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Review

Magnetic hyperthermia therapy for the treatment of glioblastoma: a review of the therapy’s history, efficacy and application in humans

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Pages 1316-1328 | Received 17 Jul 2017, Accepted 17 Jan 2018, Published online: 06 Feb 2018

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Maria V. Shestovskaya, Anna L. Luss, Olga A. Bezborodova, Valentin V. Makarov & Anton A. Keskinov. (2023) Iron Oxide Nanoparticles in Cancer Treatment: Cell Responses and the Potency to Improve Radiosensitivity. Pharmaceutics 15:10, pages 2406.
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
Zuorun Xie, Maosong Chen, Jiangfang Lian, Hongcai Wang & Jingyun Ma. (2023) Glioblastoma-on-a-chip construction and therapeutic applications. Frontiers in Oncology 13.
Crossref
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Xiaobin Chen, Hancheng Wang, Jiayue Shi, Zhiyong Chen, Yaoben Wang, Siyi Gu, Ye Fu, Jiale Huang, Jiandong Ding & Lin Yu. (2023) An injectable and active hydrogel induces mutually enhanced mild magnetic hyperthermia and ferroptosis. Biomaterials 298, pages 122139.
Crossref
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Crossref
Taahirah Boltman, Mervin Meyer & Okobi Ekpo. (2023) Diagnostic and Therapeutic Approaches for Glioblastoma and Neuroblastoma Cancers Using Chlorotoxin Nanoparticles. Cancers 15:13, pages 3388.
Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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Crossref
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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
Binh T. Mai, John S. Conteh, Helena Gavilán, Alessandro Di Girolamo & Teresa Pellegrino. (2022) Clickable Polymer Ligand-Functionalized Iron Oxide Nanocubes: A Promising Nanoplatform for ‘Local Hot Spots’ Magnetically Triggered Drug Release. ACS Applied Materials & Interfaces 14:43, pages 48476-48488.
Crossref
Faraz Ahmad, Ressin Varghese, Subhrajita Panda, Siva Ramamoorthy, Mohammad Y. Areeshi, Sharmila Fagoonee & Shafiul Haque. (2022) Smart Nanoformulations for Brain Cancer Theranostics: Challenges and Promises. Cancers 14:21, pages 5389.
Crossref
Bin Li, Yuexia Han, Yang Liu & Fang Yang. (2022) Fine-tuned magnetic nanobubbles for magnetic hyperthermia treatment of glioma cells. Biointerphases 17:6.
Crossref
David Cabrera, Maneea Eizadi Sharifabad, Jacob A. Ranjbar, Neil D. Telling & Alan G.S. Harper. (2022) Clot‐targeted magnetic hyperthermia permeabilizes blood clots to make them more susceptible to thrombolysis. Journal of Thrombosis and Haemostasis 20:11, pages 2556-2570.
Crossref
N. Nuñez, M. Raineri, H.E. Troiani, D. Tobia, R.D. Zysler, E. LimaJrJr & E.L. Winkler. (2022) Zinc ferrite nanoparticles embedded in hydroxyapatite for magnetic hyperthermia and sensitive to ionizing radiation. Journal of Alloys and Compounds 920, pages 165887.
Crossref
Elham Aram, Masome Moeni, Roya Abedizadeh, Davood Sabour, Hamid Sadeghi-Abandansari, Jabbar Gardy & Ali Hassanpour. (2022) Smart and Multi-Functional Magnetic Nanoparticles for Cancer Treatment Applications: Clinical Challenges and Future Prospects. Nanomaterials 12:20, pages 3567.
Crossref
D.M. Clarke, C. Marquina, D.C. Lloyd & G. Vallejo-Fernandez. (2022) Effect of the distribution of anisotropy constants on the magnetic properties of iron oxide nanoparticles. Journal of Magnetism and Magnetic Materials 559, pages 169543.
Crossref
Pratik Chakraborty, Sabya Sachi Das, Abhijit Dey, Apala Chakraborty, Chiranjib Bhattacharyya, Ramesh Kandimalla, Biswajit Mukherjee, Abilash Valsala Gopalakrishnan, Sandeep Kumar Singh, Shubham Kant, Parma Nand, Shreesh Ojha, Pravir Kumar, Niraj Kumar Jha, Saurabh Kumar Jha & Saikat Dewanjee. (2022) Quantum dots: The cutting-edge nanotheranostics in brain cancer management. Journal of Controlled Release 350, pages 698-715.
