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Autor Lozano Borregón, Daniel |
Documentos disponibles escritos por este autor (20)
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Lozano Borregón, Daniel ; Sánchez Salcedo, Sandra ; Portal Núñez, Sergio ; Vila, Mercedes ; López Herradón, Ana ; Ardura, Juan A. ; Mulero, Francisca ; Gómez Barrena, Enrique ; Vallet Regí, María ; Esbrit, Pedro | Elsevier | 2014-07Biopolymer-coated nanocrystalline hydroxyapatite (HA) made as macroporous foams which are degradable and flexible are promising candidates as orthopaedic implants. The C-terminal (107-111) epitope of parathyroid hormone-related protein (PTHrP) e[...]texto impreso
Martínez Carmona, Marina ; Lozano Borregón, Daniel ; Colilla, Montserrat ; Vallet Regí, María | 2016Topotecan (TOP), a water-soluble derivative of camptothecin, is a potent antitumor agent that is receiving growing attention for the treatment of several types of cancer. However, one of the major constraints in the clinical use of this drug is [...]texto impreso
Gisbert Garzarán, Miguel ; Lozano Borregón, Daniel ; Vallet Regí, María ; Manzano García, Miguel | Royal Society of Chemistry | 2016-12-07A novel pH-sensitive nanocarrier based on mesoporous silica nanoparticles with self-immolative polymers blocking the pore openings is presented. Triggered release by acid pH is demonstrated, together with their in vitro biocompatibility and effe[...]texto impreso
Gómez-Cerezo, Natividad ; Lozano Borregón, Daniel ; Arcos Navarrete, Daniel ; Vallet Regí, María ; Vaquette, Cedryck | Elsevier | 2019-12-20Three-dimensional Mesoporous bioactive glasses (MBGs) scaffolds has been widely considered for bone regeneration purposes and additive manufacturing enables the fabrication of highly bioactive patient-specific constructs for bone defects. Common[...]texto impreso
Lozano Borregón, Daniel ; Gil-Alvaroba, J ; Heras Rubio, Clara ; Sánchez Salcedo, Sandra ; Gómez Palacio, V. E. ; Gómez Blasco, A ; Doadrio Villarejo, Juan Carlos ; Vallet Regí, María ; Salinas Sánchez, Antonio J. | Springer | 2020-08-25The use of 3D scaffolds based on mesoporous bioactive glasses (MBG) enhanced with therapeutic ions, biomolecules and cells is emerging as a strategy to improve bone healing. In this paper, the osteogenic capability of ZnO-enriched MBG scaffolds [...]