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作 者:文明[1] 柏玮[2] 李少林[2] 杨学恒[3] 李必波[4] 唐泰国[3] 苏小平[3]
机构地区:[1]重庆医科大学附属第一医院放射科,重庆400016 [2]重庆医科大学基础医学院放射医学教研室,重庆400016 [3]重庆大学数理学院纳米技术工作站,重庆400044 [4]重庆医科大学药学院,重庆400016
出 处:《中国生物医学工程学报》2007年第6期942-945,共4页Chinese Journal of Biomedical Engineering
基 金:重庆市卫生局医学科技计划项目(062025);重庆医科大学优秀博士基金(重医大文2006-182)。
摘 要:目的:将高精度原子力显微镜用于葡聚糖包被的超顺磁性氧化铁(SPIO)纳米粒子表征,探讨它作为载体用于磁共振成像的可能性。方法:通过共沉淀法合成SPIO,分别采用透射电镜和高精度原子力显微镜对粒子进行观察。结果:透射电镜显示葡聚糖包被的SPIO核心部分即铁粒子外形主要为球形,分布比较均匀,粒径不超过5nm,不能显示葡聚糖包被后的整个粒径;而高精度原子力显微镜显示葡聚糖包被的SPIO呈立方体形,颗粒均匀,核心铁粒子直径在5nm内,葡聚糖包被后的实际粒径在20-35nm之间。结论:对于葡聚糖包被的SPIO表征检测,高精度原子力显微镜大有可为。Objective: To determine the characterization of dextran-coated superparamagnetic iron oxide(SPIO) by atomic force microscopy(AFM) with high resolution,and evaluate the possibility for it to be used as a carrier in magnetic resonance imaging.Materials and methods: The SPIO nanoparticle was obtained by means of classical co-percipitation,and its characterization were determined by transmission electron microscopy(TEM) and AFM respectively.Results: TEM showed that the nucleus of iron oxide was mainly spherical and well dispersed,the diameter was no more than 5nm and the size of the coated particles could not be revealed.But the AFM suggested that the dextran-coated SPIO was cubic and had good dispersion,the diameter of nucleus was less than 5nm,and the coated particle was 20~35nm in size.Conclusions: To detect the characterization of dextran-coated SPIO,the AFM is promising.
分 类 号:R318[医药卫生—生物医学工程]
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