Superparamagnetic nanoparticles as a contrast agent for magnetic resonance imaging (MRI) of magnetic susceptibility (T2*)
The invention relates to the use of biocompatible superparamagnetic nanoparticles comprising an inorganic core and a coating including an electrically charged polymer, and having low tissue and vascular adhesion, for use as contrast agents in magnetic resonance imaging (MRI). The aforementioned nanoparticles have novel pharmacokinetic and relaxability T2* properties, with high potential for use in in vivo tissue imaging and tumour perfusion strategies based on parameter T2*.
1. A process for obtaining a T2*-weighed image a tumor in vivo in an animal or human comprising the operations of:
(a) intravenously administering of a contrast agent to an animal or a human, the contrast agent comprising a superparamagnetic nanoparticle having a single core less than 15 nm in diameter and a surface net negative electrical charge, and comprising: 1) an inorganic core and 2) a water-soluble polymer coating, which does not accumulate in the liver or spleen, having serum relaxivity values r2* greater than 90 s −1 mM −1 , characterized in that:
i) the inorganic core is composed of magnetite —Fe 3 O 4 —; and
ii) the water-soluble polymer coating is polyacrylic acid that is directly and covalently bound to the core by the use of carbodiimide; and
(b) performing perfusion imaging by T2*-weighted magnetic resonance imaging (MRI) between 0 and 6 hours after operation (a).