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Preparation and characterization of alginate based-fluorescent magnetic nanoparticles for fluorescence/magnetic resonance multimodal imaging applications

机译:基于藻酸盐的荧光磁性纳米粒子的制备和表征,用于荧光/磁共振多峰成像应用

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摘要

Simple and versatile methodologies have been reported that customize the surface of superparamagnetic iron oxide (SPIO) nanoparticles and impart additional fluorescence capabilities to these contrast agents. Herein, we present the rational design, synthesis, characterization, and biological applications of a new magnetic-based fluorescent probe. The dual modality imaging protocol was developed by labeling fluorophore with alginate natural polymers that have excellent biocompatibility and biodegradability, and using gelification method to form nanocomposites containing SPIO. The formation of alginate-based fluorescent magnetic (AFM) nanoparticles was observed in spherical and elliptical forms with a diameter of less than 500nm by a transmission electron microscope (TEM). The fluorescent wavelength band in the range of 560nm was also confirmed in the UV-visible spectrophotometer. In this study, we demonstrate that the multi-tasking design of AFM nanoparticles provides an ideal platform for building balanced dual-image probes of magnetic resonance imaging and optical imaging. (C) 2018 The Japan Society of Applied Physics.
机译:据报道,简单而通用的方法可定制超顺磁性氧化铁(SPIO)纳米颗粒的表面并赋予这些造影剂额外的荧光功能。在这里,我们介绍了一种新型的基于磁性的荧光探针的合理设计,合成,表征和生物学应用。通过用具有优异生物相容性和生物降解性的藻酸盐天然聚合物标记荧光团,并使用凝胶化方法形成包含SPIO的纳米复合材料,开发了双模态成像方案。通过透射电子显微镜(TEM)观察到直径小于500nm的球形和椭圆形的藻酸盐基荧光磁性(AFM)纳米颗粒的形成。在紫外可见分光光度计中也确认了560nm范围内的荧光波长带。在这项研究中,我们证明了AFM纳米颗粒的多任务设计为构建平衡的磁共振成像和光学成像双图像探针提供了理想的平台。 (C)2018年日本应用物理学会。

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  • 来源
    《Japanese journal of applied physics》 |2018年第6s1期|06HE03.1-06HE03.5|共5页
  • 作者单位

    KIMM, Nanoconvergence Mech Syst Res Div, Daejeon 34103, South Korea;

    KIMM, Nanoconvergence Mech Syst Res Div, Daejeon 34103, South Korea;

    KIMM, Nanoconvergence Mech Syst Res Div, Daejeon 34103, South Korea;

    KIMM, Nanoconvergence Mech Syst Res Div, Daejeon 34103, South Korea;

    KIMM, Nanoconvergence Mech Syst Res Div, Daejeon 34103, South Korea;

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