Structural effects on the magnetic hyperthermia properties of iron oxide nanoparticles

被引:0
作者
Eric C.Abenojar [1 ]
Sameera Wickramasinghe [1 ]
Jesbaniris Bas-Concepcion [1 ,2 ]
Anna Cristina S.Samia [1 ]
机构
[1] Department of Chemistry, Case Western Reserve University
[2] Chemistry Department, University of Puerto Rico, Rio Piedras Campus
关键词
Iron oxide nanoparticles; Magnetic hyperthermia; Magneto-structural effects; Magnetic dipolar interactions; Magnetic imaging guided–hyperthermia;
D O I
暂无
中图分类号
O614.811 []; TB383.1 [];
学科分类号
070205 ; 070301 ; 080501 ; 081704 ; 1406 ;
摘要
Magnetic iron oxide nanoparticles(IONPs) are heavily explored as diagnostic and therapeutic agents due to their low cost, tunable properties, and biocompatibility. In particular, upon excitation with an alternating current(AC) magnetic field, the NPs generate localized heat that can be exploited for therapeutic hyperthermia treatment of diseased cells or pathogenic microbes. In this review, we focus on how structural changes and inter-particle interactions affect the heating efficiency of iron oxide-based magnetic NPs. Moreover, we present an overview of the different approaches to evaluate the heating performance of IONPs and introduce a new theranostic modality based on magnetic imaging guided–hyperthermia.
引用
收藏
页码:440 / 448
页数:9
相关论文
共 19 条
[1]  
Usefulness of Magnetic Particle Imaging for Predicting the Therapeutic Effect of Magnetic Hyperthermia[J] . Kenya Murase,Marina Aoki,Natsuo Banura,Kohei Nishimoto,Atsushi Mimura,Tomomi Kuboyabu,Isamu Yabata.Open Journal of Medical Imaging . 2015 (02)
[2]  
The formation of linear aggregates in magnetic hyperthermia: Implications on specific absorption rate and magnetic anisotropy[J] . Steven L. Saville,Bin Qi,Jonathon Baker,Roland Stone,Robert E. Camley,Karen L. Livesey,Longfei Ye,Thomas M. Crawford,O. Thompson Mefford.Journal of Colloid And Interface Science . 2014
[3]   Physics of heat generation using magnetic nanoparticles for hyperthermia [J].
Dennis, Cindi L. ;
Ivkov, Robert .
INTERNATIONAL JOURNAL OF HYPERTHERMIA, 2013, 29 (08) :715-729
[4]   Accuracy of available methods for quantifying the heat power generation of nanoparticles for magnetic hyperthermia [J].
Andreu, Irene ;
Natividad, Eva .
INTERNATIONAL JOURNAL OF HYPERTHERMIA, 2013, 29 (08) :739-751
[5]  
Use of bacterial magnetosomes in the magnetic hyperthermia treatment of tumours: A review[J] . Edouard Alphand&eacute,ry,Im&egrave,ne Chebbi,Fran&ccedil,ois Guyot,Micka&euml,l Durand-Dubief.International Journal of Hyperthermia . 2013 (8)
[6]  
Adjustable Hyperthermia Response of Self‐Assembled Ferromagnetic Fe‐MgO Core–Shell Nanoparticles by Tuning Dipole–Dipole Interactions[J] . Carlos Martinez‐Boubeta,Konstantinos Simeonidis,David Serantes,Iván Conde‐Leborán,Ioannis Kazakis,George Stefanou,Luis Pe?a,Regina Galceran,Lluis Balcells,Claude Monty,Daniel Baldomir,Manassis Mitrakas,Makis Angelakeris.Adv. Funct. Mater. . 2012 (17)
[7]  
Superparamagnetic iron oxide nanoparticles (SPIONs): Development, surface modification and applications in chemotherapy[J] . Morteza Mahmoudi,Shilpa Sant,Ben Wang,Sophie Laurent,Tapas Sen.Advanced Drug Delivery Reviews . 2010 (1)
[8]  
Adiabatic vs. non-adiabatic determination of specific absorption rate of ferrofluids[J] . Eva Natividad,Miguel Castro,Arturo Mediano.Journal of Magnetism and Magnetic Materials . 2009 (10)
[9]  
Design and fabrication of magnetic nanoparticles for targeted drug delivery and imaging[J] . Omid Veiseh,Jonathan W. Gunn,Miqin Zhang.Advanced Drug Delivery Reviews . 2009 (3)
[10]  
Magnetically induced hyperthermia: size-dependent heating power of γ-Fe2O3 nanoparticles[J] . Michael Lévy,Claire Wilhelm,Jean-Michel Siaugue,Olivier Horner,Jean-Claude Bacri,Florence Gazeau.Journal of Physics: Condensed Matter . 2008 (20)