Polo, Lorena; Díaz de Greñu-Puertas, Borja; Della Bella, Elena; Pagani, Stefania; Torricelli, Paola; Vivancos, José-Luis; Ruiz Rico, María; Barat Baviera, José Manuel; Aznar, Elena; Martínez-Máñez, Ramón; Fini, Milena; Sancenón Galarza, Félix(Elsevier, 2018-11)
[EN] Infections represent one of the most frequent causes of arthroplasty revision. Thus, design of new antimi-crobial scaffolds to reduce implant rejections, bone infections and associated medical costs is highlydesired. ...
[EN] Two-component systems (TCS) regulate diverse processes such as virulence, stress responses, metabolism and antibiotic resistance in bacteria but are absent in humans, making them promising targets for novel antibacterials. ...
Polo Aguado, Lorena(Universitat Politècnica de València, 2016-11-02)
[EN] Bone infection is one of the most common problems that usually appear after a prosthesis surgery. In this work, we propose the development and characterisation of a mesoporous material, which can be 3D-printed in the ...
Polo Aguado, Lorena(Universitat Politècnica de València, 2018-10-30)
La presente tesis doctoral, titulada "Diseño de scaffolds inteligentes para la prevención y tratamiento de la infección ósea", se centra en el desarrollo de materiales híbridos orgánico-inorgánicos capaces de realizar una ...
[EN] Background and Aims To achieve both the control of the undesirable yeasts and the improvement of the characteristics of Merlot 'Pago' wines, Saccharomyces cerevisiae yeast diversity was investigated in a spontaneous ...
[EN] An increase of bone diseases incidence has boosted the study of ceramic biomaterials as potential osteo-inductive scaffolds. In particular, mesoporous bioactive glasses have demonstrated to possess a broad application ...
[EN] Silica 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 ...
A 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 ...