2,311
Views
82
CrossRef citations to date
0
Altmetric
Review Articles

Use of bacterial magnetosomes in the magnetic hyperthermia treatment of tumours: A review

, , &
Pages 801-809 | Received 02 May 2013, Accepted 28 Jun 2013, Published online: 11 Sep 2013

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

Read on this site (1)

Edouard Alphandéry, Pierre Grand-Dewyse, Raphael Lefèvre, Chalani Mandawala & Mickael Durand-Dubief. (2015) Cancer therapy using nanoformulated substances: scientific, regulatory and financial aspects. Expert Review of Anticancer Therapy 15:10, pages 1233-1255.
Read now

Articles from other publishers (81)

Gang Ren, Xia Zhou, Ruimin Long, Maobin Xie, Ranjith Kumar Kankala, Shibin Wang, Yu Shrike Zhang & Yuangang Liu. (2023) Biomedical applications of magnetosomes: State of the art and perspectives. Bioactive Materials 28, pages 27-49.
Crossref
A R Aarathy, B B Lahiri, S Savitha Pillai & John Philip. (2023) Physicochemical properties and AC magnetic field induced heating properties of solvothermally prepared thiospinel: Fe 3 S 4 (greigite) nanoparticles . Physica Scripta 98:6, pages 065933.
Crossref
Marta Masó-Martínez, Benjamin Fryer, Dimitri Aubert, Benjamin Peacock, Rebecca Lees, Graham A. Rance, Michael W. Fay, Paul D. Topham & Alfred Fernández-Castané. (2023) Evaluation of cell disruption technologies on magnetosome chain length and aggregation behaviour from Magnetospirillum gryphiswaldense MSR-1. Frontiers in Bioengineering and Biotechnology 11.
Crossref
Vasily A. Bautin, Ruslan A. Rytov, Yulia A. Nalench, Nelly S. Chmelyuk, Irina A. Antoshina & Nikolai A. Usov. (2023) Specific absorption rate in quasispherical and elongated aggregates of magnetite nanoparticles: Experimental characterization and numerical simulation. Ceramics International 49:10, pages 16379-16384.
Crossref
Costica Caizer, Isabela Simona Caizer-Gaitan, Claudia Geanina Watz, Cristina Adriana Dehelean, Tiberiu Bratu & Codruța Soica. (2023) High Efficacy on the Death of Breast Cancer Cells Using SPMHT with Magnetite Cyclodextrins Nanobioconjugates. Pharmaceutics 15:4, pages 1145.
Crossref
Relton R. Oliveira, Emílio R. Cintra, Ailton A. Sousa-Junior, Larissa C. Moreira, Artur C. G. da Silva, Ana Luiza R. de Souza, Marize C. Valadares, Marcus S. Carrião, Andris F. Bakuzis & Eliana M. Lima. (2023) Paclitaxel-Loaded Lipid-Coated Magnetic Nanoparticles for Dual Chemo-Magnetic Hyperthermia Therapy of Melanoma. Pharmaceutics 15:3, pages 818.
Crossref
Shuangjun He, Jiani Yang, Xinxin Fan, Dong Lu, Shuang Zhang & Lei Yan. (2022) Magnetosome yield characteristics modeling of acidithiobacillus ferrooxidans in airlift bioreactor using response surface methodology. Journal of Biomaterials Applications 37:7, pages 1325-1338.
Crossref
Chao Wang, Nankun Chen, Tianyu Yang, Qiuzhen Cheng, Di'an Wu, Yiyao Xiao, Shuli He & Ningning Song. (2023) Smart composite hydrogel with magnetocaloric anisotropy for controllable multi-drug release. Journal of Magnetism and Magnetic Materials 565, pages 170267.
Crossref
Siyu Wang, Yue Zhou & Nan Li. 2023. Inorganic Nanosystems. Inorganic Nanosystems 201 228 .
Emily M. Greeson, Cody S. Madsen, Ashley V. Makela & Christopher H. Contag. (2022) Magnetothermal Control of Temperature-Sensitive Repressors in Superparamagnetic Iron Nanoparticle-Coated Bacillus subtilis . ACS Nano 16:10, pages 16699-16712.