Crossref
Elham Rostami. (2021) Recent achievements in sodium alginate-based nanoparticles for targeted drug delivery. Polymer Bulletin 79:9, pages 6885-6904.
Crossref
Sumiao Pang, Anshika Kapur, Keri Zhou, Pavlos Anastasiadis, Nicholas Ballirano, Anthony J. Kim, Jeffrey A. Winkles, Graeme F. Woodworth & Huang‐Chiao Huang. (2022) Nanoparticle‐assisted, image‐guided laser interstitial thermal therapy for cancer treatment. WIREs Nanomedicine and Nanobiotechnology 14:5.
Crossref
Anirudh Sharma, Erik Cressman, Anilchandra Attaluri, Dara L. Kraitchman & Robert Ivkov. (2022) Current Challenges in Image-Guided Magnetic Hyperthermia Therapy for Liver Cancer. Nanomaterials 12:16, pages 2768.
Crossref
Masoumeh Kalantari Khandani & Azadeh Vosoughi. (2022) A Review of Enabling Technologies for Magnetic Particle Imaging. A Review of Enabling Technologies for Magnetic Particle Imaging.
Roger Borges, Ana Carolina S. Souza, Luis A. Genova, Joel MachadoJr.Jr., Giselle Z. Justo & Juliana Marchi. 2022. Bioactive Glasses and Glass‐Ceramics. Bioactive Glasses and Glass‐Ceramics 537 579 .
Y. I. Golovin, Alexander O. Zhigachev, N. L. Klyachko & D. Y. Golovin. (2022) Controlled localization of magnetic nanoparticle mechanical activation in suspension exposed to alternating magnetic field using gradient magnetic field. Journal of Nanoparticle Research 24:8.
Crossref
Ahmad Abulfathi Umar, Muhamad Fazly Abdul Patah, Faisal Abnisa & Wan Mohd Ashri Wan Daud. (2022) Preparation of magnetized iron oxide grafted on graphene oxide for hyperthermia application. Reviews in Chemical Engineering 38:5, pages 569-601.
Crossref
Shahbaz Ahmed, Sayeed Ur Rehman & Mohammad Tabish. (2022) Cancer nanomedicine: A step towards improving the drug delivery and enhanced efficacy of chemotherapeutic drugs. OpenNano 7, pages 100051.
Crossref
Sergey L. Gribanovsky, Alexander O. Zhigachev, Dmitry Yu Golovin, Yuri I. Golovin & Natalia L. Klyachko. (2022) Mechanisms and conditions for mechanical activation of magnetic nanoparticles by external magnetic field for biomedical applications. Journal of Magnetism and Magnetic Materials 553, pages 169278.
Crossref
Fábio A. C. Lopes, André V. F. Fernandes, Juliana M. Rodrigues, Maria-João R. P. Queiroz, Bernardo G. Almeida, Ana Pires, André M. Pereira, João P. Araújo, Elisabete M. S. Castanheira, Ana Rita O. Rodrigues & Paulo J. G. Coutinho. (2022) Magnetoliposomes Containing Multicore Nanoparticles and a New Antitumor Thienopyridine Compound with Potential Application in Chemo/Thermotherapy. Biomedicines 10:7, pages 1547.
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
Francisco Rodríguez, Pablo Caruana, Noa De la Fuente, Pía Español, María Gámez, Josep Balart, Elisa Llurba, Ramón Rovira, Raúl Ruiz, Cristina Martín-Lorente, José Luis Corchero & María Virtudes Céspedes. (2022) Nano-Based Approved Pharmaceuticals for Cancer Treatment: Present and Future Challenges. Biomolecules 12:6, pages 784.
Crossref
Bingbing Cheng, Chenchen Bing, Tak Ho Chu, Saud Alzahrani, Samuel Pichardo & G Bruce Pike. (2022) Simultaneous Localized Brain Mild Hyperthermia and Blood-Brain Barrier Opening via Feedback-Controlled Transcranial MR-Guided Focused Ultrasound and Microbubbles. IEEE Transactions on Biomedical Engineering 69:6, pages 1880-1888.
Crossref
G. Nandhini & M.K. Shobana. (2022) Role of ferrite nanoparticles in hyperthermia applications. Journal of Magnetism and Magnetic Materials 552, pages 169236.
