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Abstracts Book - IMRC 2018

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• SB6-P042<br />

SYNTHESIS AND CHARACTERIZATION OF POLYMERIC<br />

BIODEGRADABLE FILM FOR TREATMENT OF OPEN WOUND<br />

Beatriz Martinez Perez 1,2 , Jorge Eduardo Munguía Huerta 2 , Juan Pablo Gutierrez López 2 , Alitzel<br />

Belem García Hernández 2 , Abraham Orozco Bladorni 2 , Guadalupe Ugalde Guerrero 2<br />

1 Facultad de Estudios Superiores Cuautitlán, UNAM., Laboratorio de Sistemas Farmacéuticos<br />

de Liberación Modificada, Mexico. 2 Universidad Politécnica del Valle de México, División de<br />

Ingeniería en Nanotecnología, Mexico.<br />

INTRODUCTION: The utility of polymer biomaterials has become a very<br />

interesting area for research, due to the large number of applications that are<br />

attributed to them. A clear example of the multiple applications are the polymer<br />

microfibers, which have been used in tissue engineering, biosensors,<br />

pharmaceutical, electronic devices, filters and drug delivery (1). Polymeric,<br />

uniaxial poly-ε-caprolactone, biocompatible and biodegradable polymer, and<br />

triclosan were synthesized. Polymeric microfiber has diversity applications for<br />

example to treatment of open wound. AIM: The objective of this research was<br />

to obtain a prolonged delivery drug system of poly-Ô‘-caprolactone<br />

loaded with triclosan as antiseptic film to treatment of open wound.<br />

METHODOLOGY: Electrospinning device: The system was ensemble with<br />

recycled pieces from televisions and printers. Synthesis of microfibers: 0.2g of<br />

poly-Ô‘-caprolactone was dissolved with 0.25 g of triclosan in 3 mL of<br />

acetone. The prepared solution was filled into a glass syringe and pushes it<br />

down with a constant flow and a voltage of 10 kV. Microfibers were collected<br />

from an aluminium sheet. Microbicidal activity was evaluated against<br />

Staphylococcus aureus and Candida Albicans.<br />

RESULTS: A polymeric film of triclosan was obtained. The mean diameter of<br />

microfiber was of 4 µm. Microbicidal and antifungal activity was more efficient<br />

than the triclosan-methanolic solution.<br />

CONCLUSIONS: The electroespinning technique allowed us to synthesize a<br />

polymeric film as an alternative for the treatment of open wounds.<br />

REFERENCES:<br />

1.- Agarwal, S., Wendorff, J. H., Greiner A. 2008. Use of electrospinning technique<br />

for biomedical applications. Polymer. 49, 26(8).<br />

Keywords: TRICLOSAN MICROFIBERS, OPEN WOUND FILM, BIOMEDICAL MATERIALS<br />

Presenting authors email: betymp21@yahoo.com.mx

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