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Original

Clinical applications of magnetic nanoparticles for hyperthermia

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Pages 467-474 | Received 19 Dec 2007, Accepted 04 Apr 2008, Published online: 09 Jul 2009

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Anand Bhardwaj, Kinnari Parekh & Neeraj Jain. (2023) Optimization of magnetic fluid hyperthermia protocols for the elimination of breast cancer cells MCF7 using Mn-Zn ferrite ferrofluid. Journal of Materials Science: Materials in Medicine 34:3.
Crossref
Helena Gavilán, Giusy M. R. Rizzo, Niccolò Silvestri, Binh T. Mai & Teresa Pellegrino. (2023) Scale-up approach for the preparation of magnetic ferrite nanocubes and other shapes with benchmark performance for magnetic hyperthermia applications. Nature Protocols 18:3, pages 783-809.
Crossref
Santiago Helbig, Claas Abert, Pedro A. Sánchez, Sofia S. Kantorovich & Dieter Suess. (2023) Self-consistent solution of magnetic and friction energy losses of a magnetic nanoparticle. Physical Review B 107:5.
Crossref
S. B. Attanayake, A. Chanda, R. Das, M. H. Phan & H. Srikanth. (2023) Effects of annealing temperature on the magnetic properties of highly crystalline biphase iron oxide nanorods. AIP Advances 13:2.
Crossref
Anderson de Souza Cabral, Mariana Verdan, Rogerio Presciliano, Felipe Silveira, Tarcisio Correa & Fernanda Abreu. (2023) Large-Scale Cultivation of Magnetotactic Bacteria and the Optimism for Sustainable and Cheap Approaches in Nanotechnology. Marine Drugs 21:2, pages 60.
Crossref
Marta Vassallo, Daniele Martella, Gabriele Barrera, Federica Celegato, Marco Coïsson, Riccardo Ferrero, Elena S. Olivetti, Adriano Troia, Hüseyin Sözeri, Camilla Parmeggiani, Diederik S. Wiersma, Paola Tiberto & Alessandra Manzin. (2023) Improvement of Hyperthermia Properties of Iron Oxide Nanoparticles by Surface Coating. ACS Omega 8:2, pages 2143-2154.
Crossref
Hamidreza Saeidi, Morteza Mozaffari, Serhat Ilbey, Silvio Dutz, Diana Zahn, Gholamhassan Azimi & Michael Bock. (2023) Effect of Europium Substitution on the Structural, Magnetic and Relaxivity Properties of Mn-Zn Ferrite Nanoparticles: A Dual-Mode MRI Contrast-Agent Candidate. Nanomaterials 13:2, pages 331.
Crossref
I Dirba, C K Chandra, Y Ablets, J Kohout, T Kmječ, O Kaman & O Gutfleisch. (2022) Evaluation of Fe-nitrides, -borides and -carbides for enhanced magnetic fluid hyperthermia with experimental study of α″-Fe 16 N 2 and ϵ-Fe 3 N nanoparticles . Journal of Physics D: Applied Physics 56:2, pages 025001.
Crossref
Shunya Saegusa, Ikuya Sakurai, Ikuo Okada, Keisuke Yamada, Mutsuhiro Shima, Yuichi Utsumi & Akinobu Yamaguchi. (2023) The effect of pH on X-ray-radiolysis-induced synthesis of nickel nanoparticles on lithium niobate substrates. Materials Science and Engineering: B 287, pages 116093.
Crossref
Pulasta Chakrabarty, Kavitha Illath, Srabani Kar, Moeto Nagai & Tuhin Subhra Santra. (2023) Combinatorial physical methods for cellular therapy: Towards the future of cellular analysis?. Journal of Controlled Release 353, pages 1084-1095.
Crossref
Manjakuppam Malika & Shriram S. Sonawane. 2023. Nanofluid Applications for Advanced Thermal Solutions. Nanofluid Applications for Advanced Thermal Solutions 267 286 .
Priyanka Sharma, Navneet Kaur & Asifkhan Shanavas. 2023. Poly(lactic-co-glycolic acid) (PLGA) Nanoparticles for Drug Delivery. Poly(lactic-co-glycolic acid) (PLGA) Nanoparticles for Drug Delivery 123 151 .
