Chen Yang, Chi Yumei, Wen Hongmei, Lu Zuhong
State Key Laboratory of Bioelectronics, Department of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, P R China.
Anal Chem. 2007 Feb 1;79(3):960-5. doi: 10.1021/ac061477h.
A highly luminescent terbium nanoparticle as the biolabel based on the sensitization of a dye molecule was prepared. The luminescent complexes included in the particles were composed of a quinolone-based dye molecule as the light-energy transfer donor and a polyaminocarboxylate-based chelator with excellent water-solubility and a high binding constant for lanthanides. The structure of two functional entities in the single molecule made the complex highly luminescent in aqueous solution. Silica nanoparticles containing terbium complexes were prepared by the reverse microemulsion method. Such a terbium nanoparticle is as bright as about 340 free terbium complexes, and it has a 1.5-ms fluorescence lifetime that enables it to be used in the time-resolved fluorescence assays. The conjugate of the nanoparticle with oligonucleotide was prepared and used to carry out a DNA sandwich hybridization assay based on magnetic microbeads as solid-phase carrier. The experimental results showed that the detection sensitivity with the nanoparticles is more than 100-fold as high as that with dye Fluorescein isothiocyanate (FITC) molecules.
制备了一种基于染料分子敏化作用的高发光铽纳米粒子作为生物标记物。粒子中包含的发光配合物由喹诺酮类染料分子作为光能转移供体和具有优异水溶性及对镧系元素高结合常数的聚氨基羧酸盐类螯合剂组成。单分子中两个功能实体的结构使该配合物在水溶液中具有高发光性。通过反相微乳液法制备了含铽配合物的二氧化硅纳米粒子。这种铽纳米粒子的亮度约为340个游离铽配合物的亮度,其荧光寿命为1.5毫秒,使其能够用于时间分辨荧光分析。制备了纳米粒子与寡核苷酸的缀合物,并用于基于磁性微珠作为固相载体进行DNA夹心杂交分析。实验结果表明,纳米粒子的检测灵敏度比异硫氰酸荧光素(FITC)分子高100多倍。