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1. "Unraveling viscosity effects on the hysteresis losses of magnetic nanocubes"
D. Cabrera, A. Lak, T. Yoshida, M.E. Materia, D. Ortega, F. Ludwig, P. Guardia, A. Sathya, T. Pellegrino, and F. J. Teran. Nanoscale 9, 5094 (2017)

2. "Elucidation of the physico-chemical properties ruling the colloidal stability of iron oxide nanoparticles under physiological conditions"
A. Aires, D. Cabrera, L. C. Alonso-Pardo, A.L. Cortajarena and F.J.Teran. Chem.Nano.Mat.3,183 (2017)

3. "Nanoparticle-based hyperthermia distinctly impacts ROS production, Ki-67, TOP2A, TPX2- expression and apoptosis induction in pancreatic cancer"
R. Ludwig, F.J.Teran, U. Teichgraeber, and I. Hilger.
Int.J. Nanomedicine 12, 1009 (2017)

4. "Functionalized magnetic nanowires for chemical and magneto-mechanical induction of cancer cell death"
A.I. Martínez-Banderas, A. Aires, F. J. Teran, J. E. Perez, J. F. Cadenas, N. Alsharif, T. Ravasi, A. L. Cortajarena, J. Kosel. Scientific Reports 6, 35786 (2016)

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

6. "In Vivo Deep Tissue Fluorescence and Magnetic Imaging Employing Hybrid Nanostructures"
D. H. Ortgies, L. de la Cueva, B. del Rosal, F. Sanz-Rodríguez, N. Fernández, M. C. Iglesias-de la Cruz, G. Salas, D. Cabrera, F. J. Teran, D. Jaque, and E. Martín Rodríguez.
ACS Applied Materials & Interfaces 8, 1406 (2016)

7. " Fundamentals and advances in magnetic hyperthermia"
E. A. Périgo, G. Hemery, O. Sandre, D. Ortega, E. Garaio, F. Plazaola, and F. J. Teran, Appl. Phys. Rev. 2, 041302 (2015)

8. "BSA-coated magnetic nanoparticles for improved therapeutic properties"
A. Aires, S. M. Ocampo, D. Cabrera, L. de la Cueva, G. Salas, F. J. Teran, and A. L. Cortajarena. Journal of Materials Chemistry B 3, 6239 (2015)

9. "A Single Picture Explains Diversity of Hyperthermia Response of Magnetic Nanoparticles"
I. Conde-Leboran, D. Baldomir, C. Martinez-Boubeta, O. Chubykalo-Fesenko, M.P. Morales, G. Salas, D. Cabrera, J. Camarero, F.J. Teran, and D. Serantes. J.Phys.Chem. C 119, 15698 (2015)

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

11. “Influence of the Aggregation, Concentration and Viscosity on the Nanomagnetism of Iron Oxide Nanoparticle Colloids for magnetic hyperthermia”, D. Cabrera, J. Camarero, D.Ortega and F. J. Teran. Journal of Nanoparticle Research, 17, 121 (2015)

12. “Modulation of Magnetic Heating via Dipolar Magnetic Interactions in Monodisperse and Crystalline Iron Oxide Nanoparticles”
G. Salas, J.Camarero, D. Cabrera, H. Takacs, M. Varela, R. Ludwig, H. Dähring, I. Hilger, R. Miranda, M. P. Morales, and F.J. Teran J.Phys.Chem. C 18, 19985(2014)

13. "Magnetic hyperthermia – high therapeutic efficiency of superparamagentic iron oxide nanoparticles in cancer xenograft models"
H Dähring, R Lundwig, S Kossatz, V Ettelt, G Rimkus, I Hilger, M Marciello, G Salas, V Patel, FJ Teran, RöFo - Fortschritte auf dem Gebiet der R 04/2014; 186(S 01).

14. “High Therapeutic Efficiency of Magnetic Hyperthermia in Xenograft Models Achieved with Moderate Temperature Increases in the Tumor Area”
S. Kossatz, R. Ludwig, H. Dähring, V. Ettelt, G. Rimkus, M. Marciello, G. Salas, V. Patel, F. J. Teran, and I. Hilger, Pharmaceutical Research 31, 3274 (2014)

15. “Iron bioavailability from ingested iron oxide nanoparticles“
S. Chamorro, A. Brenes, A.Viveros, C. Romero, L. Gutierrez, G. Salas, Y. Luengo, M.P. Morales, and F.J.Teran, Am. J. Hematol. 88, E112 (2013)

16. "Preparation of Glycopolymer-coated magnetite nanoparticles for hyperthermia treatment"
S. Muñoz-Bonilla, G. Marcelo, C. Casado, F.J. Teran and M. Fernández-García
J. Polymer Science Part A: Polymer Chemistry 50, 5087(2012).

17. “Controlled synthesis of uniform magnetite nanocrystals with high-quality properties for biomedical applications”
G. Salas, C. Casado, F J. Teran, R. Miranda, C. J. Serna, and M. P. Morales
J. Mater.Chem. 22, 21065 (2012)

18. “Accurate determination of the specific absorption rate in superparamagnetic nanoparticles under non-adiabatic conditions”
F.J. Teran, C. Casado, N. Mikuszeit, G. Salas, A. Bollero, M.P. Morales, J. Camarero and R. Miranda, Appl. Phys. Lett. 101, 062413 (2012)

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