Crossref
E. M. Jefremovas, L. Gandarias, L. Marcano, A. Gacía-Prieto, I. Orue, A. Muela, M. L. Fdez-Gubieda, L. Fernández Barquín & J. Alonso. (2022) Modifying the magnetic response of magnetotactic bacteria: incorporation of Gd and Tb ions into the magnetosome structure. Nanoscale Advances 4:12, pages 2649-2659.
Crossref
Ritika Puri, Vimal Arora, Atul Kabra, Harish Dureja & Shailendra Hamaal. (2022) Magnetosomes: A Tool for Targeted Drug Delivery in the Management of Cancer. Journal of Nanomaterials 2022, pages 1-12.
Crossref
Isabela Simona Caizer & Costica Caizer. (2022) Superparamagnetic Hyperthermia Study with Cobalt Ferrite Nanoparticles Covered with γ-Cyclodextrins by Computer Simulation for Application in Alternative Cancer Therapy. International Journal of Molecular Sciences 23:8, pages 4350.
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
Costica Caizer. (2021) Computational Study Regarding CoxFe3−xO4 Ferrite Nanoparticles with Tunable Magnetic Properties in Superparamagnetic Hyperthermia for Effective Alternative Cancer Therapy. Nanomaterials 11:12, pages 3294.
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
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
H. Gavilán, K. Simeonidis, E. Myrovali, E. Mazarío, O. Chubykalo-Fesenko, R. Chantrell, Ll. Balcells, M. Angelakeris, M. P. Morales & D. Serantes. (2021) How size, shape and assembly of magnetic nanoparticles give rise to different hyperthermia scenarios. Nanoscale 13:37, pages 15631-15646.
Crossref
Abdulkader Baki, Frank Wiekhorst & Regina Bleul. (2021) Advances in Magnetic Nanoparticles Engineering for Biomedical Applications—A Review. Bioengineering 8:10, pages 134.
Crossref
Costica Caizer & Isabela Simona Caizer. (2021) Study on Maximum Specific Loss Power in Fe3O4 Nanoparticles Decorated with Biocompatible Gamma-Cyclodextrins for Cancer Therapy with Superparamagnetic Hyperthermia. International Journal of Molecular Sciences 22:18, pages 10071.
Crossref
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 .
Costica Caizer & Mahendra Rai. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 355 379 .
Costica Caizer, Cristina Dehelean & Codruta Soica. 2021. Magnetic Nanoparticles in Human Health and Medicine. Magnetic Nanoparticles in Human Health and Medicine 272 306 .
Kamil G. Gareev, Denis S. Grouzdev, Petr V. Kharitonskii, Andrei Kosterov, Veronika V. Koziaeva, Elena S. Sergienko & Maxim A. Shevtsov. (2021) Magnetotactic Bacteria and Magnetosomes: Basic Properties and Applications. Magnetochemistry 7:6, pages 86.
Crossref
Costica Caizer. (2021) Theoretical Study on Specific Loss Power and Heating Temperature in CoFe2O4 Nanoparticles as Possible Candidate for Alternative Cancer Therapy by Superparamagnetic Hyperthemia. Applied Sciences 11:12, pages 5505.
Crossref
Delia Luca & Simona Miclăuş. (2021) Two Dimensions Simulation of a Magnetotactic Bacteria Cell Exposed to an Electromagnetic Field at 3 GHz. International conference KNOWLEDGE-BASED ORGANIZATION 27:3, pages 48-54.
Crossref
Alfred Fernández-Castané, Hong Li, Stephan Joseph, Moritz Ebeler, Matthias Franzreb, Daniel G. Bracewell, Tim W. Overton & Owen R.T. Thomas. (2021) Nanoparticle tracking analysis as a process analytical tool for characterising magnetosome preparations. Food and Bioproducts Processing 127, pages 426-434.
Crossref
Negin Nokhandani, Arash Poursheikhani, Mahdyieh Naghavi Alhosseini & Homa Davoodi. (2021) Bacteria in Carcinogenesis and Cancer Prevention: A Review Study. International Journal of Cancer Management 14:2.
