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"Modelling the role of flux density and coating on nanoparticle internalization by tumor cells under centrifugation" Calvo, G. F.; Cortes-Llanos, B.; Belmonte-Beitia, J.; Salas, G.; Ayuso-Sacido, A. Appl. Math. Model. 2020, 78, 98-116.

“Toxicity of superparamagnetic iron oxide nanoparticles to the microalga Chlamydomonas reinhardtii” Hurtado-Gallego, J.; Pulido-Reyes, G.; González-Pleiter, M.; Salas, G.; Leganés, F.; Rosal, R.; Fernández-Piñas, F. Chemosphere 2020, 238, 124562.

"Aggregation effects on the magnetic properties of iron oxide colloids". L. Gutiérrez, L. de la Cueva, M. Moros, E. Mazarío, S. de Bernardo, J.M de la Fuente, M. P. Morales and G. Salas. Nanotechnology (2019) Vol. 30 (11)

“Optical trapping of single nanoparticles in a weakly-focused beam. Application to magnetic nanoparticles” Rodríguez Rodríguez, H.; de Lorenzo, S.; de la Cueva, L.; Salas, G.; Arias-Gonzalez, J. R. J. Phys. Chem. C (2018)122 (31), pp 18094–18101. 
“Optomagnetic Nanoplatforms for In Situ Controlled Hyperthermia” Ortgies, D. H.; Terán, F. J.; Rocha, U.; de la Cueva, L.; Salas, G.; Cabrera, D.; Vanetsev, A. S.; Rähn, M.; Sammelselg, V.; Orlosvkii, Y. V.; Jaque, D. Adv. Funct. Mater. (2018), 28, 1704434.
“Poliamido amine (PAMAM)-grafted magnetic nanotubes as emerging platforms for the delivery and sustained release of silibinin” Chavez, G.; Campos, C. H.; Jimenez, V. A.; Torres, C. C.; Díaz, C.; Salas, G.; Guzmán, L.; Alderete, J. B. J. Mater. Sci. (2017), 52, 9269-9281.

“Internal structure of magnetic nanoparticle determines magnetic response” Pacakova, B.; Kubickova, S.; Salas, G.; Mantlikova, A.; Marciello M.; Morales, M. P.; Niznansky, D.; Vejpravova, J. Nanoscale (2017), 9, 5129-5140. 

“In vivo deep tissue fluorescence and magnetic imaging employing hybrid nanostructures” Ortgies, D. H.; de la Cueva, L.; del Rosal, B.; Sanz-Rodríguez, F.; Fernández, N.; Iglesias-de la Cruz, M. C.; Salas, G.; Cabrera, D.; Teran, F. J.; Jaque, D.; Martín Rodríguez, E. ACS Appl. Mater. Interfaces (2016), 6, 1406-1414.

“Effects of inter- and intra-aggregate magnetic dipolar interactions on the magnetic heating efficiency of iron oxide nanoparticles” Ovejero, J. G.; Cabrera, D.; Carrey, D.; Valdivielso, T.; Salas, G.; Terán, F. J. Phys. Chem. Chem. Phys. (2016), 18, 10954-10963.

“Tunable nanocrystalline CoFe2O4 isotropic powders obtained by coprecipitation and ultrafast ball milling for permanent magnets applications” Pedrosa, F. J.; Rial, J.; Golasinski, K. M.; Rodríguez-Osorio, M.; Salas, G.; Granados, D.; Camarero, J.; Bollero, A. RSC Adv. (2016), 6, 87282-87287.

“The Negishi Catalysis: Full Study of the Complications in the Transmetalation Step and Consequences for the Coupling Products” del Pozo, J.; Salas, G.; Álvarez, R.; Casares, J. A.; Espinet, P. Organometallics (2016), 35, 3604-3411.

“g-force induced giant efficiency of nanoparticle uptake by living cells” Rodríguez, V.; Ocampo, S. M.; de la Cueva, L.; Salas, G.; Carrascosa, J. L.; García-Romero, N.; Camarero, J.; Miranda, R.; Belda-Iniesta, C.; Ayuso-Sacido, A. Sci. Rep. (2015), 5, 15160.

