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Editorial

Magnetic nanoparticle hyperthermia: A new frontier in biology and medicine?

Pages 703-705 | Published online: 12 Nov 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (16)

Sri Kamal Kandala, Anirudh Sharma, Sahar Mirpour, Eleni Liapi, Robert Ivkov & Anilchandra Attaluri. (2021) Validation of a coupled electromagnetic and thermal model for estimating temperatures during magnetic nanoparticle hyperthermia. International Journal of Hyperthermia 38:1, pages 611-622.
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Harley F. Rodrigues, Gustavo Capistrano & Andris F. Bakuzis. (2020) In vivo magnetic nanoparticle hyperthermia: a review on preclinical studies, low-field nano-heaters, noninvasive thermometry and computer simulations for treatment planning. International Journal of Hyperthermia 37:3, pages 76-99.
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Chun-Ting Yang, Preethi Korangath, Jackie Stewart, Chen Hu, Wei Fu, Cordula Grüttner, Sarah E. Beck, Feng-Huei Lin & Robert Ivkov. (2020) Systemically delivered antibody-labeled magnetic iron oxide nanoparticles are less toxic than plain nanoparticles when activated by alternating magnetic fields. International Journal of Hyperthermia 37:3, pages 59-75.
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Paul R. Stauffer, Dario B. Rodrigues, Robert Goldstein, Thinh Nguyen, Yan Yu, Shuying Wan, Richard Woodward, Michael Gibbs, Ilya L. Vasilchenko, Alexey M. Osintsev, Voichita Bar-Ad, Dennis B. Leeper, Wenyin Shi, Kevin D. Judy & Mark D. Hurwitz. (2020) Feasibility of removable balloon implant for simultaneous magnetic nanoparticle heating and HDR brachytherapy of brain tumor resection cavities. International Journal of Hyperthermia 37:1, pages 1189-1201.
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Anilchandra Attaluri, John Jackowski, Anirudh Sharma, Sri Kamal Kandala, Valentin Nemkov, Chris Yakey, Theodore L. DeWeese, Ananda Kumar, Robert C. Goldstein & Robert Ivkov. (2020) Design and construction of a Maxwell-type induction coil for magnetic nanoparticle hyperthermia. International Journal of Hyperthermia 37:1, pages 1-14.
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Willie O Pinheiro, Maria L Fascineli, Gabriel R Farias, Frederico H Horst, Laise Rodrigues de Andrade, Luis Henrique Corrêa, Kelly Grace Magalhães, Marcelo Henrique Sousa, Marcos C de Almeida, Ricardo B Azevedo & Zulmira G M Lacava. (2019) The influence of female mice age on biodistribution and biocompatibility of citrate-coated magnetic nanoparticles. International Journal of Nanomedicine 14, pages 3375-3388.
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Arlene L. Oei, Preethi Korangath, Kathleen Mulka, Mikko Helenius, Jonathan B. Coulter, Jacqueline Stewart, Esteban Velarde, Johannes Crezee, Brian Simons, Lukas J. A. Stalpers, H. Petra Kok, Kathleen Gabrielson, Nicolaas A. P. Franken & Robert Ivkov. (2019) Enhancing the abscopal effect of radiation and immune checkpoint inhibitor therapies with magnetic nanoparticle hyperthermia in a model of metastatic breast cancer. International Journal of Hyperthermia 36:sup1, pages 47-63.
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Sri Kamal Kandala, Eleni Liapi, Louis L. Whitcomb, Anilchandra Attaluri & Robert Ivkov. (2019) Temperature-controlled power modulation compensates for heterogeneous nanoparticle distributions: a computational optimization analysis for magnetic hyperthermia. International Journal of Hyperthermia 36:1, pages 115-129.