Crossref
Jianfeng Bao, Shuangshuang Guo, Xiangyang Zu, Yuchuan Zhuang, Dandan Fan, Yong Zhang, Yupeng Shi, Xin Pang, Zhenyu Ji & Jingliang Cheng. (2022) Magnetic vortex nanoring coated with gadolinium oxide for highly enhanced T1-T2 dual-modality magnetic resonance imaging-guided magnetic hyperthermia cancer ablation. Biomedicine & Pharmacotherapy 150, pages 112926.
Crossref
Jingxin Liu, Zhihui Zhang, Qingguo Xie & Wenzhong Liu. (2022) Nonlinear dynamic thermometry: Temperature measurement using immobilized magnetic nanoparticles. Journal of Applied Physics 131:17.
Crossref
Asraa Faris Aldoghachi, Ahmed Faris Aldoghachi, Koen Breyne, King-Hwa Ling & Pike-See Cheah. (2022) Recent Advances in the Therapeutic Strategies of Glioblastoma Multiforme. Neuroscience 491, pages 240-270.
Crossref
Mitra Rafizadeh-Sourki & S.A. Hassanzadeh-Tabrizi. (2022) Facile synthesis of Zn0.5Ni0.5Fe2O4/carbon nanocomposite for hyperthermia and drug delivery applications. Diamond and Related Materials 125, pages 108993.
Crossref
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.
Crossref
Sergio Fiorito, Nisarg Soni, Niccolo' Silvestri, Rosaria Brescia, Helena Gavilán, John S. Conteh, Binh T. Mai & Teresa Pellegrino. (2022) Fe 3 O 4 @Au@Cu 2− x S Heterostructures Designed for Tri‐Modal Therapy: Photo‐ Magnetic Hyperthermia and 64 Cu Radio‐Insertion . Small 18:18.
Crossref
Renata Saha, Kai Wu, Robert P Bloom, Shuang Liang, Denis Tonini & Jian-Ping Wang. (2022) A review on magnetic and spintronic neurostimulation: challenges and prospects. Nanotechnology 33:18, pages 182004.
Crossref
Oleg A. Kulikov, Mikhail N. Zharkov, Valentin P. Ageev, Denis E. Yakobson, Vasilisa I. Shlyapkina, Andrey V. Zaborovskiy, Vera I. Inchina, Larisa A. Balykova, Alexander M. Tishin, Gleb B. Sukhorukov & Nikolay A. Pyataev. (2022) Magnetic Hyperthermia Nanoarchitectonics via Iron Oxide Nanoparticles Stabilised by Oleic Acid: Anti-Tumour Efficiency and Safety Evaluation in Animals with Transplanted Carcinoma. International Journal of Molecular Sciences 23:8, pages 4234.
Crossref
Yao Li, Xiaotu Ma, Xiaoli Liu, Yale Yue, Keman Cheng, Qiang Zhang, Guangjun Nie, Xiao Zhao & Lei Ren. (2022) Redox-Responsive Functional Iron Oxide Nanocrystals for Magnetic Resonance Imaging-Guided Tumor Hyperthermia Therapy and Heat-Mediated Immune Activation. ACS Applied Nano Materials 5:3, pages 4537-4549.
Crossref
Omid Sedighi, Amirhossein Alaghmandfard, Maziar Montazerian & Francesco Baino. (2021) A critical review of bioceramics for magnetic hyperthermia. Journal of the American Ceramic Society 105:3, pages 1723-1747.
Crossref
Ming-Hsien Chan, Wen-Tse Huang, Aishwarya Satpathy, Ting-Yi Su, Michael Hsiao & Ru-Shi Liu. (2022) Progress and Viewpoints of Multifunctional Composite Nanomaterials for Glioblastoma Theranostics. Pharmaceutics 14:2, pages 456.
Crossref
Arielly H. Alves, Mariana P. Nucci, Javier B. Mamani, Nicole M. E. Valle, Eduarda F. Ribeiro, Gabriel N. A. Rego, Fernando A. Oliveira, Matheus H. Theinel, Ricardo S. Santos & Lionel F. Gamarra. (2022) The Advances in Glioblastoma On-a-Chip for Therapy Approaches. Cancers 14:4, pages 869.
Crossref
Alvaro Gallo-Cordova, Jesus G. Ovejero, Ana M. Pablo-Sainz-Ezquerra, Jhon Cuya, Balachandran Jeyadevan, Sabino Veintemillas-Verdaguer, Pedro Tartaj & María del Puerto Morales. (2022) Unravelling an amine-regulated crystallization crossover to prove single/multicore effects on the biomedical and environmental catalytic activity of magnetic iron oxide colloids. Journal of Colloid and Interface Science 608, pages 1585-1597.
