Solid-state synthesis of monocrystalline iron oxide nanoparticle based ferrofluid suitable for magnetic resonance imaging contrast application

Jun Lu, Shihe Yang, Ka Ming Ng, Chia‐Hao Su, Chen‐Sheng Yeh, Ya-Na Wu, Dar-Bin Shieh

Nanotechnology · 2006 · 78 citations · 46 references

Abstract

A new γ-Fe<sub>2</sub>O<sub>3</sub> MION ferrofluid has been developed with a salt-assisted solid-state reaction. Characterizations show that the ferrofluid is composed of maghemite nanoparticles with a mean diameter of 2.7nm. Though the nanoparticles are ultrafine, they are well crystallized, with a saturation magnetization value of 34.7emug<sup>-1</sup>, making them suitable for MRI applications. In spite of the absence of any surfactant, the ferrofluid can be stable for more than 6 months. An in vitro cytotoxicity test revealed good biocompatibility of the maghemite nanoparticles, suggesting that they may be further explored for biomedical applications. NMR measurements revealed significantly reduced water proton relaxation times T<sub>1</sub> and T <sub>2</sub>. The MR images of the nanoparticles in aqueous dispersion were investigated using a 3T clinical MR imager. These preliminary experiments have demonstrated the potential of the as-synthesized ultrafine, cap-free maghemite MIONs in functional molecular imaging for biomedical research and clinical diagnosis.

References

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