4.8 Article

Sub-10 nm Fe3O4@Cu2-xS Core-Shell Nanoparticles for Dual-Modal Imaging and Photothermal Therapy

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 135, Issue 23, Pages 8571-8577

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja4013497

Keywords

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Funding

  1. National Natural Science Foundation of China [21171035, 50872020, 20971086]
  2. Chinese Ministry of Education [313015]
  3. Science and Technology Commission of Shanghai-based Innovation Action Plan Project [10JC1400100]
  4. PhD Programs Foundation of Ministry of Education of China [20110075110008]
  5. National University of Singapore [R-143-000-427]
  6. Singapore Ministry of Education [R-143-000-453]
  7. Singapore-MIT Alliance
  8. Agency for Science, Technology, and Research [R-143-000-366]
  9. King Abdullah University of Science and Technology

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Photothermal nanomaterials have recently attracted significant research interest due to their potential applications in biological imaging and therapeutics. However, the development of small-sized photothermal nanomaterials with high thermal stability remains a formidable challenge. Here, we report the rational design and synthesis of ultrasmall (<10 nm) Fe3O4@Cu2-xS core-shell nanoparticles, which offer both high photothermal stability and superparamagnetic properties. Specifically, these core-shell nanoparticles have proven effective as probes for T-2-weighted magnetic resonance imaging and infrared thermal imaging because of their strong absorption at the near-infrared region centered around 960 nm. Importantly, the photothermal effect of the nanoparticles can be precisely controlled by varying the Cu content in the core-shell structure. Furthermore, we demonstrate in vitro and in vivo photothermal ablation of cancer cells using these multifunctional nanoparticles. The results should provide improved understanding of synergistic effect resulting from the integration of magnetism with photothermal phenomenon, important for developing multimode nanoparticle probes for biomedical applications

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