Adeolu Oluwasamni, Antonio Santana-Otero, Stefaan Soenen, Bella Manshian, Clare Hoskins & Daniel Ortega. 2023. Ferrite Nanostructured Magnetic Materials. Ferrite Nanostructured Magnetic Materials 805 829 .
Priyal Chikhaliwala & Sudeshna Chandra. 2023. Superparamagnetic Materials for Cancer Medicine. Superparamagnetic Materials for Cancer Medicine 243 268 .
Liu Li, Decai Li & Zhili Zhang. (2022) Rheological and magnetic properties of stable poly alpha olefins based ferrofluids with high viscosity and magnetization. Journal of Magnetism and Magnetic Materials 564, pages 170096.
Crossref
Klaas-Julian Janssen, Jing Zhong, Thilo Viereck, Meinhard Schilling & Frank Ludwig. (2022) Quantitative temperature visualization with single harmonic-based magnetic particle imaging. Journal of Magnetism and Magnetic Materials 563, pages 169915.
Crossref
Ilaria Armenia, Carlos Cuestas Ayllón, Beatriz Torres Herrero, Francesca Bussolari, Gabriel Alfranca, Valeria Grazú & Jesús Martínez de la Fuente. (2022) Photonic and magnetic materials for on-demand local drug delivery. Advanced Drug Delivery Reviews 191, pages 114584.
Crossref
Hemalatha Kothandaraman, Alamelumangai Kaliyamoorthy, Arulmozhi Rajaram, Chandunika R. Kalaiselvan, Niroj Kumar Sahu, Parthipan Govindasamy & Muralidharan Rajaram. (2022) Functionalization and Haemolytic analysis of pure superparamagnetic magnetite nanoparticle for hyperthermia application. Journal of Biological Physics 48:4, pages 383-397.
Crossref
Xiang Yu, Tianyu Yang, Ruoshui Liu, Di'an Wu, Daming Tian, Tianshi Zhou, Haitao Yan, Shuli He & Hao Zeng. (2022) Simultaneous Enhancement of Magnetothermal and Photothermal Responses by Zn, Co Co‐Doped Ferrite Nanoparticles. Small 18:52.
Crossref
Soudabeh Arsalani, Patricia Radon, Peter Schier, Aaron Jaufenthaler, Maik Liebl, Daniel Baumgarten & Frank Wiekhorst. (2022) Developing magnetorelaxometry imaging for human applications. Physics in Medicine & Biology 67:22, pages 225007.
Crossref
Roberto Montes-Robles, Hazael Montanaro, Myles Capstick, Javier Ibáñez-Civera, Rafael Masot-Peris, Eduardo García-Breijo, Nicolás Laguarda-Miró & Ramón Martínez-Máñez. (2022) Tailored cancer therapy by magnetic nanoparticle hyperthermia: A virtual scenario simulation method. Computer Methods and Programs in Biomedicine 226, pages 107185.
Crossref
Raghvendra A. Bohara & Stefano Leporatti. (2022) Translational Hurdles with Magnetic Nanoparticles and Current Clinical Scenario in Hyperthermia Applications. Magnetochemistry 8:10, pages 123.
Crossref
Nandyala Mahesh, Neetu Singh & Prabal Talukdar. (2022) In-silico investigation of magnetic nanoparticle hyperthermia treatment to estimate the power density and concentration required to achieve the therapeutic effect. International Communications in Heat and Mass Transfer 137, pages 106295.
Crossref
V. Vinodhini & C. Krishnamoorthi. (2021) Effect of dispersants on cytotoxic properties of magnetic nanoparticles: a review. Polymer Bulletin 79:10, pages 8143-8192.
Crossref
Israel Alejandro Flores Urquizo, Tomás Constantino Hernández García, Shadai Lugo Loredo, José Trinidad Elizalde Galindo, Perla Elvia García Casillas, Jazmín Cristina Stevens Barrón & Christian Chapa González. (2022) Effect of Aminosilane Nanoparticle Coating on Structural and Magnetic Properties and Cell Viability in Human Cancer Cell Lines. Particle & Particle Systems Characterization 39:10.