Crossref
María Luisa Fdez-Gubieda, Lourdes Marcano, Alicia Muela, Ana García-Prieto, Javier Alonso & Iñaki Orue. 2021. New Trends in Nanoparticle Magnetism. New Trends in Nanoparticle Magnetism 159 179 .
Maiko Furubayashi, Andrea K. Wallace, Lina M. González, Justin P. Jahnke, Brendan M. Hanrahan, Alexis L. Payne, Dimitra N. Stratis‐Cullum, Matthew T. Gray, Han Liu, Melissa K. Rhoads & Christopher A. Voigt. (2020) Genetic Tuning of Iron Oxide Nanoparticle Size, Shape, and Surface Properties in Magnetospirillum magneticum . Advanced Functional Materials 31:4, pages 2004813.
Crossref
Costica Caizer. (2020) Optimization Study on Specific Loss Power in Superparamagnetic Hyperthermia with Magnetite Nanoparticles for High Efficiency in Alternative Cancer Therapy. Nanomaterials 11:1, pages 40.
Crossref
Abdul Basit, Jiaojiao Wang, Fangfang Guo, Wei Niu & Wei Jiang. (2020) Improved methods for mass production of magnetosomes and applications: a review. Microbial Cell Factories 19:1.
Crossref
A. R. Aarathy, M. S. Gopika & S. Savitha Pillai. (2020) Recent Insights into the Potential of Magnetic Metal Nanostructures as Magnetic Hyperthermia Agents. Sensor Letters 18:12, pages 861-880.
Crossref
M. Molcan, K. Kaczmarek, M. Kubovcikova, H. Gojzewski, J. Kovac, M. Timko & A. Józefczak. (2020) Magnetic hyperthermia study of magnetosome chain systems in tissue-mimicking phantom. Journal of Molecular Liquids 320, pages 114470.
Crossref
Regina Bleul, Abdulkader Baki, Christian Freese, Hendrik Paysen, Olaf Kosch & Frank Wiekhorst. (2020) Continuously manufactured single-core iron oxide nanoparticles for cancer theranostics as valuable contribution in translational research. Nanoscale Advances 2:10, pages 4510-4521.
Crossref
M. L. Fdez-Gubieda, J. Alonso, A. García-Prieto, A. García-Arribas, L. Fernández Barquín & A. Muela. (2020) Magnetotactic bacteria for cancer therapy. Journal of Applied Physics 128:7.
Crossref
Maria Uzun, Lolita Alekseeva, Maria Krutkina, Veronika Koziaeva & Denis Grouzdev. (2020) Unravelling the diversity of magnetotactic bacteria through analysis of open genomic databases. Scientific Data 7:1.
Crossref
Nikolai A. Usov & Elizaveta M. Gubanova. (2020) Application of Magnetosomes in Magnetic Hyperthermia. Nanomaterials 10:7, pages 1320.
Crossref
Wen Qin, Chen‐yu Wang, Yu‐xuan Ma, Min‐juan Shen, Jing Li, Kai Jiao, Franklin R. Tay & Li‐na Niu. (2020) Microbe‐Mediated Extracellular and Intracellular Mineralization: Environmental, Industrial, and Biotechnological Applications. Advanced Materials 32:22.
Crossref
V.R.R. Aquino, L.C. Figueiredo, J.A.H. Coaquira, M.H. Sousa & A.F. Bakuzis. (2020) Magnetic interaction and anisotropy axes arrangement in nanoparticle aggregates can enhance or reduce the effective magnetic anisotropy. Journal of Magnetism and Magnetic Materials 498, pages 166170.
Crossref
Mina Maleki, Mohammad pooya Naghshbandi & Zahra Hajihassan. (2020) Magentotactic bacteria and their applications. Nova Biologica Reperta 6:4, pages 391-401.
Crossref
Costică Caizer, Cristina Dehelean, Dorina Elena Coricovac, Isabela Simona Caizer & Codruta Şoica. 2020. Nanoformulations in Human Health. Nanoformulations in Human Health 503 530 .
