MnFe2O4-Fe3O4 core-shell nanoparticles as a potential contrast agent for magnetic resonance imaging

被引:35
|
作者
Venkatesha, N. [1 ]
Pudakalakatti, Shivanand M. [2 ]
Qurishi, Yasrib [3 ]
Atreya, Hanudatta S. [2 ]
Srivastava, Chandan [1 ]
机构
[1] Indian Inst Sci, Dept Mat Engn, Bangalore 560012, Karnataka, India
[2] Indian Inst Sci, NMR Res Ctr, Bangalore 560012, Karnataka, India
[3] Indian Inst Sci, Dept Mol Reprod Dev & Genet, Bangalore 560012, Karnataka, India
来源
RSC ADVANCES | 2015年 / 5卷 / 118期
关键词
CORE/SHELL NANOPARTICLES; OXIDE NANOPARTICLES; SIZE; NANOCOMPOSITES; HYPERTHERMIA; ENHANCEMENT; SURFACE; SOFT;
D O I
10.1039/c5ra20474g
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In recent years, magnetic core-shell nanoparticles have received widespread attention due to their unique properties that can be used for various applications. We introduce here a magnetic core-shell nanoparticle system for potential application as a contrast agent in magnetic resonance imaging (MRI). MnFe2O4-Fe3O4 core-shell nanoparticles were synthesized by the wet-chemical synthesis method. Detailed structural and compositional charaterization confirmed the formation of a core-shell microstructure for the nanoparticles. Magnetic charaterization revealed the superparamagnetic nature of the as-synthesized core-shell nanoparticles. Average size and saturation magnetization values obtained for the as-synthesized core-shell nanoparticle were 12.5 nm and 69.34 emu g(-1) respectively. The transverse relaxivity value of the water protons obtained in the presence of the core-shell nanoparticles was 184.1 mM(-1) s(-1). To investigate the effect of the core-shell geometry towards enhancing the relaxivity value, transverse relaxivity values were also obtained in the presence of separately synthesized single phase Fe3O4 and MnFe2O4 nanoparticles. Average size and saturation magnetization values for the as-synthesized Fe3O4 nanoparticles were 12 nm and 65.8 emu g(-1) respectively. Average size and saturation magnetization values for the MnFe2O4 nanoparticles were 9 nm and 61.5 emu g(-1) respectively. The transverse relaxivity value obtained in the presence of single phase Fe3O4 and MnFe2O4 nanoparticles was 96.6 and 83.2 mM(-1) s(-1) respectively. All the nanoparticles (core-shell and single phase) were coated with chitosan by a surfactant exchange reaction before determining the relaxivity values. For similar nanoparticle sizes and saturation magnetization values, the highest value of the transverse relaxivity in the case of core-shell nanoparticles clearly illustrated that the difference in the magnetic nature of the core and shell phases in the core-shell nanoparticles creates greater magnetic inhomogeneity in the surrounding medium yielding a high value for proton relaxivity. The MnFe2O4-Fe3O4 core-shell nanoparticles exhibited extremely low toxicity towards the MCF-7 cell line. Taken together, this opens up new avenues for the use of core-shell nanoparticles in MRI.
引用
收藏
页码:97807 / 97815
页数:9
相关论文
共 50 条
  • [31] Synthesis and characterization of monodisperse magnetic Fe3O4@BSA core-shell nanoparticles
    Li, Zhanfeng
    Qiang, Linhui
    Zhong, Shuangling
    Wang, Hongyan
    Cui, Xuejun
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2013, 436 : 1145 - 1151
  • [32] Preparation and characterization of core-shell structure Fe3O4@C magnetic nanoparticles
    Shi, Da
    Yang, Hao
    Ji, Shengfu
    Jiang, Sai
    Liu, Xuefei
    Zhang, Danni
    NEW PARADIGM OF PARTICLE SCIENCE AND TECHNOLOGY, PROCEEDINGS OF THE 7TH WORLD CONGRESS ON PARTICLE TECHNOLOGY, 2015, 102 : 1555 - 1562
  • [33] Fe3O4@PDEA-PEGMA core-shell pH responsive magnetic nanoparticles
    Ding, Shijie
    Shen, Youqing
    Walters, Keisha B.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 245
  • [34] Preparation of Fe3O4-10-HCPT and Fe3O4-HCPT@SiO2 core-shell nanoparticles
    Guo, Ximing
    Guo, Bin
    Chen, Lei
    Cheng, Shukang
    Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2015, 47 (03): : 93 - 96
  • [35] Contrasting shell thickness-dependent magnetic behaviors of CoFe2O4@Fe3O4 and Fe3O4@CoFe2O4 core/shell nanoparticles
    Phong, L. T. H.
    Manh, Do Hung
    Thanh, Tran Dang
    Bach, T. N.
    Ky, V. H.
    Skorvanek, Ivan
    Kovac, Jozef
    Svec, Peter
    Phan, The-Long
    Phan, Manh Huong
    JOURNAL OF ALLOYS AND COMPOUNDS, 2024, 1005
  • [36] Synthesis and magnetic properties of Fe3O4@γ-Fe2O3 core/shell nanoparticles
    Dave, Pragnesh N.
    Kalaniya, Riyaz Y.
    JOURNAL OF THE INDIAN CHEMICAL SOCIETY, 2012, 89 (06) : 853 - 856
  • [37] Interfacial spin coupling and exchange anisotropy in core-shell MnFe2O4/α-Fe2O3 nanocomposites
    Mohan, Rajendra
    Ghosh, Mritunjoy Prasad
    Skomski, Ralph
    Mukherjee, Samrat
    EUROPEAN PHYSICAL JOURNAL PLUS, 2020, 135 (06):
  • [38] DUAL-FUNCTIONAL CORE-SHELL Au@Fe3O4 NANOPARTICLES FOR CELLULAR IMAGING AND MAGNETIC HYPERTHERMIA
    Prabhakaran, S.
    MAGNETOHYDRODYNAMICS, 2013, 49 (3-4): : 609 - 614
  • [39] On the Fe3O4/Mn1-xZnxFe2O4 core/shell magnetic nanoparticles
    Hong, R. Y.
    Li, J. H.
    Cao, X.
    Zhang, S. Z.
    Di, G. Q.
    Li, H. Z.
    Wei, D. G.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2009, 480 (02) : 947 - 953
  • [40] Synthesis and Magnetic Properties of the Core–Shell Fe3O4/CoFe2O4 Nanoparticles
    D. A. Balaev
    S. V. Semenov
    A. A. Dubrovskii
    A. A. Krasikov
    S. I. Popkov
    S. S. Yakushkin
    V. L. Kirillov
    O. N. Mart’yanov
    Physics of the Solid State, 2020, 62 : 285 - 290