Crossref
Hang Xu, Hiroharu Kamada, Takanori Isobe & Shinichi Nomura. (2022) Feasibility Study on a Real-Scale High-Frequency Electromagnets for Magnetic Hyperthermia Base on a Magnetic Scaling Law. IEEE Transactions on Applied Superconductivity 32:6, pages 1-5.
Crossref
Sarah Kraus, Ricarina Rabinovitz, Ekaterina Sigalov, Moshe Eltanani, Raz Khandadash, Cheri Tal, Ofra Rivlin, Eddie Sharaga, Pazit Rukenstein, Moshe Cohen-Erner, Abraham Nyska, Yariv Siman-Tov & Ofer Shalev. (2022) Self-regulating novel iron oxide nanoparticle-based magnetic hyperthermia in swine: biocompatibility, biodistribution, and safety assessments. Archives of Toxicology 96:9, pages 2447-2464.
Crossref
Longfei Li, Xiaodi Zhang, Jun Zhou, Liqun Zhang, Jiajia Xue & Wei Tao. (2022) Non‐Invasive Thermal Therapy for Tissue Engineering and Regenerative Medicine. Small 18:36.
Crossref
N.N. Liu, A.P. Pyatakov, A.M. Saletsky, M.N. Zharkov, N.A. Pyataev, G.B. Sukhorukov, Y.K. Gun'ko & A.M. Tishin. (2022) The “field or frequency” dilemma in magnetic hyperthermia: The case of Zn Mn ferrite nanoparticles. Journal of Magnetism and Magnetic Materials 555, pages 169379.
Crossref
Yurena Luengo, Zamira V. Díaz-Riascos, David García-Soriano, Francisco J. Teran, Emilio J. Artés-Ibáñez, Oihane Ibarrola, Álvaro Somoza, Rodolfo Miranda, Simó SchwartzJr.Jr., Ibane Abasolo & Gorka Salas. (2022) Fine Control of In Vivo Magnetic Hyperthermia Using Iron Oxide Nanoparticles with Different Coatings and Degree of Aggregation. Pharmaceutics 14:8, pages 1526.
Crossref
Lei Zhu, Hui Mao & Lily Yang. (2022) Advanced iron oxide nanotheranostics for multimodal and precision treatment of pancreatic ductal adenocarcinoma. WIREs Nanomedicine and Nanobiotechnology 14:4.
Crossref
Tobias Nitschke, Joakim Stenhammar & Raphael Wittkowski. (2022) Collective guiding of acoustically propelled nano- and microparticles. Nanoscale Advances 4:13, pages 2844-2856.
Crossref
Borja Herrero de la Parte, Irati Rodrigo, Jon Gutiérrez-Basoa, Sira Iturrizaga Correcher, Carmen Mar Medina, Jose Javier Echevarría-Uraga, Jose Angel Garcia, Fernando Plazaola & Ignacio García-Alonso. (2022) Proposal of New Safety Limits for In Vivo Experiments of Magnetic Hyperthermia Antitumor Therapy. Cancers 14:13, pages 3084.
Crossref
Eirini Myrovali. (2022) Hybrid Stents Based on Magnetic Hydrogels for Biomedical Applications. ACS Applied Bio Materials 5:6, pages 2598-2607.
Crossref
Hsin-Hsien Chen, Ming-Hung Hsu, Kun-Hung Lee, Wen-Yih Chen & Shieh-Yueh Yang. (2022) Real-time changes in the AC magnetic susceptibility of reagents during immunomagnetic reduction assays. AIP Advances 12:6, pages 065220.
Crossref
Francesca Garello, Yulia Svenskaya, Bogdan Parakhonskiy & Miriam Filippi. (2022) Micro/Nanosystems for Magnetic Targeted Delivery of Bioagents. Pharmaceutics 14:6, pages 1132.
Crossref
Agnieszka Włodarczyk, Szymon Gorgoń, Adrian Radoń & Karolina Bajdak-Rusinek. (2022) Magnetite Nanoparticles in Magnetic Hyperthermia and Cancer Therapies: Challenges and Perspectives. Nanomaterials 12:11, pages 1807.