Edouard Alphandéry, Ahmed Idbaih, Clovis Adam, Jean-Yves Delattre, Charlotte Schmitt, Florence Gazeau, François Guyot & Imène Chebbi. (2019) Biodegraded magnetosomes with reduced size and heating power maintain a persistent activity against intracranial U87-Luc mouse GBM tumors. Journal of Nanobiotechnology 17:1.
Crossref
Xiaoying Guan, Bin Yang, Maobin Xie, Deependra Kumar Ban, Xinmin Zhao, Ratnesh Lal & Feng Zhang. (2019) MRI reporter gene MagA suppresses transferrin receptor and maps Fe2+ dependent lung cancer. Nanomedicine: Nanotechnology, Biology and Medicine 21, pages 102064.
Crossref
David Gandia, Lucía Gandarias, Irati Rodrigo, Joshua Robles‐García, Raja Das, Eneko Garaio, José Ángel García, Manh‐Huong Phan, Hariharan Srikanth, Iñaki Orue, Javier Alonso, Alicia Muela & M. Luisa Fdez‐Gubieda. (2019) Unlocking the Potential of Magnetotactic Bacteria as Magnetic Hyperthermia Agents. Small 15:41, pages 1902626.
Crossref
Dennis A. Bazylinski & Denis Trubitsyn. 2019. Magnetic Nanoparticles in Biosensing and Medicine. Magnetic Nanoparticles in Biosensing and Medicine 251 284 .
Costica Caizer. 2019. Nanotheranostics. Nanotheranostics 297 335 .
En Ren, Zhao Lei, Junqing Wang, Yang Zhang & Gang Liu. (2018) Magnetosome Modification: From Bio-Nano Engineering Toward Nanomedicine. Advanced Therapeutics 1:6, pages 1800080.
Crossref
Gabriele Vargas, Jefferson Cypriano, Tarcisio Correa, Pedro Leão, Dennis Bazylinski & Fernanda Abreu. (2018) Applications of Magnetotactic Bacteria, Magnetosomes and Magnetosome Crystals in Biotechnology and Nanotechnology: Mini-Review. Molecules 23:10, pages 2438.
Crossref
Simona Miclaus, George Mihai, Paul Bechet, Ioan I. Ardelean, Jolanta Karpowicz & Cristina Moisescu. (2018) The thermic response of biogenic magnetite suspensions to frequencies in the (0.1-3) GHz range. The thermic response of biogenic magnetite suspensions to frequencies in the (0.1-3) GHz range.
Erik Wetterskog, Christian Jonasson, Detlef-M. Smilgies, Vincent Schaller, Christer Johansson & Peter Svedlindh. (2018) Colossal Anisotropy of the Dynamic Magnetic Susceptibility in Low-Dimensional Nanocube Assemblies. ACS Nano 12:2, pages 1403-1412.
Crossref
Zohreh Nemati, Javier Alonso, Irati Rodrigo, Raja Das, Eneko Garaio, José Ángel García, Iñaki Orue, Manh-Huong Phan & Hariharan Srikanth. (2018) Improving the Heating Efficiency of Iron Oxide Nanoparticles by Tuning Their Shape and Size. The Journal of Physical Chemistry C 122:4, pages 2367-2381.
Crossref
C. Blanco-Andujar, F.J. Teran & D. Ortega. 2018. Iron Oxide Nanoparticles for Biomedical Applications. Iron Oxide Nanoparticles for Biomedical Applications 197 245 .
I. Baker. 2018. Nanobiomaterials. Nanobiomaterials 197 229 .
Jalal Mosayebi, Mehdi Kiyasatfar & Sophie Laurent. (2017) Synthesis, Functionalization, and Design of Magnetic Nanoparticles for Theranostic Applications. Advanced Healthcare Materials 6:23, pages 1700306.
Crossref
Edouard Alphandéry, Darine Abi Haidar, Olivier Seksek, Maxime Thoreau, Alain Trautmann, Nadege Bercovici, Florence Gazeau, François Guyot & Imène Chebbi. (2017) Nanoprobe Synthesized by Magnetotactic Bacteria, Detecting Fluorescence Variations under Dissociation of Rhodamine B from Magnetosomes following Temperature, pH Changes, or the Application of Radiation. ACS Applied Materials & Interfaces 9:42, pages 36561-36572.
