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Artículo

Metastable FeMg particles for controlling degradation rate, mechanical properties, and biocompatibility of Poly(l-lactic) acid (PLLA) for orthopedic applications

Estrada, Rafael Guillermo; Multigner, Marta; Fagali, Natalia SoledadIcon ; Lozano, Rosa María; Muñoz, Marta; Cifuentes, Sandra Carolina; Torres, Belén; Lieblich, Marcela
Fecha de publicación: 12/2023
Editorial: Elsevier
Revista: Heliyon
ISSN: 2405-8440
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Compuestos; Bioproductos, Biomateriales, Bioplásticos, Biocombustibles, Bioderivados, etc.; Biomateriales

Resumen

Poly(l-lactic) acid (PLLA) is commonly used in bioabsorbable medical implants, but it suffers from slow degradation rate and rapid decline in mechanical properties for orthopedic applications. To address this drawback, recent research has explored the use of Mg as a filler for PLLA, resulting in composites with improved degradation rate and cytocompatibility compared to neat PLLA. In this study, FeMg powder particles were proposed as fillers for PLLA to investigate the potential of PLLA/FeMg composites for bioabsorbable implants. Cylinder specimens of PLLA, PLLA/Fe, PLLA/Mg and PLLA/FeMg were prepared using solvent casting followed by thermo-molding. The microstructure, thermal behavior, in vitro degradation behavior in simulated body fluid, mechanical properties and cytocompatibility of these composites were examined. The results indicate that the presence of FeMg particles prevents the deterioration of the composite mechanical properties, at least up to 14 days. Once a certain amount of degradation of the composite is reached, the degradation is faster than that of PLLA. Direct cytotoxicity assays revealed that pre-osteoblast MC3T3-E1 cells successfully adhered to and proliferated on the PLLA/FeMg surface. The inclusion of a low percentage of Mg into the Fe lattice not only accelerated the degradation rate of Fe but also improved its cytocompatibility. The enhanced degradation rate, mechanical properties, and osteoconductive properties of this composite make it a promising option for temporary orthopedic biomedical devices.
Palabras clave: DEGRADABLE COMPOSITE BIOMATERIAL , FEMG , MECHANICAL PROPERTIES¸ CYTOCOMPATIBILITY , PLLA , TEMPORARY ORTHOPEDIC DEVICES
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Atribución-NoComercial-SinDerivadas 2.5 Argentina (CC BY-NC-ND 2.5 AR)
Identificadores
URI: http://hdl.handle.net/11336/227084
URL: https://www.sciencedirect.com/science/article/pii/S2405844023097608
DOI: https://doi.org/10.1016/j.heliyon.2023.e22552
Colecciones
Articulos(INIFTA)
Articulos de INST.DE INV.FISICOQUIMICAS TEORICAS Y APLIC.
Citación
Estrada, Rafael Guillermo; Multigner, Marta; Fagali, Natalia Soledad; Lozano, Rosa María; Muñoz, Marta; et al.; Metastable FeMg particles for controlling degradation rate, mechanical properties, and biocompatibility of Poly(l-lactic) acid (PLLA) for orthopedic applications; Elsevier; Heliyon; 9; 12; 12-2023; 1-14
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