Crossref
Zhuo Chen, Shuang Song, Jing Ma, Si Da Ling, Yun Dong Wang, Tian Tian Kong & Jian Hong Xu. (2022) Fabrication of magnetic core/shell hydrogels via microfluidics for controlled drug delivery. Chemical Engineering Science 248, pages 117216.
Crossref
Francisco Silva, Alice D’Onofrio, Carolina Mendes, Catarina Pinto, Ana Marques, Maria Paula Cabral Campello, Maria Cristina Oliveira, Paula Raposinho, Ana Belchior, Salvatore Di Maria, Fernanda Marques, Carla Cruz, Josué Carvalho & António Paulo. (2022) Radiolabeled Gold Nanoseeds Decorated with Substance P Peptides: Synthesis, Characterization and In Vitro Evaluation in Glioblastoma Cellular Models. International Journal of Molecular Sciences 23:2, pages 617.
Crossref
Ayesha Nawaz, Muhammad Tayyab, Maryam Anwar, Qandeel Khalid, Nadia Shamshad Malik, Ainy Butt, Nayab Tahir, Shamoon Al Islam, Gul Shahna, Asadullah Madni & Mubashar Rehman. (2022) Magnetically Modulated Nanoparticles for Medical Application: Diagnosis, Drug Delivery, and Therapy. Materials Innovations 02:03, pages 101-114.
Crossref
Maryam Tajabadi, Iman Rahmani, Seyed Mohammad Mirkazemi & Hanif Goran Orimi. (2022) Insights into the synthesis optimization of Fe@SiO2 Core-Shell nanostructure as a highly efficient nano-heater for magnetic hyperthermia treatment. Advanced Powder Technology 33:1, pages 103366.
Crossref
Amol B. Pandhare, Rajendra P. Patil & Sagar D. Delekar. 2022. Advances in Metal Oxides and Their Composites for Emerging Applications. Advances in Metal Oxides and Their Composites for Emerging Applications 673 695 .
Garret Dee & Yurii K. Gun’ko. 2022. Magnetic Materials and Technologies for Medical Applications. Magnetic Materials and Technologies for Medical Applications 59 105 .
Yuan He, Xiaoyong Chen, Ye Zhang, Yanyun Wang, Mengyao Cui, Galong Li, Xiaoli Liu & Haiming Fan. (2021) Magnetoresponsive nanozyme: magnetic stimulation on the nanozyme activity of iron oxide nanoparticles. Science China Life Sciences 65:1, pages 184-192.
Crossref
N. Joseph Singh, Boris Wareppam & L. Herojit Singh. 2022. Advances in Nanostructured Materials. Advances in Nanostructured Materials 131 143 .
Sibani Sarkar, Malini Basu & Mrinal K. Ghosh. 2022. Handbook of Oxidative Stress in Cancer: Therapeutic Aspects. Handbook of Oxidative Stress in Cancer: Therapeutic Aspects 2615 2633 .
Sibani Sarkar, Malini Basu & Mrinal K. Ghosh. 2021. Handbook of Oxidative Stress in Cancer: Therapeutic Aspects. Handbook of Oxidative Stress in Cancer: Therapeutic Aspects 1 19 .
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
Masoud H. H. Tehrani, M. Soltani, Farshad Moradi Kashkooli, Mohammadreza Mahmoudi & Kaamran Raahemifar. (2021) Computational Modeling of Combination of Magnetic Hyperthermia and Temperature-Sensitive Liposome for Controlled Drug Release in Solid Tumor. Pharmaceutics 14:1, pages 35.
Crossref
Lijo P. Mona, Sandile P. Songca & Peter A. Ajibade. (2021) Synthesis and encapsulation of iron oxide nanorods for application in magnetic hyperthermia and photothermal therapy. Nanotechnology Reviews 11:1, pages 176-190.
Crossref
Natalia E. Kazantseva, Ilona S. Smolkova, Vladimir Babayan, Jarmila Vilčáková, Petr Smolka & Petr Saha. (2021) Magnetic Nanomaterials for Arterial Embolization and Hyperthermia of Parenchymal Organs Tumors: A Review. Nanomaterials 11:12, pages 3402.
Crossref
Yona Kim, Frederick S. Varn, Sung-Hye Park, Byung Woo Yoon, Hye Ran Park, Charles Lee, Roel G. W. Verhaak & Sun Ha Paek. (2021) Perspective of mesenchymal transformation in glioblastoma. Acta Neuropathologica Communications 9:1.
