Literature DB >> 19715115

Applications of magnetic nanoparticles in medicine: magnetic fluid hyperthermia.

Magda Latorre1, Carlos Rinaldi.   

Abstract

Nanoparticle systems are an intense subject of research for various biomedical applications. Colloidal suspensions of magnetic nanoparticles are of special interest, particularly in bioimaging, and more recently, in Magnetic Fluid Hyperthermia (MFH). MFH promises to be a viable alternative in the treatment of localized cancerous tumors. The treatment consists of locally injecting magnetic nanoparticles in fluid suspension into the tumor site and exposing the site to an oscillating magnetic field, where nanoparticles dissipate energy in the form of heat, causing a localized rise in temperature and tumor cell death. Here we will review methods of magnetic nanoparticle synthesis, and the role of the nanoparticle surface coating in achieving colloidal stability, minimizing toxicity, and targeting. Finally, we review in vitro and in vivo MFH experiments, and clinical studies in the treatment of glioblastoma multiforme and prostate cancer.

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Mesh:

Year:  2009        PMID: 19715115

Source DB:  PubMed          Journal:  P R Health Sci J        ISSN: 0738-0658            Impact factor:   0.705


  23 in total

Review 1.  Enabling individualized therapy through nanotechnology.

Authors:  Jason H Sakamoto; Anne L van de Ven; Biana Godin; Elvin Blanco; Rita E Serda; Alessandro Grattoni; Arturas Ziemys; Ali Bouamrani; Tony Hu; Shivakumar I Ranganathan; Enrica De Rosa; Jonathan O Martinez; Christine A Smid; Rachel M Buchanan; Sei-Young Lee; Srimeenakshi Srinivasan; Matthew Landry; Anne Meyn; Ennio Tasciotti; Xuewu Liu; Paolo Decuzzi; Mauro Ferrari
Journal:  Pharmacol Res       Date:  2010-01-05       Impact factor: 7.658

Review 2.  The application of super paramagnetic iron oxide-labeled mesenchymal stem cells in cell-based therapy.

Authors:  Yiying Qi; Gang Feng; Zhongming Huang; Weiqi Yan
Journal:  Mol Biol Rep       Date:  2012-12-27       Impact factor: 2.316

Review 3.  Approaches for modeling magnetic nanoparticle dynamics.

Authors:  Daniel B Reeves; John B Weaver
Journal:  Crit Rev Biomed Eng       Date:  2014

Review 4.  Thermal potentiation of chemotherapy by magnetic nanoparticles.

Authors:  Madeline Torres-Lugo; Carlos Rinaldi
Journal:  Nanomedicine (Lond)       Date:  2013-10       Impact factor: 5.307

5.  Multi-functional magnetic nanoparticles for magnetic resonance imaging and cancer therapy.

Authors:  Murali M Yallapu; Shadi F Othman; Evan T Curtis; Brij K Gupta; Meena Jaggi; Subhash C Chauhan
Journal:  Biomaterials       Date:  2010-12-16       Impact factor: 12.479

Review 6.  pH-sensitive membrane peptides (pHLIPs) as a novel class of delivery agents.

Authors:  Oleg A Andreev; Donald M Engelman; Yana K Reshetnyak
Journal:  Mol Membr Biol       Date:  2010-10-13       Impact factor: 2.857

Review 7.  Molecular thermometry.

Authors:  Kevin M McCabe; Mark Hernandez
Journal:  Pediatr Res       Date:  2010-05       Impact factor: 3.756

8.  Magnetic fluid hyperthermia induced by radiofrequency capacitive field for the treatment of transplanted subcutaneous tumors in rats.

Authors:  Xu-Hong Li; Peng-Fei Rong; He-Kun Jin; Wei Wang; Jin-Tian Tang
Journal:  Exp Ther Med       Date:  2011-11-30       Impact factor: 2.447

9.  Enhanced reduction in cell viability by hyperthermia induced by magnetic nanoparticles.

Authors:  Héctor L Rodríguez-Luccioni; Magda Latorre-Esteves; Janet Méndez-Vega; Orlando Soto; Ana R Rodríguez; Carlos Rinaldi; Madeline Torres-Lugo
Journal:  Int J Nanomedicine       Date:  2011-02-15

10.  Recent trends in multifunctional liposomal nanocarriers for enhanced tumor targeting.

Authors:  Federico Perche; Vladimir P Torchilin
Journal:  J Drug Deliv       Date:  2013-03-07
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