Effect of different exposure times on physicochemical, mechanical and biological properties of PGS scaffolds treated with plasma of iodine-doped polypyrrole

Author:

Martín-Pat Gaspar Eduardo1,Rodriguez-Fuentes Nayeli1,Cervantes-Uc J Manuel1ORCID,Rosales-Ibáñez Raúl2,Carrillo-Escalante Hugo Joel1,Ku-Gonzalez Angela F1,Avila-Ortega Alejandro3,Hernandez-Sanchez Fernando1ORCID

Affiliation:

1. Centro de Investigación Científica de Yucatán, Mérida, Mexico

2. Consejo Nacional de Ciencias y Tecnología, Cd. de México, México

3. Facultad de Estudios Superiores Iztacala, Universidad Nacional Autonoma de Mexico, Ciudad de Mexico, Mexico

Abstract

Polyglycerol sebacate (PGS) scaffolds obtained using a leaching technique were modified with iodine-doped polypyrrole (PPy-I) in a plasma reactor in order to study the effect of exposure time on the cell viability of hDPSCs. SEM analysis showed the formation and growth of PPy-I particles as the exposure time was increased, while FTIR and XPS analysis revealed the presence of -NH- and N+ groups in the chemical composition of the surfaces, relating to the increase in the amount of PPY-I particles. The water contact angle measurements showed an increase in the scaffold’s hydrophilicity with greater exposure times which was also attributed to the rising of PPy-I particles. It was also observed that PPy-I promotes the rigidity of the treated PGS scaffolds. when in direct contact with treated PGS scaffolds, cell viability improved with respect to non-treated scaffolds, however only at shorter time exposures. Extracts of plasma-treated PGS scaffolds showed high cytotoxicity as the time exposure to plasma treatment was increased.

Funder

Basic Science Project CONACyT

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials

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