4.8 Article

pH-Responsive Iron Manganese Silicate Nanoparticles as T1-T2* Dual-Modal Imaging Probes for Tumor Diagnosis

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 9, 页码 5373-5383

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b00727

关键词

iron manganese silicates; T-1-T-2* weighted image; fluorescence image; pH-responsive; EPR

资金

  1. National Natural Science Foundation of China [21271163, U1232211, 31100992]
  2. Program for Changjiang Scholars [IRT13038]
  3. MOE Innovative Research Team [IRT13038]
  4. Ph.D. Program of the Foundation of Ministry of Education of China [20113402120041]

向作者/读者索取更多资源

Magnetic resonance imaging (MRI) probes can be concentrated in tumors through grafting targeting agents. However, the clinical application of such targeted MRI probes is largely limited because specific agents are only used to target specific characteristics of cancer cells. The development of the MRI probes that can be used regardless of tumor types or their developmental stages is highly appreciated. The acidic tumor microenvironments and acidic organelles (endosomes/lysosomes) in cancer cells are universal phenomena of solid tumors, and nanoparticles can also accumulate in tumor tissues by enhanced permeability and retention (EPR) effect. Here, we reported the synthesis of pH-responsive T-1-T-2* dual-modal contrast agents based on iron manganese silicate (FeMn(SiO4)) hollow nanospheres, which can release Mn2+ ions in acidic environments, exhibiting excellent ability as agents for magnetic resonance and red fluorescence imaging. MRI for mouse models revealed that the nanoprobes could accumulate in tumors via EPR effect and then distinguish tumors from normal tissues with the synergistic effect of T-1 and T-2* signal only 10 min after intravenous injection. Fluorescence imaging demonstrated that the nanoprobes could be endocytosed into cancer cells and located at their lower pH compartments. Moreover, the hollow nanospheres showed no obvious toxicity and inflammation to the major organs of mice, which made them attractive diagnostic agents for different types of cancers.

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