Crossref
Chang Soo Kim, Dmitry Nevozhay, Rebeca Romero Aburto, Ashok Pehere, Lan Pang, Rebecca Dillard, Ziqiu Wang, Clayton Smith, Kelsey Boitnott Mathieu, Marie Zhang, John D. Hazle, Robert C. BastJr.Jr. & Konstantin Sokolov. (2022) One-Pot, One-Step Synthesis of Drug-Loaded Magnetic Multimicelle Aggregates. Bioconjugate Chemistry 33:5, pages 969-981.
Crossref
Alexandre Adam, Sébastien Harlepp, Fiorela Ghilini, Geoffrey Cotin, Barbara Freis, Jacky Goetz, Sylvie Bégin, Mariana Tasso & Damien Mertz. (2022) Core-shell iron oxide@stellate mesoporous silica for combined near-infrared photothermia and drug delivery: Influence of pH and surface chemistry. Colloids and Surfaces A: Physicochemical and Engineering Aspects 640, pages 128407.
Crossref
Peter Schier, Maik Liebl, Uwe Steinhoff, Frank Wiekhorst & Daniel Baumgarten. (2022) Experimental demonstration of improved magnetorelaxometry imaging performance using optimized coil configurations. Medical Physics 49:5, pages 3361-3374.
Crossref
Junzhu Yang, Chen Wang & Yuan Lu. (2022) A Temperature-Controlled Cell-Free Expression System by Dynamic Repressor. ACS Synthetic Biology 11:4, pages 1408-1416.
Crossref
Qiuxia Peng, Zhangbo Qian, Huali Gao & Kun Zhang. (2022) Recent Advances in Transition-Metal Based Nanomaterials for Noninvasive Oncology Thermal Ablation and Imaging Diagnosis. Frontiers in Chemistry 10.
Crossref
Sorour Darvishi, Shima Tavakoli, Mahshid Kharaziha, Hubert H. Girault, Clemens F. Kaminski & Ioanna Mela. (2022) Advances in the Sensing and Treatment of Wound Biofilms. Angewandte Chemie International Edition 61:13.
Crossref
Sorour Darvishi, Shima Tavakoli, Mahshid Kharaziha, Hubert H. Girault, Clemens F. Kaminski & Ioanna Mela. (2022) Advances in the Sensing and Treatment of Wound Biofilms. Angewandte Chemie 134:13.
Crossref
Elyahb Allie Kwizera, Samantha Stewart, Md Musavvir Mahmud & Xiaoming He. (2022) Magnetic Nanoparticle-Mediated Heating for Biomedical Applications. Journal of Heat Transfer 144:3.
Crossref
Xiangsheng Liu, Hui Sun, Xueqing Wang & Huan Meng. (2021) Immunological effects of nano-enabled hyperthermia for solid tumors: opportunity and challenge. Frontiers of Chemical Science and Engineering 16:3, pages 333-344.
Crossref
Angel T. Apostolov, Iliana N. Apostolova & Julia M. Wesselinowa. (2022) Application of Ion‐Doped Y 3 Fe 5 O 12 Nanoparticles for Self‐Controlled Magnetic Hyperthermia . physica status solidi (b) 259:3.
Crossref
Paulina Sobierajska, Anna Serwotka-Suszczak, Sara Targonska, Damian Szymanski, Krzysztof Marycz & Rafal J. Wiglusz. (2022) Synergistic Effect of Toceranib and Nanohydroxyapatite as a Drug Delivery Platform—Physicochemical Properties and In Vitro Studies on Mastocytoma Cells. International Journal of Molecular Sciences 23:4, pages 1944.
Crossref
Yu. A. Koksharov, S. P. Gubin, I. V. Taranov, G. B. Khomutov & Yu. V. Gulyaev. (2022) Magnetic Nanoparticles in Medicine: Progress, Problems, and Advances. Journal of Communications Technology and Electronics 67:2, pages 101-116.
Crossref
Francesca Serio, Niccolò Silvestri, Sahitya Kumar Avugadda, Giulia E.P. Nucci, Simone Nitti, Valentina Onesto, Federico Catalano, Eliana D'Amone, Giuseppe Gigli, Loretta L. del Mercato & Teresa Pellegrino. (2022) Co-loading of doxorubicin and iron oxide nanocubes in polycaprolactone fibers for combining Magneto-Thermal and chemotherapeutic effects on cancer cells. Journal of Colloid and Interface Science 607, pages 34-44.
