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RSS FeedsMaterials, Vol. 11, Pages 2572: Characterization of Iron Core-Gold Shell Nanoparticles for Anti-Cancer Treatments: Chemical and Structural Transformations During Storage and Use (Materials)

 
 

18 december 2018 08:02:14

 
Materials, Vol. 11, Pages 2572: Characterization of Iron Core-Gold Shell Nanoparticles for Anti-Cancer Treatments: Chemical and Structural Transformations During Storage and Use (Materials)
 


Finding a cancer-selective drug that avoids damaging healthy cells and organs is a holy grail in medical research. In our previous studies, gold-coated iron (Fe@Au) nanoparticles showed cancer selective anti-cancer properties in vitro and in vivo but were found to gradually lose that activity with storage or "ageing.` To determine the reasons for this diminished anti-cancer activity, we examined Fe@Au nanoparticles at different preparation and storage stages by means of transmission electron microscopy combined with and energy-dispersive X-ray spectroscopy, along with X-ray diffraction analysis and cell viability tests. We found that dried and reconstituted Fe@Au nanoparticles, or Fe@Au nanoparticles within cells, decompose into irregular fragments of ?-F2O3 and agglomerated gold clumps. These changes cause the loss of the particles` anti-cancer effects. However, we identified that the anti-cancer properties of Fe@Au nanoparticles can be well preserved under argon or, better still, liquid nitrogen storage for six months and at least one year, respectively.


 
74 viewsCategory: Chemistry, Physics
 
Materials, Vol. 11, Pages 2574: Fabrication of Silver Nanoparticles Using a Gas Phase Nanocluster Device and Preliminary Biological Uses (Materials)
Materials, Vol. 11, Pages 2573: Enhanced Thermoelectric Properties of Ca3-xAgxCo4O9 by the Sol-Gel Method with Spontaneous Combustion and Cold Isostatic Pressing (Materials)
 
 
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