胶纳米球的荧光更能抵抗某些内源性生物分子(例如HSA,转铁蛋白和血红蛋白)的干扰,并通过体内近红外荧光成像系统证明了活细胞和小鼠成像的进一步应用。高稳定性以及高荧光强度的优势使纳米球成为体内成像研究中特别感兴趣的近红外生物探针候选者(C)2010 Elsevier BV版权所有

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