Crossref
Michael Schwake, Michael Müther, Ann-Katrin Bruns, Bastian Zinnhardt, Nils Warneke, Markus Holling, Stephanie Schipmann, Benjamin Brokinkel, Johannes Wölfer, Walter Stummer & Oliver Grauer. (2022) Combined Fluorescence-Guided Resection and Intracavitary Thermotherapy with Superparamagnetic Iron-Oxide Nanoparticles for Recurrent High-Grade Glioma: Case Series with Emphasis on Complication Management. Cancers 14:3, pages 541.
Crossref
Hui Du, Ozioma Udochukwu Akakuru, Chenyang Yao, Fang Yang & Aiguo Wu. (2022) Transition metal ion-doped ferrites nanoparticles for bioimaging and cancer therapy. Translational Oncology 15:1, pages 101264.
Crossref
Zs. Iszály, I.G. Márián, I.A. Szabó, A. Trombettoni & I. Nándori. (2022) Theory of superlocalized magnetic nanoparticle hyperthermia: Rotating versus oscillating fields. Journal of Magnetism and Magnetic Materials 541, pages 168528.
Crossref
Mozhdeh Peiravi, Hossein Eslami, Mojtaba Ansari & Hadi Zare-Zardini. (2022) Magnetic hyperthermia: Potentials and limitations. Journal of the Indian Chemical Society 99:1, pages 100269.
Crossref
Alexander Pyatakov, Zoya Pyatakova & Alexander M. Tishin. 2022. Magnetic Materials and Technologies for Medical Applications. Magnetic Materials and Technologies for Medical Applications 3 21 .
Aleksei S. Komlev & Vladimir I. Zverev. 2022. Magnetic Materials and Technologies for Medical Applications. Magnetic Materials and Technologies for Medical Applications 437 467 .
N. Joseph Singh, Boris Wareppam & L. Herojit Singh. 2022. Advances in Nanostructured Materials. Advances in Nanostructured Materials 131 143 .
Richa Chaudhary & Varun Chaudhary. 2022. Nanomaterials for Cancer Detection Using Imaging Techniques and Their Clinical Applications. Nanomaterials for Cancer Detection Using Imaging Techniques and Their Clinical Applications 91 114 .
Xiang Yu, Shan Gao, Di'an Wu, Zhengrui Li, Yan Mi, Tianyu Yang, Fan Sun, Lichen Wang, Ruoshui Liu, Shuli He, Qinggang Ge, Yang Lv, Andy (Yuanguang) Xu & Hao Zeng. (2021) Bone Tumor Suppression in Rabbits by Hyperthermia below the Clinical Safety Limit Using Aligned Magnetic Bone Cement. Small 18:3.
Crossref
Costas Papadopoulos, Argiris Kolokithas‐Ntoukas, Roberto Moreno, David Fuentes, George Loudos, Vassilios C. Loukopoulos & George C. Kagadis. (2021) Using kinetic Monte Carlo simulations to design efficient magnetic nanoparticles for clinical hyperthermia. Medical Physics 49:1, pages 547-567.
Crossref
P Schier, A Coene, A Jaufenthaler & D Baumgarten. (2021) Evaluating selection criteria for optimized excitation coils in magnetorelaxometry imaging. Physics in Medicine & Biology 66:23, pages 235001.
Crossref
Anil K. Bastola & Mokarram Hossain. (2021) The shape – morphing performance of magnetoactive soft materials. Materials & Design 211, pages 110172.
Crossref
Ala Manohar, V. Vijayakanth & Ki Hyeon Kim. (2021) Influence of Ca doping on ZnFe2O4 nanoparticles magnetic hyperthermia and cytotoxicity study. Journal of Alloys and Compounds 886, pages 161276.
Crossref
Dalal Alromi, Seyed Madani & Alexander Seifalian. (2021) Emerging Application of Magnetic Nanoparticles for Diagnosis and Treatment of Cancer. Polymers 13:23, pages 4146.