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David Padilla-Valverde, Susana Sanchez-Garcia, Esther García-Santos, Carlos Marcote-Ibañez, Mercedes Molina-Robles, Jesús Martín-Fernández & Pedro Villarejo-Campos. (2017) Usefulness of thermographic analysis to control temperature homogeneity in the development and implementation of a closed recirculating CO2 chemohyperthermia model. International Journal of Hyperthermia 33:2, pages 220-226.
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Mohammad Mahdi Attar, Saeid Amanpour, Mohammad Haghpanahi, Mahnaz Haddadi, Gita Rezaei, Samad Muhammadnejad, Mehran HajiAkhoundzadeh, Tahereh Barati, Fatemeh Sadeghi & Saba Javadi. (2016) Thermal analysis of magnetic nanoparticle in alternating magnetic field on human HCT-116 colon cancer cell line. International Journal of Hyperthermia 32:8, pages 858-867.
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Anilchandra Attaluri, Madhav Seshadri, Sahar Mirpour, Michele Wabler, Thomas Marinho, Muhammad Furqan, Haoming Zhou, Silvia De Paoli, Cordula Gruettner, Wesley Gilson, Theodore DeWeese, Monica Garcia, Robert Ivkov & Eleni Liapi. (2016) Image-guided thermal therapy with a dual-contrast magnetic nanoparticle formulation: A feasibility study. International Journal of Hyperthermia 32:5, pages 543-557.
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Mahendran Subramanian, Arkadiusz Miaskowski, Gillian Pearce & Jon Dobson. (2016) A coil system for real-time magnetic fluid hyperthermia microscopy studies. International Journal of Hyperthermia 32:2, pages 112-120.
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Mark W. Dewhirst, Chen-Ting Lee & Kathleen A. Ashcraft. (2016) The future of biology in driving the field of hyperthermia. International Journal of Hyperthermia 32:1, pages 4-13.
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Christian Ndong, Seiko Toraya-Brown, Katsiaryna Kekalo, Ian Baker, Tillman U Gerngross, Steven N Fiering & Karl E Griswold. (2015) Antibody-mediated targeting of iron oxide nanoparticles to the folate receptor alpha increases tumor cell association in vitro and in vivo. International Journal of Nanomedicine 10, pages 2595-2617.
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Elaheh Esmaelbeygi, Samideh Khoei, Sepideh Khoee & Samira Eynali. (2015) Role of iron oxide core of polymeric nanoparticles in the thermosensitivity of colon cancer cell line HT-29. International Journal of Hyperthermia 31:5, pages 489-497.
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Anilchandra Attaluri, Sri Kamal Kandala, Michele Wabler, Haoming Zhou, Christine Cornejo, Michael Armour, Mohammad Hedayati, Yonggang Zhang, Theodore L. DeWeese, Cila Herman & Robert Ivkov. (2015) Magnetic nanoparticle hyperthermia enhances radiation therapy: A study in mouse models of human prostate cancer. International Journal of Hyperthermia 31:4, pages 359-374.
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Ali F. Abu-Bakr & Andrey Yu. Zubarev. (2023) Effect of ferroparticles clustering on magnetic hyperthermia in non-liquid systems. The European Physical Journal Special Topics 232:8, pages 1321-1332.
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Izabell Crăciunescu, George Marian Ispas, Alexandra Ciorîța, Cristian Leoștean, Erzsébet Illés & Rodica Paula Turcu. (2023) Novel Magnetic Composite Materials for Dental Structure Restoration Application. Nanomaterials 13:7, pages 1215.
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Chiang-Wen Lee, Ming-Hsien Chiang, Wen-Chun Wei, Shu-Hsien Liao, Yen-Bin Liu, Kuan-Chih Huang, Kuen-Lin Chen, Wen-Cheng Kuo, Yuan-Ching Sung, Ting-Yuan Chen, Ju-Fang Liu, Yao-Chang Chiang, Hsin-Nung Shih, Kuo-Ti Peng & Jen-Jie Chieh. (2022) Highly efficient magnetic ablation and the contrast of various imaging using biocompatible liquid–metal gallium. BioMedical Engineering OnLine 21:1.