“A Single Picture Explains Diversity of Hyperthermia Response of Magnetic Nanoparticles” Conde-Leborán, I.; Baldomir, D.; Martínez-Boubeta, C.; Chubykalo-Fesenko, O.; Morales, M. P.; Salas, G.; Cabrera, D.; Camarero, J.; Terán, F. J.; Serantes, D. J. Phys. Chem. C (2015), 119, 15698-15706.

“BSA-coated magnetic nanoparticles for improved therapeutic properties” Aires, A.; Ocampo, S. M.; Cabrera, D.; de la Cueva, L.; Salas, G.; Terán, F. J.; Cortajarena, A. L. J. Mater. Chem. B (2015), 3, 6239-6247.

“Safety assessment of chronic oral exposure to iron oxide nanoparticles” Chamorro, S.; Gutiérrez, L.; Vaquero, M. P.; Verdoy, D.; Salas, G.; Luengo, Y.; Brenes, A.; Terán, F. J. Nanotechnology (2015), 26, 205101.

“Inducing glassy magnetism in Co-ferrite nanoparticles through crystalline nanostructure” Moya, C.; Salas, G.; Morales, M. P.; Batlle, X.; Labarta, A. C. J. Mater. Chem. C (2015), 3, 4522-4529.

“Modulation of magnetic heating via dipolar magnetic interactions in monodisperse and crystalline iron oxide nanoparticles” Salas, G.; Camarero, J.; Cabrera, D.; Takacs, H.; Varela, M; Ludwig, R.; Dähring, H.; Hilger, I.; Miranda, R.; Morales, M. P.; Teran, F. J. J. Phys. Chem. C. (2014), 118, 19985-19994.

“Structural disorder versus spin canting in monodisperse maghemite nanocrystals” Kubickova, S.; Niznansky, D.; Morales, M. P.; Salas, G.; Vejpravova, J. Appl. Phys. Lett. (2014), 104, 223105.

"High Therapeutic Efficiency of Magnetic Hyperthermia in Xenograft Models Achieved with Moderate Temperature Increases in the Tumor Area" Kossatz, S.; Ludwig, R.; Dähring, H.; Ettelt, V.; Rimkus, G.; Marciello, M.; Salas, G.; Patel, V.; Teran, F. J.; Hilger, I. Pharmaceut. Res. (2014), 31, 3274-3288.

"Efficient and safe internalization of magnetic iron oxide nanoparticles: Two fundamental requirements for biomedical applications" Calero, M.; Gutiérrez, L.; Salas, G.; Luengo, Y.; Lázaro, A.; Acedo, P.; Morales, M. P.; Miranda, R.; Villanueva, A. Nanomedicine (2014), 10, 733-743.

“Relationship between physico-chemical properties of magnetic fluids and their heatingcapacity” Salas, G.; Veintemillas-Verdaguer, S.; Morales, M. P. Int. J. Hyperther. (2013), 29, 768-776.

"Long term biotransformation and toxicity of dimercaptosuccinic acid-coated magneticnanoparticles support their use in biomedical applications" Mejías, R.; Gutiérrez, L.;Salas, G.; Pérez-Yagüe, S.; Zotes, T. M.; Lázaro, F. J.; Morales, M.P.; Barber, D. F. J.Control. Release (2013), 171, 225-233.

“Short-chain PEG molecules strongly bound to magnetic nanoparticle for MRI longcirculating agents” Ruiz, A.; Salas, G.; Calero, M.; Hernández, Y.; Villanueva, A.;Herranz, F.; Veintemillas, S.; Martínez, E.; Barber, D. F.; Morales, M. P. ActaBiomater (2013), 9, 6421-6430.

“Multiparametric toxicity evaluation of SPIONs as identification for multifunctionalnanoparticles for theranostic applications” Prina-Mello, A.; Crosbie-Staunton, K.; Salas,G.; Morales, M. P.; Volkov, Y. IEEE Trans. Magn. (2013), 49, 377-382.