Targeted hyperthermia after selective embolization with ferromagnetic nanoparticles in a VX2 rabbit liver tumor model

被引:16
作者
Sun, Hongliang [1 ]
Xu, Linfeng [1 ]
Fan, Tianyuan [2 ]
Zhan, Hongzhi [3 ]
Wang, Xiaodong [3 ]
Zhou, Yanfei [2 ]
Yang, Ren-Jie [3 ]
机构
[1] Sun Yat Sen Univ, Sun Yat Sen Mem Hosp, Dept Intervent Therapy, Guangzhou 510275, Guangdong, Peoples R China
[2] Beijing Univ, Sch Pharm, Beijing 100871, Peoples R China
[3] Peking Univ, Sch Oncol, Beijing Canc Hosp & Inst, Dept Intervent Therapy, Beijing 100142, Peoples R China
来源
INTERNATIONAL JOURNAL OF NANOMEDICINE | 2013年 / 8卷
关键词
hyperthermia; ferromagnetic nanoparticles; Lipiodol (R); hepatocellular carcinoma; animal model; MAGNETIC FLUID HYPERTHERMIA; MEDIATED HYPERTHERMIA;
D O I
10.2147/IJN.S50373
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Background: The purpose of this study was to observe the effect and feasibility of hyperthermia and the influence of heat on surrounding organs in a VX2 rabbit liver model exposed to an alternating magnetic field after embolization with ferromagnetic nanoparticles. Methods: Forty rabbits containing implanted hepatic VX2 carcinomas were divided into four groups, each containing ten rabbits. Fourteen days after tumor transplantation, we opened the abdomen to observe the size and shape of the tumor. A transfemoral retrograde approach was then used for hepatic arterial catheterization in groups B, C, and D to perform angiography and embolization. The next day, three rabbits in group B and all rabbits in group D were exposed to an alternating magnetic field, and the temperature was recorded simultaneously in the center of the tumor, at the edge of the tumor, and in the normal liver parenchyma. On day 28, all animals was euthanized to observe changes in the implanted liver tumor and the condition of the abdomen. A pathologic examination was also done. Results: Before surgery, there was no significant difference in tumor volume between the four groups. Three different temperature points (cen-ter of the tumor, edge of the tumor, and in the normal liver parenchyma) of group B under an alternating magnetic field were 37.2 degrees C +/- 1.1 degrees C, 36.8 degrees C +/- 1.2 degrees C, and 36.9 degrees C +/- 2.1 degrees C, none of which were significantly different from pretreatment values. Three points basal temperature in group D showed no significant difference (F = 1.038, P = 0.413). Seven to 26 minutes after hyperthermia, the temperature at the center of the tumor and at the edge of the tumor in group D was significantly different from the corresponding points in group B and from normal liver tissue in group D (FB-D center = 5.431, PB-D center = 0.041, FB-Dedge = 9.744, PB-Dedge = 0.011; FD = 8.379, PD = 0.002). The highest temperature recorded at the rim of the tumor was 46 degrees C in group D. Fourteen days later, the tumor volume in the four groups was group A 31.4 +/- 20.6 cm(3), group B 26.7 +/- 18.2 cm(3), group C 28.7 +/- 9.1 cm(3), and group D 25.8 +/- 13.9 cm(3), with no significant difference found between the groups (F = 0.218, P = 0.883). The increase in tumor volume was greatest in group A and least in group D, while that in groups B and D was similar. Conclusion: It is feasible to treat a VX2 tumor in an alternating magnetic field after embolization with magnetic nanoparticles without a significant effect on the surrounding normal liver parenchyma.
引用
收藏
页码:3795 / 3804
页数:10
相关论文
共 20 条
[1]   Hyperthermic potentiation of cisplatin by magnetic nanoparticle heaters is correlated with an increase in cell membrane fluidity [J].
Alvarez-Berrios, Merlis P. ;
Castillo, Amalchi ;
Mendez, Janet ;
Soto, Orlando ;
Rinaldi, Carlos ;
Torres-Lugo, Madeline .
INTERNATIONAL JOURNAL OF NANOMEDICINE, 2013, 8 :1003-1013
[2]  
Bubnovskaya L., 2012, Experimental Oncology, V34, P336
[3]   Effect of magnetic fluid hyperthermia on lung cancer nodules in a murine model [J].
Hu, Runlei ;
Ma, Shenglin ;
Li, Hu ;
Ke, Xianfu ;
Wang, Guoqing ;
Wei, Dongshan ;
Wang, Wei .
ONCOLOGY LETTERS, 2011, 2 (06) :1161-1164
[4]   Inhibition of heat shock protein 90 sensitizes melanoma cells to thermosensitive ferromagnetic particle-mediated hyperthermia with low Curie temperature [J].
Ito, Aki ;
Saito, Hajime ;
Mitobe, Kazutaka ;
Minamiya, Yoshihiro ;
Takahashi, Naoko ;
Maruyama, Kiyotomi ;
Motoyama, Satoru ;
Katayose, Yoshihisa ;
Ogawa, Jun-ichi .
CANCER SCIENCE, 2009, 100 (03) :558-564
[5]   Preparation of ferrimagnetic magnetite microspheres for in situ hyperthermic treatment of cancer [J].
Kawashita, M ;
Tanaka, M ;
Kokubo, T ;
Inoue, Y ;
Yao, T ;
Hamada, S ;
Shinjo, T .
BIOMATERIALS, 2005, 26 (15) :2231-2238
[6]  
Khandhar A.P., 2012, Journal of applied physics, V111, p07B306
[7]   Magnetically induced hyperthermia:: size-dependent heating power of γ-Fe2O3 nanoparticles [J].
Levy, Michael ;
Wilhelm, Claire ;
Siaugue, Jean-Michel ;
Horner, Olivier ;
Bacri, Jean-Claude ;
Gazeau, Florence .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2008, 20 (20)
[8]   Magnetic fluid hyperthermia induced by radiofrequency capacitive field for the treatment of transplanted subcutaneous tumors in rats [J].
Li, Xu-Hong ;
Rong, Peng-Fei ;
Jin, He-Kun ;
Wang, Wei ;
Tang, Jin-Tian .
EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2012, 3 (02) :279-284
[9]   Magnetic nanoparticles:: Synthesis, protection, functionalization, and application [J].
Lu, An-Hui ;
Salabas, E. L. ;
Schueth, Ferdi .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (08) :1222-1244
[10]   Magnetically mediated hyperthermia: current status and future directions [J].
Moroz, P ;
Jones, SK ;
Gray, BN .
INTERNATIONAL JOURNAL OF HYPERTHERMIA, 2002, 18 (04) :267-284