Crossref
Chandi Charan Dey, Ayan Mallick, Abhik Sinha Mahapatra, Madhumita Dalal, Anna Bajorek, Jean-Marc Greneche, Raghumani Singh Ningthoujam & Pabitra Kumar Chakrabarti. (2021) Mössbauer analysis and induction heating evaluation of grapes like FZ@MWCNT towards cancer treatment. Solid State Sciences 122, pages 106756.
Crossref
Nitesh Kumar, Suhela Tyeb & Vivek Verma. (2021) Recent advances on Metal oxide-polymer systems in targeted therapy and diagnosis: Applications and toxicological perspective. Journal of Drug Delivery Science and Technology 66, pages 102814.
Crossref
Miloš Ognjanović, Dalibor M. Stanković, Željko K. Jaćimović, Milica Kosović-Perutović, Biljana Dojčinović & Bratislav Antić. (2021) The effect of surface-modifier of magnetite nanoparticles on electrochemical detection of dopamine and heating efficiency in magnetic hyperthermia. Journal of Alloys and Compounds 884, pages 161075.
Crossref
Roghayyeh Baghban, Mehrdad Afarid, Jafar Soleymani & Mahdi Rahimi. (2021) Were magnetic materials useful in cancer therapy?. Biomedicine & Pharmacotherapy 144, pages 112321.
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
Jesus G. Ovejero, Federico Spizzo, M. Puerto Morales & Lucia Del Bianco. (2021) Nanoparticles for Magnetic Heating: When Two (or More) Is Better Than One. Materials 14:21, pages 6416.
Crossref
Moshe Cohen-Erner, Raz Khandadash, Raphael Hof, Ofer Shalev, Adam Antebi, Arnoldo Cyjon, Dian Kanakov, Abraham Nyska, Glenwood Goss, John Hilton & Dan Peer. (2021) Fe 3 O 4 Nanoparticles and Paraffin Wax as Phase Change Materials Embedded in Polymer Matrixes for Temperature-Controlled Magnetic Hyperthermia . ACS Applied Nano Materials 4:10, pages 11187-11198.
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
Fuyao Liu, Haoan Wu, Bin Peng, Shenqi Zhang, Junning Ma, Gang Deng, Pan Zou, Jun Liu, Ann T. Chen, Dongfang Li, Stefania Bellone, Alessandro Davide Santin, Jennifer Moliterno & Jiangbing Zhou. (2021) Vessel-Targeting Nanoclovers Enable Noninvasive Delivery of Magnetic Hyperthermia–Chemotherapy Combination for Brain Cancer Treatment. Nano Letters 21:19, pages 8111-8118.
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
Ashley V. Makela, Jeffrey M. Gaudet, Donna H. Murrell, James R. Mansfield, Max Wintermark & Christopher H. Contag. (2021) Mind Over Magnets – How Magnetic Particle Imaging is Changing the Way We Think About the Future of Neuroscience. Neuroscience 474, pages 100-109.
Crossref
Vuk Uskoković & Miha Drofenik. (2021) Gold-embellished mixed-valence manganite as a smart, self-regulating magnetoplasmonic nanomaterial. Materials Chemistry and Physics 271, pages 124870.
Crossref
Abdulkader Baki, Frank Wiekhorst & Regina Bleul. (2021) Advances in Magnetic Nanoparticles Engineering for Biomedical Applications—A Review. Bioengineering 8:10, pages 134.
Crossref
Wei Wu, Jessica L. Klockow, Michael Zhang, Famyrah Lafortune, Edwin Chang, Linchun Jin, Yang Wu & Heike E. Daldrup-Link. (2021) Glioblastoma multiforme (GBM): An overview of current therapies and mechanisms of resistance. Pharmacological Research 171, pages 105780.
Crossref
Mohammad Afsar Khan, Deepti Singh, Absar Ahmad & Hifzur R Siddique. (2021) Revisiting inorganic nanoparticles as promising therapeutic agents: A paradigm shift in oncological theranostics. European Journal of Pharmaceutical Sciences 164, pages 105892.
Crossref
Priti Tagde, Pooja Tagde, Sandeep Tagde, Tanima Bhattacharya, Vishal Garg, Rokeya Akter, Md. Habibur Rahman, Agnieszka Najda, Ghadeer M. Albadrani, Amany A. Sayed, Muhammad Furqan Akhtar, Ammara Saleem, Ahmed E. Altyar, Deepak Kaushik & Mohamed M. Abdel-Daim. (2021) Natural bioactive molecules: An alternative approach to the treatment and control of glioblastoma multiforme. Biomedicine & Pharmacotherapy 141, pages 111928.
