4.8 Article

Oxygen Vacancies Enhanced CeO2:Gd Nanoparticles for Sensing a Tumor Vascular Microenvironment by Magnetic Resonance Imaging

Journal

ACS NANO
Volume 12, Issue 12, Pages 12629-12637

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.8b07387

Keywords

CeO2:Gd nanoparticles; oxygen vacancies; tumor microenvironment; microvascular; DWI/DCE-PWI

Funding

  1. China National Funds for Distinguished Young Scientists [51725202]
  2. National Natural Science Foundation of China [51872094, 51702211, 81771889]
  3. Shanghai Excellent Academic Leaders Program [16XD1404000]
  4. National Key R&D Program of China [2018YFA0107900]
  5. Key project of the Ministry of Science and Technology, China [YS2017ZY040123]

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The specific characteristics of the tumor vascular microenvironment such as microvascular permeability and water diffusion have been demonstrated to play essential roles in the evaluation of infiltration of tumors. However, at present, there are few contrast agents (CAs) for magnetic resonance imaging to enhance the sensitivity for acquiring this vital information. Herein, we develop Gd-doped (CeO2:Gd) nanoparticles as CAs to detect the tumor vascular microenvironment with high sensitivity. The lattice oxygen vacancies on the surface of CeO2:Gd nanoparticles could bind considerable water molecules to improve the r, value, achieving an excellent dynamic contrast-enhanced perfusion weighted imaging performance for the measurement of microvascular permeability. Diffusion limiting of water molecules by oxygen vacancies of CeO2:Gd nanoparticles further enhances the diffusion-weighted magnetic resonance imaging signal in vitro and in vivo. Excitingly, the strategy is not only essential for obtaining tumor vascular microenvironment information but also offers a way for further research in the design of magnetic resonance CAs.

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