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1.
J Biomater Sci Polym Ed ; 30(15): 1415-1432, 2019 10.
Artículo en Inglés | MEDLINE | ID: mdl-31233380

RESUMEN

Polyurethanes (PU) foams with titanium particles (Ti) were prepared with castor oil (CO) and isophorone diisocyanate (IPDI) as polymeric matrix, and 1, 3 and 5 wt.% of Ti. Composites were physicochemically and mechanically characterized and their biocompatibility assessed using human dental pulp stem cells (HDPSC). PU synthesis was confirmed by FTIR, but the presence of Ti was detected by RAMAN, X-ray diffraction (peak at 2θ = 40.2°) and by EDX-mapping. Materials showed three decomposition temperatures between 300 °C and 500 °C and their decomposition were not catalyzed by Ti particles. Compressive modulus (164-846 kPa), compressive strength (12.9-116.7 kPa) and density (128-240 kg/m3) tend to increase with Ti concentration but porosity was reduced (87% to 80%). Composites' foams were fully degraded in acid and oxidative media while remained stable in distilled water. HDPSC viability on all composites was higher than 80% up to 14 days while proliferation dropped up to 60% at 21 days. Overall, these results suggest that these foams can be used as scaffolds for bone tissue regeneration.


Asunto(s)
Huesos/citología , Aceite de Ricino/química , Poliuretanos/química , Poliuretanos/farmacología , Ingeniería de Tejidos , Titanio/química , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología , Proliferación Celular/efectos de los fármacos , Fenómenos Químicos , Pulpa Dental/citología , Humanos , Fenómenos Mecánicos , Células Madre/citología , Células Madre/efectos de los fármacos , Temperatura , Andamios del Tejido/química
2.
J Biomater Appl ; 33(1): 11-22, 2018 07.
Artículo en Inglés | MEDLINE | ID: mdl-29726734

RESUMEN

Segmented polyurethanes were prepared with polycaprolactone diol as soft segment and 4,4-methylene-bis cyclohexyl diisocyanate and l-glutamine as the rigid segment. These polyurethanes were filled with 1 wt.% to 5 wt.% titanium particles (Ti), physicochemically characterized and their biocompatibility assessed using human dental pulp stem cells and mice osteoblasts. Physicochemical characterization showed that composites retained the properties of the semicrystalline polyurethane as they exhibited a glass transition temperature (Tg) between -35°C and -45°C, melting temperature (Tm) at 52°C and crystallinity close to 40% as determined by differential scanning calorimetry. In agreement with this, X-ray diffraction showed reflections at 21.3° and 23.6° for polycaprolactone diol and reflections at 35.1°, 38.4°, and 40.2° for Ti particles suggesting that these particles are not acting as nucleating sites. The addition of up to 5 wt.% of Ti reduced both, tensile strength and maximum strain from 1.9 MPa to 1.2 MPa, and from 670% to 172% for pristine and filled polyurethane, respectively. Although there were differences between composites at low strain rates, no significant differences in mechanical behavior were observed at higher strain rate where a tensile stress of 8.5 MPa and strain of 223% were observed for 5 wt.% composites. The addition to titanium particles had a beneficial effect on both human dental pulp stem cells and osteoblasts viability, as it increased with the amount of titanium in composites up to 10 days of incubation.


Asunto(s)
Materiales Biocompatibles/química , Huesos/química , Poliuretanos/química , Andamios del Tejido/química , Titanio/química , Adolescente , Animales , Línea Celular , Proliferación Celular , Supervivencia Celular , Pulpa Dental/citología , Femenino , Humanos , Ratones , Osteoblastos/citología , Transición de Fase , Células Madre/citología , Estrés Mecánico , Temperatura , Resistencia a la Tracción , Ingeniería de Tejidos , Adulto Joven
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