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首页> 外文期刊>Acta Radiologica >Superparamagnetic perfluorooctylbromide nanoparticles as a multimodal contrast agent for US, MR, and CT imaging.
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Superparamagnetic perfluorooctylbromide nanoparticles as a multimodal contrast agent for US, MR, and CT imaging.

机译:超顺磁性全氟辛基溴化物纳米颗粒作为US,MR和CT成像的多峰造影剂。

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摘要

Multimodal contrast agents usually containing two or more signal components can be used for several imaging modalities. Thus, complimentary information can be obtained by using just one kind of contrast agents.To investigate the potential of superparamagnetic perfluorooctylbromide nanoparticles (M-PFOBNP) as a multimodal contrast agent for ultrasonography (US)/magnetic resonance (MR)/computed tomography (CT) multimodality imaging.The composite agent M-PFOBNP was developed by introducing superparamagnetic Fe3O4 nanoparticles into perfluorooctylbromide nanoparticles (PFOBNP). Several analytical tools were employed to characterize the agent. The potential of M-PFOBNP for US/MR/CT multimodality imaging were assessed in vivo. The cellular uptake and cytotoxicity of the agent were studied in vitro.M-PFOBNP with well-defined spherical morphology and homogeneous size of 200-250 nm was obtained. Fe3O4 nanoparticles were successfully integrated into PFOBNP and preserved their superparamagnetic characteristics after encapsulation. The in vivo studies showed that M-PFOBNP produced higher echogenicity than PFOBNP and possessed strong magnetic susceptibility and radiopacity for multimodality imaging. Macrophages incubated with different concentrations of M-PFOBNP resulted in a dose-dependent cellular uptake, which did not affect the viability of the cells.M-PFOBNP may potentially serve as a multimodal contrast agent for enhanced US, MR, and CT imaging.
机译:通常包含两个或多个信号成分的多峰造影剂可用于几种成像形式。因此,仅使用一种造影剂即可获得补充信息。研究超顺磁性全氟辛基溴化物纳米颗粒(M-PFOBNP)作为超声(US)/磁共振(MR)/计算机断层扫描(CT)的多峰造影剂的潜力通过将超顺磁性Fe3O4纳米颗粒引入全氟辛基溴化物纳米颗粒(PFOBNP)中来开发复合剂M-PFOBNP。使用了几种分析工具来表征试剂。体内评估了M-PFOBNP用于US / MR / CT多模态成像的潜力。对该药物的细胞吸收和细胞毒性进行了体外研究,获得了具有明确球形特征和均一尺寸为200-250 nm的M-PFOBNP。 Fe3O4纳米粒子成功地整合到PFOBNP中,并在封装后保留了其超顺磁特性。体内研究表明,M-PFOBNP比PFOBNP产生更高的回声性,并且对于多模态成像具有很强的磁化率和不透射线性。用不同浓度的M-PFOBNP孵育的巨噬细胞导致剂量依赖性的细胞摄取,但并不影响细胞的生存能力。M-PFOBNP可能用作增强US,MR和CT成像的多峰造影剂。

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