Crossref
Yuqian Zhang, Guofang Zhang, Guocheng Wang, Lidong Wu, Nancy A. Monteiro‐Riviere & Yang Li. (2021) The synergistic strategies for the immuno‐oncotherapy with photothermal nanoagents . WIREs Nanomedicine and Nanobiotechnology 13:5.
Crossref
Costica Caizer. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 430 463 .
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 .
Nicole B. Day, William C. Wixson & C. Wyatt ShieldsIVIV. (2021) Magnetic systems for cancer immunotherapy. Acta Pharmaceutica Sinica B 11:8, pages 2172-2196.
Crossref
Seyed M. Mirvakili & Robert Langer. (2021) Wireless on-demand drug delivery. Nature Electronics 4:7, pages 464-477.
Crossref
A. S. Kamzin, I. M. Obaidat, V. S. Kozlov, E. V. Voronina, V. Narayanaswamy & I. A. Al-Omari. (2021) Magnetic Nanocomposites Graphene Oxide/Magnetite + Cobalt Ferrite (GrO/Fe3O4 + CoFe2O4) for Magnetic Hyperthermia. Physics of the Solid State 63:7, pages 998-1008.
Crossref
A. S. Kamzin, I. M. Obaidat, V. S. Kozlov, E. V. Voronina, V. Narayanaswamy & I. A. Al-Omari. (2021) Graphene Oxide/Iron Oxide (GrO/FeOx) Nanocomposites for Biomedicine: Synthesis and Study. Physics of the Solid State 63:6, pages 856-865.
Crossref
Serhat KÜÇÜKDERMENCİ. (2021) Manyetik Sıvı Hipertermi İçin Parametrik Olarak Üretilen Gradyan Örüntülerinin Haritalanması. Düzce Üniversitesi Bilim ve Teknoloji Dergisi 9:3, pages 121-129.
Crossref
Sakine Shirvalilou, Samideh Khoei, Azam Janati Esfahani, Mahboobeh Kamali, Milad Shirvaliloo, Roghayeh Sheervalilou & Parvin Mirzaghavami. (2021) Magnetic Hyperthermia as an adjuvant cancer therapy in combination with radiotherapy versus radiotherapy alone for recurrent/progressive glioblastoma: a systematic review. Journal of Neuro-Oncology 152:3, pages 419-428.
Crossref
Anjali Chauhan, Swati Midha, Ravi Kumar, Ravindra Meena, Pooja Singh, Sushil K. Jha & Bijoy K. Kuanr. (2021) Rapid tumor inhibition via magnetic hyperthermia regulated by caspase 3 with time-dependent clearance of iron oxide nanoparticles . Biomaterials Science 9:8, pages 2972-2990.
Crossref
Valentina Bravatà, Walter Tinganelli, Francesco P. Cammarata, Luigi Minafra, Marco Calvaruso, Olga Sokol, Giada Petringa, Giuseppe A.P. Cirrone, Emanuele Scifoni, Giusi I. Forte & Giorgio Russo. (2021) Hypoxia Transcriptomic Modifications Induced by Proton Irradiation in U87 Glioblastoma Multiforme Cell Line. Journal of Personalized Medicine 11:4, pages 308.
Crossref
Eva Oberacker, Cecilia Diesch, Jacek Nadobny, Andre Kuehne, Peter Wust, Pirus Ghadjar & Thoralf Niendorf. (2021) Patient-Specific Planning for Thermal Magnetic Resonance of Glioblastoma Multiforme. Cancers 13:8, pages 1867.
Crossref
S.G. Kavya & R. Reghu. (2021) An Overview of High-grade Glioma: Current and Emerging Treatment Approaches. Current Cancer Therapy Reviews 17:1, pages 35-48.
Crossref
Dongkai Qiao, Yu Deng, Chia-Chieh HoChing-Yen Ho, Bor-Chyuan ChenMao-Yu WenChang-Wei Xiong. (2021) Effects of Sizes and Anisotropy Constants of Magnetic Nanoparticles on Hyperthermia Temperature Increase with Time. Science of Advanced Materials 13:4, pages 718-723.
