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Review

Iron oxide-based multifunctional nanoparticulate systems for biomedical applications: a patent review (2008 – present)

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Nisha Rani & Brijnandan S. Dehiya. (2022) Magnetically recyclable copper doped core-shell Fe3O4@TiO2@Cu nanocomposites for wastewater remediation. Environmental Technology 43:28, pages 4484-4492.
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Zeyuan Mao, Xin Li, Pengfei Wang & Hailong Yan. (2022) Iron oxide nanoparticles for biomedical applications: an updated patent review (2015–2021). Expert Opinion on Therapeutic Patents 32:9, pages 939-952.
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Articles from other publishers (23)

A.G. Roca, J.F. Lopez-Barbera, A. Lafuente, F. Özel, E. Fantechi, J. Muro-Cruces, M. Hémadi, B. Sepulveda & J. Nogues. (2023) Iron oxide nanoparticles (Fe3O4, -Fe2O3 and FeO) as photothermal heat mediators in the first, second and third biological windows . Physics Reports 1043, pages 1-35.
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Fátima Fernández-Álvarez, Gracia García-García, Guillermo R. Iglesias & José L. Arias. (2023) A maghemite/PLGA (core/shell) nanostructure that may facilitate chemotherapy and antitumor hyperthermia. Journal of Magnetism and Magnetic Materials, pages 171574.
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Gracia García-García, Carlos Caro, Fátima Fernández-Álvarez, María Luisa García-Martín & José L. Arias. (2023) Multi-stimuli-responsive chitosan-functionalized magnetite/poly(ε-caprolactone) nanoparticles as theranostic platforms for combined tumor magnetic resonance imaging and chemotherapy. Nanomedicine: Nanotechnology, Biology and Medicine 52, pages 102695.
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Xinying Cheng, Yang Zhou, Andrew D.M. Charles, Yuyan Yu, Mohammad S. Islam, Shuhua Peng, John Wang, Andrew N. Rider, May Lim, Victoria Timchenko & Chun-Hui Wang. (2021) Enabling contactless rapid on-demand debonding and rebonding using hysteresis heating of ferrimagnetic nanoparticles. Materials & Design 210, pages 110076.
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Jyoti Saini, Monika Sharma & Bijoy Kumar Kuanr. (2021) Role of Ce concentration on the structural and magnetic properties of functional magnetic oxide particles. Nanoscale Advances 3:21, pages 6074-6087.
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Fátima Fernández-Álvarez, Gracia García-García & José L. Arias. (2021) A Tri-Stimuli Responsive (Maghemite/PLGA)/Chitosan Nanostructure with Promising Applications in Lung Cancer. Pharmaceutics 13:8, pages 1232.
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Fátima Fernández-Álvarez, Carlos Caro, Gracia García-García, María Luisa García-Martín & José L. Arias. (2021) Engineering of stealth (maghemite/PLGA)/chitosan (core/shell)/shell nanocomposites with potential applications for combined MRI and hyperthermia against cancer. Journal of Materials Chemistry B 9:24, pages 4963-4980.
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Maria MonteserínSilvia LarumbeAlejandro V. MartínezSaioa BurguiL. Francisco Martín. (2021) Recent Advances in the Development of Magnetic Nanoparticles for Biomedical Applications. Journal of Nanoscience and Nanotechnology 21:5, pages 2705-2741.
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Kecheng Quan, Zexin Zhang, Yijin Ren, Henk J. Busscher, Henny C. van der Mei & Brandon W. Peterson. (2021) Possibilities and impossibilities of magnetic nanoparticle use in the control of infectious biofilms. Journal of Materials Science & Technology 69, pages 69-78.
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Gracia García-García, Fátima Fernández-Álvarez, Laura Cabeza, Ángel V. Delgado, Consolación Melguizo, José C. Prados & José L. Arias. (2020) Gemcitabine-Loaded Magnetically Responsive Poly(ε-caprolactone) Nanoparticles against Breast Cancer. Polymers 12:12, pages 2790.
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Sathyadevi Palanisamy & Yun-Ming Wang. (2019) Superparamagnetic iron oxide nanoparticulate system: synthesis, targeting, drug delivery and therapy in cancer. Dalton Transactions 48:26, pages 9490-9515.
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Feng Lin, Martin R. Prince, Pascal Spincemaille & Yi Wang. (2019) Patents on Quantitative Susceptibility Mapping (QSM) of Tissue Magnetism. Recent Patents on Biotechnology 13:2, pages 90-113.
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A. L. Kozlovskiy, I. V. Korolkov, M. A. Ibragimova, M. V. Zdorovets, M. D. Kutuzau, L. N. Nikolaevich, E. E. Shumskaya & E. Yu. Kaniukov. (2018) Magnetic Nanostructured System for Biomedical Applications Based on FeNi Nanotubes. Nanotechnologies in Russia 13:5-6, pages 331-336.
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M. Pauliah, S. Zanganeh, M. Erfanzadeh & J.Q. Ho. 2018. Iron Oxide Nanoparticles for Biomedical Applications. Iron Oxide Nanoparticles for Biomedical Applications 273 290 .
Margarita López-Viota, Mazen M. El-Hammadi, Laura Cabeza, José Prados, Consolación Melguizo, M. Adolfina Ruiz Martinez, José L. Arias & Ángel V. Delgado. (2017) Development and Characterization of Magnetite/Poly(butylcyanoacrylate) Nanoparticles for Magnetic Targeted Delivery of Cancer Drugs. AAPS PharmSciTech 18:8, pages 3042-3052.
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Fangyuan Li, Jingxiong Lu, Xueqian Kong, Taeghwan Hyeon & Daishun Ling. (2017) Dynamic Nanoparticle Assemblies for Biomedical Applications. Advanced Materials 29:14, pages 1605897.
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Rukmani Thiruppathi, Sachin Mishra, Mathangi Ganapathy, Parasuraman Padmanabhan & Balázs Gulyás. (2017) Nanoparticle Functionalization and Its Potentials for Molecular Imaging. Advanced Science 4:3, pages 1600279.
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Rubel Chakravarty, Feng Chen, Ashutosh Dash & Weibo Cai. 2017. Design and Applications of Nanoparticles in Biomedical Imaging. Design and Applications of Nanoparticles in Biomedical Imaging 257 275 .
Catalina Bordeianu & Delphine Felder-Flesch. 2016. Dendrimers in Nanomedicine. Dendrimers in Nanomedicine 23 76 .
María Muñoz de Escalona, Eva Sáez-Fernández, José C. Prados, Consolación Melguizo & José L. Arias. (2016) Magnetic solid lipid nanoparticles in hyperthermia against colon cancer. International Journal of Pharmaceutics 504:1-2, pages 11-19.
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Alexey Leonodovich Iordanskii, Anna Vladimirovna Bychkova, Klara Zenonovna Gumargalieva & Alexandr Alexandrovich Berlin. 2016. Nanobiomaterials in Drug Delivery. Nanobiomaterials in Drug Delivery 171 196 .
Daniel J. KorchinskiMay TahaRunze YangNabeela NathooJeff F. Dunn. (2015) Iron Oxide as an Mri Contrast Agent for Cell Tracking: Supplementary Issue. Magnetic Resonance Insights 8s1, pages MRI.S23557.
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Eman Alzahrani. (2015) Photodegradation of Eosin Y Using Silver-Doped Magnetic Nanoparticles. International Journal of Analytical Chemistry 2015, pages 1-11.
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