Crossref
A. Shahid, M. M. Bhatti, O. Anwar Bég, I. L. Animasaun & Khurram Javid. (2021) Spectral computation of reactive bi-directional hydromagnetic non-Newtonian convection flow from a stretching upper parabolic surface in non-Darcyporous medium. International Journal of Modern Physics B 35:29.
Crossref
Rishabha Malviya, Shivkanya Fuloria, Swati Verma, Vetriselvan Subramaniyan, Kathiresan V. Sathasivam, Vinoth Kumarasamy, Darnal Hari Kumar, Shalini Vellasamy, Dhanalekshmi Unnikrishnan Meenakshi, Shikha Yadav, Akanksha Sharma & Neeraj Kumar Fuloria. (2021) Commercial utilities and future perspective of nanomedicines. PeerJ 9, pages e12392.
Crossref
Diana Boraschi, Dongjie Li, Yang Li & Paola Italiani. (2021) In Vitro and In Vivo Models to Assess the Immune-Related Effects of Nanomaterials. International Journal of Environmental Research and Public Health 18:22, pages 11769.
Crossref
Mauro Petretta, Alessandro Gambardella, Giovanna Desando, Carola Cavallo, Isabella Bartolotti, Tatiana Shelyakova, Vitaly Goranov, Marco Brucale, Valentin Alek Dediu, Milena Fini & Brunella Grigolo. (2021) Multifunctional 3D-Printed Magnetic Polycaprolactone/Hydroxyapatite Scaffolds for Bone Tissue Engineering. Polymers 13:21, pages 3825.
Crossref
Narges Elahi & Muhammad Rizwan. (2021) Progress and prospects of magnetic iron oxide nanoparticles in biomedical applications: A review. Artificial Organs 45:11, pages 1272-1299.
Crossref
Guguloth Naresh, J P Borah, C Borgohain & N Paul. (2021) Synthesis, characterization and effect of dopant on magnetic hyperthermic efficacy of Gd 2 O 3 nanoparticles . Materials Research Express 8:11, pages 115014.
Crossref
Nurettin Sezer, İbrahim Arı, Yusuf Biçer & Muammer Koç. (2021) Superparamagnetic nanoarchitectures: Multimodal functionalities and applications. Journal of Magnetism and Magnetic Materials 538, pages 168300.
Crossref
Tongwei Zhang, Huangtao Xu, Jia Liu, Yongxin Pan & Changqian Cao. (2021) Determination of the heating efficiency of magnetotactic bacteria in alternating magnetic field. Journal of Oceanology and Limnology 39:6, pages 2116-2126.
Crossref
Zhi Wei Tay, Prashant Chandrasekharan, Benjamin D. Fellows, Irati Rodrigo Arrizabalaga, Elaine Yu, Malini Olivo & Steven M. Conolly. (2021) Magnetic Particle Imaging: An Emerging Modality with Prospects in Diagnosis, Targeting and Therapy of Cancer. Cancers 13:21, pages 5285.
Crossref
Helena Gavilán, Sahitya Kumar Avugadda, Tamara Fernández-Cabada, Nisarg Soni, Marco Cassani, Binh T. Mai, Roy Chantrell & Teresa Pellegrino. (2021) Magnetic nanoparticles and clusters for magnetic hyperthermia: optimizing their heat performance and developing combinatorial therapies to tackle cancer. Chemical Society Reviews 50:20, pages 11614-11667.
Crossref
Stefano Persano, Francesco Vicini, Alessandro Poggi, Jordi Leonardo Castrillo Fernandez, Giusy Maria Rita Rizzo, Helena Gavilán, Niccolo Silvestri & Teresa Pellegrino. (2021) Elucidating the Innate Immunological Effects of Mild Magnetic Hyperthermia on U87 Human Glioblastoma Cells: An In Vitro Study. Pharmaceutics 13:10, pages 1668.
Crossref
Alireza Ashofteh Yazdi, Antonio Callejas Zafra, Pablo Moreno, Rafa Munoz & Juan Melchor. (2021) A Numerical Approach to the Magnetic Nanoparticle Hyperthermia. A Numerical Approach to the Magnetic Nanoparticle Hyperthermia.
