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Journal of the American Chemical Society. 2008 Nov 19;130(46):15573-80. doi: 10.1021/ja805311x Q115.62025

Simple and generalized synthesis of oxide-metal heterostructured nanoparticles and their applications in multimodal biomedical probes

简单而通用地合成氧化物-金属异质结构纳米颗粒及其在多模式生物医学探针中的应用 翻译改进

Sang-Hyun Choi  1, Hyon Bin Na, Yong Il Park, Kwangjin An, Soon Gu Kwon, Youngjin Jang, Mi-Hyun Park, Jaewon Moon, Jae Sung Son, In Chan Song, Woo Kyung Moon, Taeghwan Hyeon

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作者单位

  • 1 National Creative Research Initiative Center for Oxide Nanocrystalline Materials and School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, Korea.
  • DOI: 10.1021/ja805311x PMID: 18950167

    摘要 Ai翻译

    Heterostructured nanoparticles composed of metals and Fe3O4 or MnO were synthesized by thermal decomposition of mixtures of metal-oleate complexes (for the oxide component) and metal-oleylamine complexes (for the metal component). The products included flowerlike-shaped nanoparticles of Pt-Fe3O4 and Ni-Fe3O4 and snowmanlike-shaped nanoparticles of Ag-MnO and Au-MnO. Powder X-ray diffraction patterns showed that these nanoparticles were composed of face-centered cubic (fcc)-structured Fe3O4 or MnO and fcc-structured metals. The relaxivity values of the Au-MnO and Au-Fe3O4 nanoparticles were similar to those of the MnO and Fe3O4 nanoparticles, respectively. Au-Fe3O4 heterostructured nanoparticles conjugated with two kinds of 12-base oligonucleotide sequences were able to sense a complementary 24-mer sequence, causing nanoparticle aggregation. This hybridization-mediated aggregation was detected by the overall size increase indicated by dynamic light scattering data, the red shift of the surface plasmon band of the Au component, and the enhancement of the signal intensity of the Fe3O4 component in T2-weighted magnetic resonance imaging.

    Keywords:multimodal biomedical probes

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    期刊名:Journal of the american chemical society

    缩写:J AM CHEM SOC

    ISSN:0002-7863

    e-ISSN:1520-5126

    IF/分区:15.6/Q1

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    Simple and generalized synthesis of oxide-metal heterostructured nanoparticles and their applications in multimodal biomedical probes