Sciallero Claudia, Balbi Luca, Paradossi Gaio, Trucco Andrea
Department of Electrical, Electronic, Telecommunications Engineering, and Naval Architecture , University of Genoa , Genoa , Italy.
Esaote S.p.A. , Genoa , Italy.
R Soc Open Sci. 2016 Aug 3;3(8):160063. doi: 10.1098/rsos.160063. eCollection 2016 Aug.
Dual-mode contrast agents (CAs) have great potential for improving diagnostics. However, the effectiveness of CAs is strictly related to both the solution adopted to merge the two agents into a single probe unit, and the ratio between the two agents. In this study, two dual-mode CAs for simultaneous magnetic resonance imaging (MRI) and ultrasound imaging (UI) were assessed. For this purpose, different densities of superparamagnetic iron oxide nanoparticles (SPIONs) were anchored to the external surface of polymer-shelled microbubbles (MBs) or were physically entrapped into the shell. static and dynamic experiments were carried out with a limited concentration of modified MBs (10 bubbles ml) by avoiding destruction during UI (performed at a peak pressure lower than 320 kPa) and by using a low-field MRI system (with a magnetic flux density equal to 0.25 T). Under these conditions, different imaging techniques, set-up parameters and SPION densities were used to achieve satisfactory detection of the CAs by using both UI and MRI. However, when the SPION density was increased, the MRI contrast improved, whereas the UI contrast worsened due to the reduced elasticity of the MB shell. For both UI and MRI, MBs with externally anchored SPIONs provided better performance than MBs with SPIONs entrapped into the shell. In particular, a SPION density of 29% with respect to the mass of the MBs was successfully tested.
双模态造影剂(CAs)在改善诊断方面具有巨大潜力。然而,造影剂的有效性与将两种造影剂合并为单个探针单元所采用的溶液以及两种造影剂之间的比例密切相关。在本研究中,评估了两种用于同时进行磁共振成像(MRI)和超声成像(UI)的双模态造影剂。为此,将不同密度的超顺磁性氧化铁纳米颗粒(SPIONs)锚定在聚合物壳微泡(MBs)的外表面或物理包裹在壳内。通过避免在超声成像(在峰值压力低于320 kPa下进行)过程中破坏,并使用低场MRI系统(磁通密度等于0.25 T),以有限浓度的改性微泡(10个微泡/毫升)进行了静态和动态实验。在这些条件下,使用不同的成像技术、设置参数和SPION密度,通过超声成像和MRI实现了对造影剂的满意检测。然而,当SPION密度增加时,MRI对比度提高,而超声成像对比度因微泡壳弹性降低而恶化。对于超声成像和MRI,外表面锚定有SPIONs的微泡比壳内包裹有SPIONs的微泡表现更好。特别是,成功测试了相对于微泡质量为29%的SPION密度。