AI Article Synopsis

  • Iron oxide nanoparticles (IONPs) are popular in biomedical fields due to their compatibility with the body and magnetic features, but their circulation time can be improved with different coatings.
  • In this study, researchers created IONPs using a special method and coated them with polyethylene glycol of varying sizes, analyzing their shapes and structures with advanced microscopy techniques.
  • The experiments in mice showed that these functionalized IONPs were safe for use, with distribution and removal through organs like the liver, spleen, and lungs, while larger uncoated nanoparticles were found in the kidneys.

Article Abstract

Iron oxide nanoparticles (IONPs) have been extensively used in different biomedical applications due to their biocompatibility and magnetic properties. However, different functionalization approaches have been developed to improve their time-life in the systemic circulation. Here, we have synthesized IONPs using a modified Massart method and functionalized them in situ with polyethylene glycol with different molecular weights (20 K and 35 K). The resulting nanoparticles were characterized in terms of morphology, structure, and composition using transmission electron microscopy (TEM) and selected area electron diffraction (SAED). In vivo biodistribution was evaluated in Balb/c mice, the presence of IONP being evidenced through histopathological investigations. IONP morphological characterization showed a change in shape (from spherical to rhombic) and size with molecular weight, while structural characterization proved the obtaining of highly crystalline samples of spinel structured cubic face-centered magnetite. In vivo biodistribution in a mice model proved the biocompatibility of all of the IONP samples. All NPs were cleared through the liver, spleen, and lungs, while bare IONPs were also evidenced in kidneys.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9501806PMC
http://dx.doi.org/10.3390/pharmaceutics14091877DOI Listing

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