Crossref
Edouard Alphandéry, Ahmed Idbaih, Clovis Adam, Jean-Yves Delattre, Charlotte Schmitt, François Guyot & Imène Chebbi. (2017) Development of non-pyrogenic magnetosome minerals coated with poly-l-lysine leading to full disappearance of intracranial U87-Luc glioblastoma in 100% of treated mice using magnetic hyperthermia. Biomaterials 141, pages 210-222.
Crossref
Edouard Alphandéry, Ahmed Idbaih, Clovis Adam, Jean-Yves Delattre, Charlotte Schmitt, François Guyot & Imène Chebbi. (2017) Chains of magnetosomes with controlled endotoxin release and partial tumor occupation induce full destruction of intracranial U87-Luc glioma in mice under the application of an alternating magnetic field. Journal of Controlled Release 262, pages 259-272.
Crossref
Z. Nemati, S.M. Salili, J. Alonso, A. Ataie, R. Das, M.H. Phan & H. Srikanth. (2017) Superparamagnetic iron oxide nanodiscs for hyperthermia therapy: Does size matter?. Journal of Alloys and Compounds 714, pages 709-714.
Crossref
Jinhua Li, Heng Zhang, Nicolas Menguy, Karim Benzerara, Fuxian Wang, Xiaoting Lin, Zhibao Chen & Yongxin Pan. (2017) Single-Cell Resolution of Uncultured Magnetotactic Bacteria via Fluorescence-Coupled Electron Microscopy. Applied and Environmental Microbiology 83:12.
Crossref
Yuri I. Golovin, Natalia L. Klyachko, Alexander G. Majouga, Marina Sokolsky & Alexander V. Kabanov. (2017) Theranostic multimodal potential of magnetic nanoparticles actuated by non-heating low frequency magnetic field in the new-generation nanomedicine. Journal of Nanoparticle Research 19:2.
Crossref
Kadarkarai Murugan, Jiang Wei, Mohamad Saleh Alsalhi, Marcello Nicoletti, Manickam Paulpandi, Christina Mary Samidoss, Devakumar Dinesh, Balamurugan Chandramohan, Chellasamy Paneerselvam, Jayapal Subramaniam, Chithravel Vadivalagan, Hui Wei, Pandiyan Amuthavalli, Anitha Jaganathan, Sandhanasamy Devanesan, Akon Higuchi, Suresh Kumar, Al Thabiani Aziz, Devaraj Nataraj, Baskaralingam Vaseeharan, Angelo Canale & Giovanni Benelli. (2016) Magnetic nanoparticles are highly toxic to chloroquine-resistant Plasmodium falciparum, dengue virus (DEN-2), and their mosquito vectors. Parasitology Research 116:2, pages 495-502.
Crossref
Tuan Anh Pham, Andreas Schreiber, Stefan M. Schiller & Helmut Cölfen. (2017) Toroidal Protein Adaptor Assembles Ferrimagnetic Nanoparticle Fibers with Constructive Magnetic Coupling. Advanced Functional Materials 27:7, pages 1604532.
Crossref
M. P. Silva, A. L. Drummond, V. R. R. Aquino, L. P. Silva, R. B. Azevedo, M. J. A. Sales, P. C. Morais, A. F. Bakuzis & M. H. Sousa. (2017) Facile green synthesis of nanomagnets for modulating magnetohyperthermia: tailoring size, shape and phase. RSC Adv. 7:75, pages 47669-47680.
Crossref
Konstantinos Simeonidis, M. Puerto Morales, Marzia Marciello, Makis Angelakeris, Patricia de la Presa, Ana Lazaro-Carrillo, Andrea Tabero, Angeles Villanueva, Oksana Chubykalo-Fesenko & David Serantes. (2016) In-situ particles reorientation during magnetic hyperthermia application: Shape matters twice. Scientific Reports 6:1.
Crossref
Jobin John Jacob & K. Suthindhiran. (2016) Magnetotactic bacteria and magnetosomes – Scope and challenges. Materials Science and Engineering: C 68, pages 919-928.
