鉴于总结和评价已开发产热材料对今后正确选择磁热疗用材料进行有效治疗人体肿瘤有现实意义,系统综述了近2年各产热材料的最新研究,并引入评价因子以比较不同磁场条件下各材料的产热能力.经比较,产热能力较好的材料分别为羟基磷灰石包覆的Fe_3O_4/γ-Fe_2O_3、Fe_3O_4包覆的Fe、聚乙烯亚胺包覆的MnFe_2O_4及金属Co,其中铁氧化物已有人体临床实验的研究,可预见合理包覆的铁氧化物在人体肿瘤磁热疗中的应用前景.
It has practical significance to summarize and evaluate developed thermogenic materials for the right choice of materials for effective human tumour magnetic hyperthermia in the future.In view of this,the research of different kinds of thermogenic materials in this couple of years is reviewed,and evaluation factor is introduced to com-pare the heat production ability under different magnetic fields.By comparison,the materials with good heat production ability are calcium hydroxyapatite coated Fe_3O_4/γ-Fe_2O_3,Fe_3O_4 coated Fe,polyethylenimine coated MnFe_2O_4 and Co,in which iron oxide is used in human clinical It can be sure that iron oxide has a good prospect for magnetic hyperthermia.
参考文献
[1] | Andr(a) W;Nowak H.Magnetism in medicine[M].Berlin:Wiley,1998:455. |
[2] | Cordon R T;Hines J R;Cordon D .Intracellular hyperther-mia a biophysical approach to cancer treatment via intracellu-lar temperature and biophysical alterations[J].Medical Hypotheses,1979,5:83. |
[3] | Jodan A;Wust P;Scholz R et al.Effects of magnetic fluid hyperthermia(MFH) on C_3H mamary carcinoma in vivo[J].International Journal of Hyperthermia,1997,13:587. |
[4] | Jordan A;Scholz R;Wust P et al.Endocytosis of dextran and silancoated magnetite nanoparticles and the effect of in-tracellular hyperthermia on human mammary carcinoma cell-sin vitro[J].Journal of Magnetism and Magnetic Materials,1999,4:185. |
[5] | Hergt R;Hiergeist R;Zeisberger M;Schuler D;Heyen U;Hilger I;Kaiser WA .Magnetic properties of bacterial magnetosomes as potential diagnostic and therapeutic tools[J].Journal of Magnetism and Magnetic Materials,2005(1):80-86. |
[6] | Hergt R;Hiergeist R;Hilger I et al.Maghemite nanopar-ticles with very high AC-losses for application in RF-mag-netic hyperthermia[J].Journal of Magnetism and Magnetic Materials,2004,270:345. |
[7] | Zhao D L;Wang X X;Zeng X W et al.Preparation and in-ductive heating property of Fe_3O_4-chitosan composite nano-particles in an AC magnetic field for localized hyperthermia[J].Journal of Alloys and Compounds,2009,477:739. |
[8] | Purushotham S;Ramanujan R V .Thermoresponsive mag-netic composite nanomaterials for multimodal cancer therapy[J].Acta Biomaterialia,2009,7:1. |
[9] | Hayashi K;Moriya M;Sakamoto W et al.Chemoselective synthesis of folic acid-functiomlized magnetite nanoparticles via click chemistry for magnetic hyperthermia[J].Chemistry of Materials,2009,21(07):1318. |
[10] | Babincoú M;Altaneroú V;Altaner C et al.In vitro analy-sis of cisplatin functionalized magnetic nanoparticles in com-bined cancer chemotherapy and electromagnetic hyperther-mia[J].IEEE Transactions on Biomedical Engineering,2008,7:15. |
[11] | Samanta B;Yan H;Fischer NO;Shi J;Jerry DJ;Rotello VM .Protein-passivated Fe3O4 nanoparticles: low toxicity and rapid heating for thermal therapy[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2008(11):1204-1208. |
[12] | Zhang LY;Gu HC;Wang XM .Magnetite ferrofluid with high specific absorption rate for application in hyperthermia[J].Journal of Magnetism and Magnetic Materials,2007(1):228-233. |
[13] | Gruttnera C;Mullera K;Tellera J et al.Synthesis and an-tibody conjugation of magnetic nanoparticles with improved specific power absorption rates for alternating magnetic field cancer therapy[J].Journal of Magnetism and Magnetic Materials,2007,3111:81. |
[14] | Hou CH;Hou SM;Hsueh YS .The in vivo performance of biomagnetic hydroxyapatite nanoparticles in cancer hyperthermia therapy.[J].Biomaterials,2009(23/24):3956-3960. |
[15] | Matsumine A;Kusuzaki K;Matsubara T et al.Novel hy-perthermia for metastatic bone tumors with magnetic mate-rials by generating an alternating electromagnetic field[J].Clinical and Experimental Metastasis,2007,24:191. |
