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Autor Arcos, Daniel |
Documentos disponibles escritos por este autor (5)
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Polo, Lorena ; Gomez Cerezo, Natividad ; Vivancos, Jose Luis ; Sancenón, Félix ; Arcos, Daniel ; Vallet Regí, María ; Martínez Máñez, Ramón | Elsevier | 2016-12-08Silica mesoporous nanomaterials have been proved to have meaningful application in biotechnology and biomedicine. Particularly, mesoporous bioactive glasses are recently gaining importance thanks to their bone regenerative properties. Moreover, [...]texto impreso
Izquierdo-Barba, Isabel ; García Martín, José Miguel ; Álvarez, Rafael ; Palmero, Alberto ; Esteban, Jaime ; Pérez-Jorge Peremarch, María de la Concepción ; Arcos, Daniel ; Vallet Regí, María | Elsevier | 2015-03-15Bacterial colonization and biofilm formation on orthopedic implants is one of the worst scenarios in orthopedic surgery, in terms of both patient prognosis and healthcare costs. Tailoring the surfaces of implants at the nanoscale to actively pro[...]texto impreso
Philippart, Anahí ; Gómez-Cerezo, Natividad ; Arcos, Daniel ; Salinas Sánchez, Antonio J. ; Boccardi, Elena ; Vallet Regí, María ; Boccaccini, A. R. | Elsevier | 2017-01-01Ion-doped binary SiO2-CaO and ternary SiO2-CaO-P2O5 mesoporous bioactive glasses were synthesized and characterized to evaluate the influence of P2O5 in the glass network structure. Strontium, copper and cobalt oxides in a proportion of 0.8 mol%[...]texto impreso
Gómez Cerezo, N. ; Izquierdo-Barba, Isabel ; Arcos, Daniel ; Vallet Regí, María | Royal Society of Chemistry | 2015-03-31Mesoporous bioactive glasses (MBGs) in the SiO2–CaO–P2O5 system have been prepared using different non-ionic structure directing agents (SDA): Brij58, F68, P123 and F127. For the first time, the bioactive response of MBGs can be tailored with th[...]texto impreso
Mas, Núria ; Arcos, Daniel ; Polo, Lorena ; Aznar, Elena ; Sánchez Salcedo, Sandra ; Sancenón, Félix ; García Fontecha, Ana ; Marcos Vega, M. Dolores ; Baeza, Alejandro ; Vallet Regí, María ; Martínez-Máñez, Ramón | Wiley-VCH | 2014A new approach towards the design of “gated scaffolds” based on the combination of capped mesoporous silica nanoparticles (MSNs) with porous biomaterials is reported. Using this approach, a 3D gelatin-based scaffold able to selectively deliver c[...]