Neeharika Senthilkumar, Preetam Kumar Sharma, Neeru Sood & Nikhil Bhalla. (2021) Designing magnetic nanoparticles for in vivo applications and understanding their fate inside human body. Coordination Chemistry Reviews 445, pages 214082.
Crossref
Hayoon Jeong, Wooram Park, Dong-Hyun Kim & Kun Na. (2021) Dynamic nanoassemblies of nanomaterials for cancer photomedicine. Advanced Drug Delivery Reviews 177, pages 113954.
Crossref
Armin Rezanezhad, Abdollah Hajalilou, Farhad Eslami, Elahe Parvini, Ebrahim Abouzari-Lotf & Bagher Aslibeiki. (2021) Superparamagnetic magnetite nanoparticles for cancer cells treatment via magnetic hyperthermia: effect of natural capping agent, particle size and concentration. Journal of Materials Science: Materials in Electronics 32:19, pages 24026-24040.
Crossref
Liudmyla Storozhuk, Maximilian O. Besenhard, Stefanos Mourdikoudis, Alec P. LaGrow, Martin R. Lees, Le Duc Tung, Asterios Gavriilidis & Nguyen Thi Kim Thanh. (2021) Stable Iron Oxide Nanoflowers with Exceptional Magnetic Heating Efficiency: Simple and Fast Polyol Synthesis. ACS Applied Materials & Interfaces 13:38, pages 45870-45880.
Crossref
David Egea-Benavente, Jesús G. Ovejero, María del Puerto Morales & Domingo F. Barber. (2021) Understanding MNPs Behaviour in Response to AMF in Biological Milieus and the Effects at the Cellular Level: Implications for a Rational Design That Drives Magnetic Hyperthermia Therapy toward Clinical Implementation. Cancers 13:18, pages 4583.
Crossref
Tingbin Zhang, Galong Li, Yuqing Miao, Junjie Lu, Ningqiang Gong, Yifan Zhang, Yuantai Sun, Yuan He, Mingli Peng, Xiaoli Liu, Xing-Jie Liang & Haiming Fan. (2021) Magnetothermal regulation of in vivo protein corona formation on magnetic nanoparticles for improved cancer nanotherapy. Biomaterials 276, pages 121021.
Crossref
Michael Peller, Arianna Lanza & Stefan Wuttke. (2021) MRI‐Active Metal‐Organic Frameworks: Concepts for the Translation from Lab to Clinic. Advanced Therapeutics 4:9.
Crossref
Costica Caizer. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 430 463 .
Barbara Freis, Geoffrey Cotin, Francis Perton, Damien Mertz, Sebastien Boutry, Sophie Laurent & Sylvie Begin‐Colin. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 380 429 .
Barid Baran Lahiri, Surojit Ranoo, Fouzia Khan & John Philip. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 250 271 .
Dawn Blazer, Yohannes Getahun & Ahmed A. El‐Gendy. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 201 230 .
Riccardo Ferrero, Gabriele Barrera, Federica Celegato, Marta Vicentini, Hüseyin Sözeri, Nuray Yıldız, Ceren Atila Dinçer, Marco Coïsson, Alessandra Manzin & Paola Tiberto. (2021) Experimental and Modelling Analysis of the Hyperthermia Properties of Iron Oxide Nanocubes. Nanomaterials 11:9, pages 2179.
Crossref
Shahin Akbari, Nima Hasanvand, Sadegh Sadeghi, Mehdi Bidabadi & Qingang Xiong. (2021) Mathematical modeling of the production of magnetic nanoparticles through counter-flow non-premixed combustion for biomedical applications. International Journal of Numerical Methods for Heat & Fluid Flow 31:8, pages 2436-2461.
Crossref
Giacomo Della Camera, Mariusz Madej, Anna Maria Ferretti, Rita La Spina, Yang Li, Annunziata Corteggio, Tommaso Heinzl, Benjamin J. Swartzwelter, Gergö Sipos, Sabrina Gioria, Alessandro Ponti, Diana Boraschi & Paola Italiani. (2021) Personalised Profiling of Innate Immune Memory Induced by Nano-Imaging Particles in Human Monocytes. Frontiers in Immunology 12.
