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Abstracts Book - IMRC 2018

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elease. These nanocarriers represent a potential strategy for transport<br />

hydrophobic drugs that have limited access to the site of action. Future studies<br />

should be focused to evaluate the potential of these nanoparticles to reach to<br />

the brain and release therapeutic AD concentrations.<br />

Acknowledgment:<br />

To the National Laboratory of Characterization of Physcochemical Properties<br />

and Molecular Structure UG-UAA-CONACyT (LANCAPFEM) for its magnifique<br />

technical assistance, to Rectoria Campus León, to the Research and<br />

Postgraduate Support Direction (DAIP ) of the University of Guanajuato, to the<br />

Secretariat of Public Education and the Program for the Professional<br />

Development for the Superior Type (PRODEP) (UGTO-PTC-623), for the financial<br />

support given to the realization of this project.<br />

Keywords: Silica Nanoparticles, Drug delivery system, Anticonvulsant<br />

Presenting authors email: fj.romeroargote@ugto.mx

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