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1.
Acta Biomater ; 48: 390-400, 2017 01 15.
Artículo en Inglés | MEDLINE | ID: mdl-27826005

RESUMEN

Cyanoacrylate esters (CA) and their corresponding polymers (PolyCA) are used as general and medical adhesives, biodegradable carriers for controlled drug delivery, and as agents for fingerprint development in forensic science. Most reports of cyanoacrylate are on ethyl or 2-octyl cyanoacrylate ester with little attention to other esters. It is the objective of this study to determine the differences amongst cyanoacrylate esters regarding their synthesis, chemical characterization, hydrolytic degradation, and thermal and mechanical properties. Cyanoacrylate polymers of short and long alkyls or oxy-alkyls, cyclic, and aromatic esters have been synthesized and evaluated. All monomers form polymers when exposed to triethylamine vapours possessing molecular weights in the range of 15,000-150,000Da, where the alkyl esters form high MW polymers. A wide range of hydrolytic degradation rates has been found, as monitored by the release of formaldehyde over time. Alkoxy CAs show faster hydrolytic degradation compared to alkyl CAs. Regarding mechanical properties, CAs are classified into primarily viscous (G'>G″) and primarily elastic (G″>G'). Alkoxy CA polymers have a higher loss modulus (G') than storage modulus (G″). Octyl CA polymer possess a G'≈G″ (phase angle ∼45°) providing appropriate balance between mechanical strength and plasticity. Most alkyl CAs are compact and brittle. Alkoxy CAs show enhanced plasticity, but they lack mechanical strength. In general, the Tg for alkoxy CAs is less than alkyl CAs. Alkoxy CAs depolymerise rapidly at temperatures >200°C. Overall, ester sidechains of CA esters strongly affect the polymer property. STATEMENT OF SIGNIFICANCE: Polycyanoacrylates are an important class of biodegradable polymers mainly used as bioadhesives. The study describes comparative evaluation of different cyanoacrylate polymers with respect to their chemistry, degradation, safety, mechanical, and thermal properties. The study forms the basis for choosing appropriate combination of cyanoacrylate esters for various biomedical uses. Moreover, this study reveals properties of a few new polycyanoacrylates for the first time.


Asunto(s)
Cianoacrilatos/química , Supervivencia Celular , Cianoacrilatos/síntesis química , Cianoacrilatos/farmacología , Elasticidad , Formaldehído/química , Células HeLa , Humanos , Hidrólisis , Peso Molecular , Espectroscopía de Protones por Resonancia Magnética , Estrés Mecánico , Temperatura , Viscosidad
2.
Macromol Rapid Commun ; 37(3): 251-6, 2016 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-26572088

RESUMEN

PEG400 (polyethylene glycol, MW 400) biscyanoacrylate is synthesized and copolymerized with 2-octyl cyanoacrylate for potential use as bioadhesive. PEG400 biscyanoacrylate is synthesized from the esterification of anthracenyl cyanoacrylic acid where the anthracene unit serves as vinyl-protecting group. Copolymerization increases the plasticity, mechanical strength, and resilience of the resulted polymer as determined by dynamic mechanical analysis. Peeling test confirms its superior bioadhesive properties. Surface morphology is characterized by SEM imaging. The formulations are cytocompatible and safe. This cyanoacrylate composition may provide improved bioadhesive cyanoacrylates.


Asunto(s)
Reactivos de Enlaces Cruzados/química , Cianoacrilatos/química , Polietilenglicoles/química , Adhesivos Tisulares/farmacología , Muerte Celular/efectos de los fármacos , Línea Celular , Cianoacrilatos/síntesis química , Elasticidad , Humanos , Ensayo de Materiales , Microscopía Electrónica de Rastreo , Peso Molecular , Reología , Viscosidad
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