南方医科大学学报 ›› 2006, Vol. 26 ›› Issue (03): 331-334.

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超顺磁性葡聚糖氧化铁纳米颗粒的研制及表征

刘世霆; 晏媛; 陈志良; 张玉忠; 金星;   

  1. 南方医科大学南方医院药学部; 南方医科大学南方医院医学影像中心; 南方医科大学南方医院药学部 广东广州510515; 广东广州510515;
  • 出版日期:2006-03-20 发布日期:2006-03-20
  • 基金资助:
    广州市科技计划项目(2004J1-C0191)~~

Preparation and characterization of superparamagnetic iron oxide nanoparticles

LIU Shi-ting1,YAN Yuan1,CHEN Zhi-liang1,ZHANG Yu-zhong2,JIN Xing1 1Department of Pharmacy,2Center of Diagnostic Imaging,Nanfang Hospital,Southern Medical University,Guangzhou 510515,China   

  1. 南方医科大学南方医院药学部; 南方医科大学南方医院医学影像中心; 南方医科大学南方医院药学部 广东广州510515; 广东广州510515;
  • Online:2006-03-20 Published:2006-03-20

摘要: 目的制备葡聚糖包被的超顺磁氧化铁(SPIO)纳米粒子,并对其主要物理性质和磁学性质进行研究,探讨它作为磁共振造影剂的可能性。方法通过共沉淀法获得SPIO纳米粒子,分别采用透射电镜和光子相关光谱仪测定其粒径大小,利用邻苯二氮菲比色法测定铁的浓度,同时用核磁共振仪测定弛豫率等参数。结果X-射线衍射分析确定所制备的葡聚糖磁性粒子主要为Fe3O4晶体,粒子体均粒径为85.9 nm,氧化铁核心大小为15 nm左右,具有超顺磁性,其弛豫率和质量磁饱和度分别达到0.1567 mmol/ms和80 emu/g Fe。结论所制备的SPIO粒子稳定,其物理性质表明其具有作为磁共振造影剂的特性。 更多还原

Abstract: Objective To determine the physical and magnetic properties of superparamagnetic iron oxide(SPIO) nanoparitcle prepared in our laboratory and evaluate its possibility for use as contrast agents in magnetic resonance imaging(MRI).Methods The SPIO nanoparticle was obtained by means of classical coprecipitation in dextran solution and its size determined by electron microscopy and photon-correlation spectroscopy.The iron content was determined by phenanthroline photometry,and T2 values as well as relaxivity evaluated with a clinical MR system at 1.5T.Results Dextran-coated magnetite particles with a hydrodynamic diameter of 85.9 nm were prepared.The iron core size was 15 nm and the formation of Fe3O4 crystal in SPIO nanoparticles was confirmed by X-ray diffraction(XRD) analysis.These particles possessed some characteristics of superparamagnetic and show a smaller spin-spin relaxation,with relaxivity and saturation magnetization of 0.1567 mmol-1·ms-1 and 80 emu/g Fe,respectively.Conclusions A stable SPIO nanoparticle with a dextran coating have been developed,and in vitro evaluation of its physical and magnetic properities suggests its potential for use as the contrast agent in MRI.

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