4.7 Article

Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor, super-enhanced SERS and photothermal resonances

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SCIENTIFIC REPORTS
卷 4, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep04752

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资金

  1. Arkansas Science and Technology Authority (ASTA) grant [08-CAT-03]
  2. US Army TATRC program
  3. National Institutes of Health [RO1CA131164, RO1EB009230, R01DK078908, P20RR016460, P20GM103429]
  4. National Science Foundation [DBI-0852737]
  5. Department of Defense [W81XWH-11-1-0123]
  6. Arkansas Breast Cancer Research Program Grant [G1-40728-01]
  7. Arkansas Bioscience Institute
  8. Translational Research Institute at the University of Arkansas for Medical Sciences

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Nanotechnology has been extensively explored for cancer diagnostics. However, the specificity of current methods to identify simultaneously several cancer biomarkers is limited due to color overlapping of bio-conjugated nanoparticles. Here, we present a technique to increase both the molecular and spectral specificity of cancer diagnosis by using tunable silver-gold nanorods with narrow surface-enhanced Raman scattering (SERS) and high photothermal contrast. The silver-gold nanorods were functionalized with four Raman-active molecules and four antibodies specific to breast cancer markers and with leukocyte-specific CD45 marker. More than two orders of magnitude of SERS signal enhancement was observed from these hybrid nanosystems compared to conventional gold nanorods. Using an antibody rainbow cocktail, we demonstrated highly specific detection of single breast cancer cells in unprocessed human blood. By integrating multiplex targeting, multicolor coding, and multimodal detection, our approach has the potential to improve multispectral imaging of individual tumor cells in complex biological environments.

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