[16] | Frank K H;Landeghem V;Hauff K M et al.Post-mortem studies in glioblastoma patients treated with thermotherapy using magnetic nanoparticles[J].Biomaterials,2009,30:52. |
[17] | Watanabe Y;Sato K;Yukumi S .Development of a second-generation radiofrequency ablation using sintered MgFe(2)O(4) needles and alternating magnetic field for human cancer therapy.[J].Bio-medical materials and engineering,2009(2/3):101-110. |
[18] | Tang QS;Zhang DS;Cong XM;Wan ML;Jin LQ .Using thermal energy produced by irradiation of Mn-Zn ferrite magnetic nanoparticles (MZF-NPs) for heat-inducible gene expression.[J].Biomaterials,2008(17):2673-2679. |
[19] | Pradhan P;Giri J;Banerjee R;Bellare J;Bahadur D .Preparation and characterization of manganese ferrite-based magnetic liposomes for hyperthermia treatment of cancer[J].Journal of Magnetism and Magnetic Materials,2007(1):208-215. |
[20] | 姚爱华,王德平,黄文旵,吴卫和,章林.Gd3+掺杂对Mn-Zn铁氧体结构、磁性能和磁热效应的影响[J].无机材料学报,2007(02):201-204. |
[21] | Kim DH;Nikles DE;Johnson DT;Brazel CS .Heat generation of aqueously dispersed CoFe2O4 nanoparticles as heating agents for magnetically activated drug delivery and hyperthermia[J].Journal of Magnetism and Magnetic Materials,2008(19):2390-2396. |
[22] | Kekalo, KA;Kashevsky, BE;Agabekov, VE;Kashevsky, SB;Prokhorov, IV;Zhavnerko, GK .Influence of Co amount on the efficiency of energy absorption of Fe-Co ferrite nanoparticles[J].Journal of Magnetism and Magnetic Materials,2009(10):1514-1516. |
[23] | Veverkal M;Veverkal P;Kamanl O et al.Magnetic hea-ting by cobalt ferrite nanoparticles[J].Nanotechnology,2007,18:345704. |
[24] | Baker I;Loudis J A;Liao Y et al.Fe/Fe oxide nanocom-posite particles with large specific absorption rate for hyper-thermia[J].Applied Physics Letters,2007,23(09):233112. |
[25] | Mullera R;Dutza S;Hergta R et al.Hysteresis losses in iron oxidenanoparticles prepared by glass crystallization or wet chemical precipitation[J].Journal of Magnetism and Magnetic Materials,2007,310:2399. |
[26] | Zeisbergera M;Dutza S;M(u)llera R et al.Metallic cobalt nanoparticles for heating applications[J].Journal of Magnetism and Magnetic Materials,2007,311:224. |
[27] | Balakrishnan, S;Bonder, MJ;Hadjipanayis, GC .Particle size effect on phase and magnetic properties of polymer-coated magnetic nanoparticles[J].Journal of Magnetism and Magnetic Materials,2009(2):117-122. |
[28] | Hou CH;Chen CW;Hou SM .The fabrication and characterization of dicalcium phosphate dihydrate-modified magnetic nanoparticles and their performance in hyperthermia processes in vitro.[J].Biomaterials,2009(27):4700-4707. |
[29] | Prasad NK;Rathinasamy K;Panda D;Bahadur D .TC-tuned biocompatible suspension of La0.73Sr0.27MnO3 for magnetic hyperthermia.[J].Journal of biomedical materials research, Part B. Applied biomaterials,2008(2):409-416. |
[30] | Pbllert E;Knizek K;Marysko M et al.New T_c-tuned magnetic nanoparticles for self-controlled hyperthermia[J].Journal of Magnetism and Magnetic Materials,2007,316:122. |
[31] | Wijaya A;Brown KA;Alper JD;Hamad-Schifferli K .Magnetic field heating study of Fe-doped Au nanoparticles[J].Journal of Magnetism and Magnetic Materials,2007(1):15-19. |
[32] | Kline, TL;Xu, YH;Jing, Y;Wang, JP .Biocompatible high-moment FeCo-Au magnetic nanoparticles for magnetic hyperthermia treatment optimization[J].Journal of Magnetism and Magnetic Materials,2009(10):1525-1528. |
[33] | Kuznetsov AA;Leontiev VG;Brukvin VA;Vorozhtsov GN;Kogan BY;Shlyakhtin OA;Yunin AM;Tsybin OI;Kuznetsov OA .Local radiofrequency-induced hyperthermia using CuNi nanoparticles with therapeutically suitable Curie temperature[J].Journal of Magnetism and Magnetic Materials,2007(1):197-203. |
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