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Fluorescent magnetic hybrid nanoprobe for multimodal bioimaging

机译:用于多峰生物成像的荧光磁性杂交纳米探针

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摘要

A fluorescent magnetic hybrid imaging nanoprobe (HINP) was fabricated by the conjugation of superparamagnetic Fe_3O_4 nanoparticles and visible light emitting (~600nm) fluorescent CdTe/CdS quantum dots (QDs). The assembly strategy used the covalent linking of the oxidized dextran shell of magnetic particles to the glutathione ligands of QDs. The synthesized HINP formed stable water-soluble colloidal dispersions. The structure and properties of the particles were characterized by transmission electron and atomic force microscopy, energy dispersive x-ray analysis and inductively coupled plasma optical emission spectroscopy, dynamic light scattering analysis, optical absorption and photoluminescence spectroscopy, and fluorescent imaging. The luminescence imaging region of the nanoprobe was extended to the near-infrared (NIR) (~800nm) by conjugation of the superparamagnetic nanoparticles with synthesized CdHgTe/CdS QDs. Cadmium, mercury based QDs in HINP can be easily replaced by novel water-soluble glutathione stabilized AgInS_2/ZnS QDs to present a new class of cadmium-free multimodal imaging agents. The observed NIR photoluminescence of fluorescent magnetic nanocomposites supports their use for bioimaging. The developed HINP provides dual-imaging channels for simultaneous optical and magnetic resonance imaging.
机译:通过将超顺磁性Fe_3O_4纳米粒子与可见光(〜600nm)荧光CdTe / CdS量子点(QDs)结合,制备了荧光磁混合成像纳米探针(HINP)。组装策略使用了磁性粒子的氧化葡聚糖壳与QD的谷胱甘肽配体的共价连接。合成的HINP形成稳定的水溶性胶体分散体。通过透射电子和原子力显微镜,能量色散X射线分析和电感耦合等离子体发射光谱,动态光散射分析,光吸收和光致发光光谱以及荧光成像来表征颗粒的结构和性质。通过将超顺磁性纳米粒子与合成的CdHgTe / CdS QDs共轭,将纳米探针的发光成像区域扩展到近红外(NIR)(〜800nm)。 HINP中基于镉,汞的量子点可以很容易地被新型水溶性谷胱甘肽稳定的AgInS_2 / ZnS量子点所取代,从而呈现出一类新型的无镉多峰显像剂。荧光磁性纳米复合材料的观察到的近红外光致发光支持了其在生物成像中的用途。研发的HINP提供双成像通道,用于同时进行光学和磁共振成像。

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