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Sean Healy, Andris F. Bakuzis, Patrick W. Goodwill, Anilchandra Attaluri, Jeff W. M. Bulte & Robert Ivkov. (2022) Clinical magnetic hyperthermia requires integrated magnetic particle imaging. WIREs Nanomedicine and Nanobiotechnology 14:3.
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Alexey M. Osintsev, Ilya L. Vasilchenko, Dario B. Rodrigues, Paul R. Stauffer, Vladimir I. Braginsky, Vitaliy V. Rynk, Egor S. Gromov, Alexander Yu. Prosekov, Andrey D. Kaprin & Andrey A. Kostin. (2021) Characterization of Ferromagnetic Composite Implants for Tumor Bed Hyperthermia. IEEE Transactions on Magnetics 57:9, pages 1-8.
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Pierre Agnass, Hans M. Rodermond, Remko Zweije, Jan Sijbrands, Jantien A. Vogel, Krijn P. van Lienden, Thomas M. van Gulik, Eran van Veldhuisen, Nicolaas A. P. Franken, Arlene L. Oei, H. Petra Kok, Marc G. Besselink & Johannes Crezee. (2020) HyCHEED System for Maintaining Stable Temperature Control during Preclinical Irreversible Electroporation Experiments at Clinically Relevant Temperature and Pulse Settings. Sensors 20:21, pages 6227.
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Arunima Rajan, Madhulika Sharma & Niroj Kumar Sahu. (2020) Assessing magnetic and inductive thermal properties of various surfactants functionalised Fe3O4 nanoparticles for hyperthermia. Scientific Reports 10:1.
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B. Zhang, L.H. Zhou, S. Zhao & S. Asuha. (2020) Direct synthesis of 3D flower-like maghemite particles and their properties. Journal of Alloys and Compounds 817, pages 152802.
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Frederik Soetaert, Preethi Korangath, David Serantes, Steven Fiering & Robert Ivkov. (2020) Cancer therapy with iron oxide nanoparticles: Agents of thermal and immune therapies. Advanced Drug Delivery Reviews 163-164, pages 65-83.
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Nanasaheb D. Thorat, Syed A. M. Tofail, Brigitte von Rechenberg, Helen Townley, Grace Brennan, Christophe Silien, Hemraj M. Yadav, Thomas Steffen & Joanna Bauer. (2019) Physically stimulated nanotheranostics for next generation cancer therapy: Focus on magnetic and light stimulations. Applied Physics Reviews 6:4.
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Arkadiusz Miaskowski & Mahendran Subramanian. (2019) Numerical Model for Magnetic Fluid Hyperthermia in a Realistic Breast Phantom: Calorimetric Calibration and Treatment Planning. International Journal of Molecular Sciences 20:18, pages 4644.
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S.I. El-Dek, Maha A. Ali, Sara M. El-Zanaty & Shehab E. Ahmed. (2018) Comparative investigations on ferrite nanocomposites for magnetic hyperthermia applications. Journal of Magnetism and Magnetic Materials 458, pages 147-155.
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Rong Fu, Yuying Yan, Clive Roberts, Zeyu Liu & Yiyi Chen. (2018) The role of dipole interactions in hyperthermia heating colloidal clusters of densely-packed superparamagnetic nanoparticles. Scientific Reports 8:1.
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Ilya Vasilchenko, Ilya Vasilchenko, Alexey Osintsev, Alexey OsintsevPaul Stauffer, Paul Stauffer, Ilya Loyko, Ilya Loyko, Dmitriy Pastushenko, Dmitriy Pastushenko, Olga Zharkova, Olga Zharkova, Vladimir Braginsky, Vladimir BraginskyVitaliy Rynk, Vitaliy RynkNatalia Vasilchenko & Natalia Vasilchenko. (2017) PRELIMINARY TESTS OF LOCAL HYPERTHERMIA BASED ON INDUCTIVELY HEATED TUMOR BED IMPLANT. Science Evolution, pages 15-21.