Crossref
Danai Prokopiou E.Michael Pissas, Gabriella Fibbi, Francesca Margheri, Beata Kalska-Szostko, Giorgos Papanastasiou, Maurits Jansen, Jansen Wang, Anna Laurenzana & Eleni Efthimiadou K.. (2021) Synthesis and characterization of modified magnetic nanoparticles as theranostic agents: in vitro safety assessment in healthy cells. Toxicology in Vitro 72, pages 105094.
Crossref
Pravin Shende & Priyank Shah. (2021) Carbohydrate-based magnetic nanocomposites for effective cancer treatment. International Journal of Biological Macromolecules 175, pages 281-293.
Crossref
Thomas J. Carter, Giulia Agliardi, Fang‐Yu Lin, Matthew Ellis, Clare Jones, Mathew Robson, Angela Richard‐Londt, Paul Southern, Mark Lythgoe, May Zaw Thin, Vyacheslav Ryzhov, Rafael T. M. de Rosales, Cordula Gruettner, Maha R. A. Abdollah, R. Barbara Pedley, Quentin A. Pankhurst, Tammy L. Kalber, Sebastian Brandner, Sergio Quezada, Paul Mulholland, Maxim Shevtsov & Kerry Chester. (2021) Potential of Magnetic Hyperthermia to Stimulate Localized Immune Activation. Small 17:14.
Crossref
Shuren Wang, Zhiyi Wang & Yanglong Hou. (2021) Self‐assembled magnetic nanomaterials: Versatile theranostics nanoplatforms for cancer. Aggregate 2:2.
Crossref
Aidin Lak, Sabrina Disch & Philipp Bender. (2021) Embracing Defects and Disorder in Magnetic Nanoparticles. Advanced Science 8:7.
Crossref
Raffaele Longo, Giuliana Gorrasi & Liberata Guadagno. (2021) Electromagnetically Stimuli-Responsive Nanoparticles-Based Systems for Biomedical Applications: Recent Advances and Future Perspectives. Nanomaterials 11:4, pages 848.
Crossref
Ahmed L. Elrefai, Keiji Enpuku & Takashi Yoshida. (2021) Effect of easy axis alignment on dynamic magnetization of immobilized and suspended magnetic nanoparticles. Journal of Applied Physics 129:9.
Crossref
Jae-Hyeok Lee, Bosung Kim, Yongsub Kim & Sang-Koog Kim. (2021) Ultra-high rate of temperature increment from superparamagnetic nanoparticles for highly efficient hyperthermia. Scientific Reports 11:1.
Crossref
Md. Habban Akhter, Md. Rizwanullah, Javed AhmadSaima Amin, Mohammad Zaki AhmadMd. Akram Minhaj, Md. Ali Mujtaba & Javed Ali. (2020) Molecular Targets and Nanoparticulate Systems Designed for the Improved Therapeutic Intervention in Glioblastoma Multiforme. Drug Research 71:03, pages 122-137.
Crossref
Thanaa Shalaby, Ahmed Gawish & Hesham Hamad. (2021) A Promising Platform of Magnetic Nanofluid and Ultrasonic Treatment for Cancer Hyperthermia Therapy: In Vitro and in Vivo Study. Ultrasound in Medicine & Biology 47:3, pages 651-665.
Crossref
Mikhail N. Zharkov, Ekaterina P. Brodovskaya, Oleg A. Kulikov, Elena V. Gromova, Valentin P. Ageev, Aleksandra V. Atanova, Zhanna V. Kozyreva, Alexander M. Tishin, Alexander P. Pyatakov, Nikolay A. Pyataev & Gleb B. Sukhorukov. (2021) Enhanced cytotoxicity caused by AC magnetic field for polymer microcapsules containing packed magnetic nanoparticles. Colloids and Surfaces B: Biointerfaces 199, pages 111548.
Crossref
Fernando Fabris, Javier Lohr, Enio LimaJrJr, Adriele Aparecida de Almeida, Horacio E Troiani, Luis M Rodríguez, Marcelo Vásquez Mansilla, Myriam H Aguirre, Gerardo F Goya, Daniele Rinaldi, Alberto Ghirri, Davide Peddis, Dino Fiorani, Roberto D Zysler, Emilio De Biasi & Elin L Winkler. (2021) Adjusting the Néel relaxation time of Fe 3 O 4 /Zn x Co 1− x Fe 2 O 4 core/shell nanoparticles for optimal heat generation in magnetic hyperthermia . Nanotechnology 32:6, pages 065703.