Crossref
Alicia Muela, David Muñoz, Rosa Martín-Rodríguez, Iñaki Orue, Eneko Garaio, Ana Abad Díaz de Cerio, Javier Alonso, José Ángel García & M. Luisa Fdez-Gubieda. (2016) Optimal Parameters for Hyperthermia Treatment Using Biomineralized Magnetite Nanoparticles: Theoretical and Experimental Approach. The Journal of Physical Chemistry C 120:42, pages 24437-24448.
Crossref
Eric C. Abenojar, Sameera Wickramasinghe, Jesbaniris Bas-Concepcion & Anna Cristina S. Samia. (2016) Structural effects on the magnetic hyperthermia properties of iron oxide nanoparticles. Progress in Natural Science: Materials International 26:5, pages 440-448.
Crossref
A. Skumiel, T. Hornowski, A. Józefczak, M. Koralewski & B. Leszczyński. (2016) Uses and limitation of different thermometers for measuring heating efficiency of magnetic fluids. Applied Thermal Engineering 100, pages 1308-1318.
Crossref
Changyou Chen, Linjie Chen, Yong Yi, Chuanfang Chen, Long-Fei Wu & Tao Song. (2016) Killing of Staphylococcus aureus via Magnetic Hyperthermia Mediated by Magnetotactic Bacteria. Applied and Environmental Microbiology 82:7, pages 2219-2226.
Crossref
Nimali N Prabhu. (2016) Magnetosomes: The Bionanomagnets and Its Potential Use in Biomedical Applications. Journal of Nanomedicine Research 3:3.
Crossref
T. Orlando, S. Mannucci, E. Fantechi, G. Conti, S. Tambalo, A. Busato, C. Innocenti, L. Ghin, R. Bassi, P. Arosio, F. Orsini, C. Sangregorio, M. Corti, M. F. Casula, P. Marzola, A. Lascialfari & A. Sbarbati. (2016) Characterization of magnetic nanoparticles from Magnetospirillum Gryphiswaldense as potential theranostics tools . Contrast Media & Molecular Imaging 11:2, pages 139-145.
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
Sébastien Mériaux, Marianne Boucher, Benjamin Marty, Yoann Lalatonne, Sandra Prévéral, Laurence Motte, Christopher T. Lefèvre, Françoise Geffroy, Franck Lethimonnier, Michel Péan, Daniel Garcia, Géraldine Adryanczyk-Perrier, David Pignol & Nicolas Ginet. (2015) Magnetosomes, Biogenic Magnetic Nanomaterials for Brain Molecular Imaging with 17.2 T MRI Scanner. Advanced Healthcare Materials 4:7, pages 1076-1083.
Crossref
Abhilasha S. Mathuriya. (2014) Magnetotactic bacteria for cancer therapy. Biotechnology Letters 37:3, pages 491-498.
Crossref
Irene Andreu, Eva Natividad, Laura Solozábal & Olivier Roubeau. (2015) Nano-objects for Addressing the Control of Nanoparticle Arrangement and Performance in Magnetic Hyperthermia. ACS Nano 9:2, pages 1408-1419.
Crossref
A. Józefczak, M. Molčan, Z. Rozynek, T. Hornowski, A. Skumiel, M. Timko, J. Tóthová, P. Kopčanský & B. Leszczyński. (2015) Properties of Magnetosome Suspension under the Influence of Magnetic Field. Acta Physica Polonica A 127:2, pages 629-631.
Crossref
Ana Araujo, Fernanda Abreu, Karen Silva, Dennis Bazylinski & Ulysses Lins. (2015) Magnetotactic Bacteria as Potential Sources of Bioproducts. Marine Drugs 13:1, pages 389-430.
Crossref
Silvio Dutz & Rudolf Hergt. (2014) Magnetic particle hyperthermia—a promising tumour therapy?. Nanotechnology 25:45, pages 452001.
Crossref
Edouard Alphandéry. (2014) Applications of Magnetosomes Synthesized by Magnetotactic Bacteria in Medicine. Frontiers in Bioengineering and Biotechnology 2.
Crossref
Dennis A. Bazylinski, Christopher T. Lefèvre & Brian H. Lower. 2014. Nanomicrobiology. Nanomicrobiology 39 74 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.