Crossref
Fumie Hirosawa & Tomohiro Iwasaki. (2021) A comparative study of the magnetic induction heating properties of rare earth (RE = Y, La, Ce, Pr, Nd, Gd and Yb)-substituted magnesium–zinc ferrites. Solid State Sciences 118, pages 106655.
Crossref
Magda A. Antoniak, Robert Pązik, Urszula Bazylińska, Kamil Wiwatowski, Anna Tomaszewska, Magdalena Kulpa-Greszta, Jagoda Adamczyk-Grochala, Maciej Wnuk, Sebastian Maćkowski, Anna Lewińska & Marcin Nyk. (2021) Multimodal polymer encapsulated CdSe/Fe3O4 nanoplatform with improved biocompatibility for two-photon and temperature stimulated bioapplications. Materials Science and Engineering: C 127, pages 112224.
Crossref
Sangeeta Kumari, Nilesh Sharma & Shivendra V. Sahi. (2021) Advances in Cancer Therapeutics: Conventional Thermal Therapy to Nanotechnology-Based Photothermal Therapy. Pharmaceutics 13:8, pages 1174.
Crossref
Lucija Mandić, Anja Sadžak, Ina Erceg, Goran Baranović & Suzana Šegota. (2021) The Fine-Tuned Release of Antioxidant from Superparamagnetic Nanocarriers under the Combination of Stationary and Alternating Magnetic Fields. Antioxidants 10:8, pages 1212.
Crossref
Mylla C. Ferreira, Bruno Pimentel, Vivian Andrade, Vladimir Zverev, Radel R. Gimaev, Andrei S. Pomorov, Alexander Pyatakov, Yulia Alekhina, Aleksei Komlev, Liudmila Makarova, Nikolai Perov & Mario S. Reis. (2021) Understanding the Dependence of Nanoparticles Magnetothermal Properties on Their Size for Hyperthermia Applications: A Case Study for La-Sr Manganites. Nanomaterials 11:7, pages 1826.
Crossref
Jun-Jie Su, Jun Wang & Guo-Dong Xia. (2021) Effect of the particle temperature on lift force of nanoparticle in a shear rarefied flow*. Chinese Physics B 30:7, pages 075101.
Crossref
Ruby Gupta & Deepika Sharma. (2021) Therapeutic response differences between 2D and 3D tumor models of magnetic hyperthermia. Nanoscale Advances 3:13, pages 3663-3680.
Crossref
Razyeh Behbahani, Martin L Plumer & Ivan Saika-Voivod. (2021) Multiscale modelling of magnetostatic effects on magnetic nanoparticles with application to hyperthermia. Journal of Physics: Condensed Matter 33:21, pages 215801.
Crossref
Idoia Castellanos-Rubio, Oihane Arriortua, Lourdes Marcano, Irati Rodrigo, Daniela Iglesias-Rojas, Ander Barón, Ane Olazagoitia-Garmendia, Luca Olivi, Fernando Plazaola, M. Luisa Fdez-Gubieda, Ainara Castellanos-Rubio, José S. Garitaonandia, Iñaki Orue & Maite Insausti. (2021) Shaping Up Zn-Doped Magnetite Nanoparticles from Mono- and Bimetallic Oleates: The Impact of Zn Content, Fe Vacancies, and Morphology on Magnetic Hyperthermia Performance. Chemistry of Materials 33:9, pages 3139-3154.
Crossref
Ruby Gupta, Ruchi Tomar, Suvankar Chakraverty & Deepika Sharma. (2021) Effect of manganese doping on the hyperthermic profile of ferrite nanoparticles using response surface methodology. RSC Advances 11:28, pages 16942-16954.
Crossref
Kuo-Chi Liu & Tse-Min Chen. (2021) Comparative study of heat transfer and thermal damage assessment models for hyperthermia treatment. Journal of Thermal Biology 98, pages 102907.
Crossref
Moe Kubota, Taishi Yokoi, Tomoyuki Ogawa, Shin Saito, Maiko Furuya, Kotone Yokota, Hiroyasu Kanetaka, Balachandran Jeyadevan & Masakazu Kawashita. (2021) In-vitro heat-generating and apatite-forming abilities of PMMA bone cement containing TiO2 and Fe3O4. Ceramics International 47:9, pages 12292-12299.
Crossref

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