Microreactors are useful tools for optimizing and studying chemical reactions. [1][2][3][4][5][6][7][8][9][10][11] Compared to conventional reactors, microreactors improve chemical synthesis through advantages offered by their small length scales, such as reaction volumes, and enhanced heat and mass
Determination of Albumin Using CdS/SiO2 Core/shell Nanoparticles as Fluorescence Probes
โ Scribed by Changqing Zhu; Meigui Liu; Peng Wang; Ming Cao; Chun Cao
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 108 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0256-7660
No coin nor oath required. For personal study only.
โฆ Synopsis
Abstract
CdS quantum dots (QD) were capped with SiO~2~ via a microemulsion method for reducing the toxicity and imparting the biocompatibility of the CdS QD. The resulting CdS/SiO~2~ core/shell nanoparticles (NP) showed an improved waterโsolubility and stability even in pH 4.0 acidic medium. Their fluorescence could be effectively enhanced in the presence of bovine serum albumin (BSA), due to the passivation effect of BSA on the surface of the NP. Furthermore, the concentration dependence of the fluorescence intensity obeys the Langmuirโtype binding isotherm. Thus a novel fluorescence enhancement method for the determination of BSA has been developed using the lessโtoxic CdS/SiO~2~ core/shell NP as probes. Under optimal conditions, the linear range of calibration curve is 0.6โ30 ยตgยทmL^โ1^, and the detection limit is 0.18 ยตgยทmL^โ1^. Compared with the waterโsoluble CdS NP without SiO~2~ shell, the CdS/SiO~2~ core/shell NP exhibited slightly lower fluorescence response to BSA as well as other coexisting substances, such as heavy and transition metals, due to the inhibition of SiO~2~ shell. The proposed method was applied to the quantification of BSA in synthetic and serum samples with satisfactory results.
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