4.7 Article

Interfacially synthesized Fe-soc-MOF nanoparticles combined with ICG for photothermal/photodynamic therapy

Journal

DALTON TRANSACTIONS
Volume 47, Issue 45, Pages 16329-16336

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8dt02941e

Keywords

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Funding

  1. National Natural Science Foundation of China [NSFC 21471145, 51720105015, 51332008, 51772124]
  2. science and technology development plan of Jilin province [20170414003GH, 20170101179JC]
  3. Hundred Talents Program of Chinese Academy of Science
  4. National Basic Research Program of China [2014CB643803]
  5. Overseas, Hong Kong & Macao Scholars Collaborated Researching Fund [51628201, 21728101]
  6. CAS-Croucher Funding Scheme for Joint Laboratories [CAS18204]
  7. Key Research Program Of Frontier Sciences of CAS [YZDY-SSWJSC018]

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Recently, fabrication of nanoscale MOFs (NMOFs) has attracted great attention for biomedical applications. NMOFs not only maintain the structural diversity and physicochemical properties of bulk MOFs, but also possess suitable dimensions, making them potential nanocarriers for imaging agents and drug molecules. In this work, highly monodispersed Fe-soc-MOF nanoparticles (about 100 nm) were fabricated through the liquid-solid-solution (LSS) method. Indocyanine green (ICG) was conjugated to the surface-modified Fe-soc-MOF to construct a multifunctional theranostic platform. The Fe-soc-MOF@PEG-NH2-ICG nanoparticles (FPINs) were tested for photothermal therapy (PTT)/photodynamic therapy (PDT) both in vitro and in vivo. Due to their low toxicity, good biocompatibility and excellent photothermal/photodynamic effect, the as-synthesized FPINs could be used to inhibit and kill cancer cells efficiently under the 808 nm laser irradiation.

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