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Shayandev Sinha, Haoyuan Jing, Harnoor Singh Sachar & Siddhartha Das. (2017) Role of plasma membrane surface charges in dictating the feasibility of membrane-nanoparticle interactions. Applied Physics Letters 111:26.
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M. Pilar Calatayud, Elisa Soler, Teobaldo E. Torres, Enrique Campos-Gonzalez, Concepción Junquera, M. Ricardo Ibarra & Gerardo F. Goya. (2017) Cell damage produced by magnetic fluid hyperthermia on microglial BV2 cells. Scientific Reports 7:1.
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Frederik Soetaert, Sri Kamal Kandala, Andris Bakuzis & Robert Ivkov. (2017) Experimental estimation and analysis of variance of the measured loss power of magnetic nanoparticles. Scientific Reports 7:1.
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Eva Natividad & Irene Andreu. (2017) Omitting the need of external heat capacity data in an adiabatic magnetothermal setup devoted to the characterization of nanomaterials for magnetic hyperthermia. Applied Thermal Engineering 117, pages 409-416.
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Linjie Chen, Changyou Chen, Pingping Wang & Tao Song. (2017) Mechanisms of Cellular Effects Directly Induced by Magnetic Nanoparticles under Magnetic Fields. Journal of Nanomaterials 2017, pages 1-13.
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P. Guardia, S. Nitti, M. E. Materia, G. Pugliese, N. Yaacoub, J.-M. Greneche, C. Lefevre, L. Manna & T. Pellegrino. (2017) Gold–iron oxide dimers for magnetic hyperthermia: the key role of chloride ions in the synthesis to boost the heating efficiency. Journal of Materials Chemistry B 5:24, pages 4587-4594.
Crossref
Paul R Stauffer, Ilya L Vasilchenko, Aleksey M Osintsev, Dario B Rodrigues, Voichita Bar-Ad, Mark D Hurwitz & Sergey A Kolomiets. (2016) Tumor bed brachytherapy for locally advanced laryngeal cancer: a feasibility assessment of combination with ferromagnetic hyperthermia. Biomedical Physics & Engineering Express 2:5, pages 055002.
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Z. Nemati, J. Alonso, L. M. Martinez, H. Khurshid, E. Garaio, J. A. Garcia, M. H. Phan & H. Srikanth. (2016) Enhanced Magnetic Hyperthermia in Iron Oxide Nano-Octopods: Size and Anisotropy Effects. The Journal of Physical Chemistry C 120:15, pages 8370-8379.
Crossref
Mark Dewhirst, Paul R. Stauffer, Shiva Das, Oana I. Craciunescu & Zeljko Vujaskovic. 2016. Clinical Radiation Oncology. Clinical Radiation Oncology 381 398.e6 .
Dmitri Artemov & Zaver M. Bhujwalla. 2016. Intracellular Delivery III. Intracellular Delivery III 301 322 .
R. Fu, Y. Y. Yan & C. Roberts. (2015) Study of the effect of dipole interactions on hyperthermia heating the cluster composed of superparamagnetic nanoparticles. AIP Advances 5:12.
Crossref
E. A. Périgo, G. Hemery, O. Sandre, D. Ortega, E. Garaio, F. Plazaola & F. J. Teran. (2015) Fundamentals and advances in magnetic hyperthermia. Applied Physics Reviews 2:4, pages 041302.
Crossref
Ivan Conde-Leboran, Daniel Baldomir, Carlos Martinez-Boubeta, Oksana Chubykalo-Fesenko, María del Puerto Morales, Gorka Salas, David Cabrera, Julio Camarero, Francisco J. Teran & David Serantes. (2015) A Single Picture Explains Diversity of Hyperthermia Response of Magnetic Nanoparticles. The Journal of Physical Chemistry C 119:27, pages 15698-15706.
Crossref

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