Crossref
Irene Rubia-Rodríguez, Antonio Santana-Otero, Simo Spassov, Etelka Tombácz, Christer Johansson, Patricia De La Presa, Francisco J. Teran, María del Puerto Morales, Sabino Veintemillas-Verdaguer, Nguyen T. K. Thanh, Maximilian O. Besenhard, Claire Wilhelm, Florence Gazeau, Quentin Harmer, Eric Mayes, Bella B. Manshian, Stefaan J. Soenen, Yuanyu Gu, Ángel Millán, Eleni K. Efthimiadou, Jeff Gaudet, Patrick Goodwill, James Mansfield, Uwe Steinhoff, James Wells, Frank Wiekhorst & Daniel Ortega. (2021) Whither Magnetic Hyperthermia? A Tentative Roadmap. Materials 14:4, pages 706.
Crossref
Faheem Hyder Pottoo, Md. Noushad Javed, Jawad Ur Rahman, Tareq Abu-Izneid & Firdos Alam Khan. (2021) Targeted delivery of miRNA based therapeuticals in the clinical management of Glioblastoma Multiforme. Seminars in Cancer Biology 69, pages 391-398.
Crossref
Jen-Fu Hsu, Shih-Ming Chu, Chen-Chu Liao, Chao-Jan Wang, Yi-Shan Wang, Mei-Yin Lai, Hsiao-Chin Wang, Hsuan-Rong Huang & Ming-Horng Tsai. (2021) Nanotechnology and Nanocarrier-Based Drug Delivery as the Potential Therapeutic Strategy for Glioblastoma Multiforme: An Update. Cancers 13:2, pages 195.
Crossref
Lucía Gutiérrez, María del Puerto Morales & Alejandro G. Roca. 2021. Surfaces and Interfaces of Metal Oxide Thin Films, Multilayers, Nanoparticles and Nano-composites. Surfaces and Interfaces of Metal Oxide Thin Films, Multilayers, Nanoparticles and Nano-composites 65 89 .
Zachary R. Stephen & Miqin Zhang. (2020) Recent Progress in the Synergistic Combination of Nanoparticle‐Mediated Hyperthermia and Immunotherapy for Treatment of Cancer. Advanced Healthcare Materials 10:2.
Crossref
Mahboubeh Nabavinia & Juan Beltran-Huarac. (2020) Recent Progress in Iron Oxide Nanoparticles as Therapeutic Magnetic Agents for Cancer Treatment and Tissue Engineering. ACS Applied Bio Materials 3:12, pages 8172-8187.
Crossref
Zhila Shaterabadi, Gholamreza Nabiyouni & Meysam Soleymani. (2020) Correlation between effects of the particle size and magnetic field strength on the magnetic hyperthermia efficiency of dextran-coated magnetite nanoparticles. Materials Science and Engineering: C 117, pages 111274.
Crossref
Gi Doo Cha, Taegyu Kang, Seungmin Baik, Dokyoon Kim, Seung Hong Choi, Taeghwan Hyeon & Dae-Hyeong Kim. (2020) Advances in drug delivery technology for the treatment of glioblastoma multiforme. Journal of Controlled Release 328, pages 350-367.
Crossref
Pedro L. Silva, Oleksandr A. Savchuk, Juan Gallo, Lorena García-Hevia, Manuel Bañobre-López & Jana B. Nieder. (2020) Mapping intracellular thermal response of cancer cells to magnetic hyperthermia treatment. Nanoscale 12:42, pages 21647-21656.
Crossref
Farah Benyettou, Gobinda Das, Anjana Ramdas Nair, Thirumurugan Prakasam, Digambar B. Shinde, Sudhir Kumar Sharma, Jamie Whelan, Yoann Lalatonne, Hassan Traboulsi, Renu Pasricha, Osama Abdullah, Ramesh Jagannathan, Zhiping Lai, Laurence Motte, Felipe Gándara, Kirsten C. Sadler & Ali Trabolsi. (2020) Covalent Organic Framework Embedded with Magnetic Nanoparticles for MRI and Chemo-Thermotherapy. Journal of the American Chemical Society 142:44, pages 18782-18794.
Crossref
A. S. Kamzin, I. M. Obaidat, A. A. Valliulin, V. G. Semenov & I. A. Al-Omari. (2020) The Composition and Magnetic Structure of Fe3O4/γ-Fe2O3 Core-Shell Nanocomposites under External Magnetic Field: Mössbauer Study (Part II). Physics of the Solid State 62:11, pages 2167-2172.
Crossref

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