Korolev Dmitry V, Shulmeyster Galina A, Istomina Maria S, Evreinova Natalia V, Aleksandrov Ilia V, Krasichkov Aleksandr S, Postnov Viktor N, Galagudza Michael M
Institute of Experimental Medicine, Almazov National Medical Research Centre, Saint-Petersburg 197341, Russia.
Laboratory of Blood Circulation Biophysics, Pavlov First Saint-Petersburg State Medical University, Saint-Petersburg 197022, Russia.
Materials (Basel). 2022 May 27;15(11):3832. doi: 10.3390/ma15113832.
Various gadolinium compounds have been proposed as contrasting agents for magnetic resonance imaging (MRI). In this study, we suggested a new synthesis method of gadolinium ferrate/trigadolinium pentairon(III) oxide nanoparticles (GF/TPO NPs). The specific surface area of gadolinium ferrate (GdFeO) and trigadolinium pentairon(III) oxide (GdFeO) nanoparticles was equal to 42 and 66 m/g, respectively. The X-ray diffraction analysis confirmed that the synthesized substances were GdFeO and GdFeO. The gadolinium content in the samples was close to the theoretically calculated value. The free gadolinium content was negligible. Biodistribution of the GF/TPO NPs was studied in rats by fluorescent imaging and Fe/Fe quantification demonstrating predominant accumulation in such organs as lung, kidney, and liver. We showed in the in vivo rat model of myocardial ischemia-reperfusion injury that GF/TPO NPs are able to target the area of myocardial infarction as evidenced by the significantly greater level of fluorescence. In perspective, the use of fluorescently labeled GF/TPO NPs in multimodal imaging may provide basis for high-resolution 3D reconstruction of the infarcted heart, thereby serving as unique theranostic platform.
各种钆化合物已被提议用作磁共振成像(MRI)的造影剂。在本研究中,我们提出了一种新的合成钆铁酸盐/三钆五氧化二铁纳米颗粒(GF/TPO NPs)的方法。钆铁酸盐(GdFeO)和三钆五氧化二铁(GdFeO)纳米颗粒的比表面积分别为42和66 m/g。X射线衍射分析证实合成的物质为GdFeO和GdFeO。样品中的钆含量接近理论计算值。游离钆含量可忽略不计。通过荧光成像和Fe/Fe定量研究了GF/TPO NPs在大鼠体内的生物分布,结果表明其主要蓄积在肺、肾和肝脏等器官中。我们在大鼠心肌缺血再灌注损伤的体内模型中表明,GF/TPO NPs能够靶向心肌梗死区域,荧光水平显著更高证明了这一点。从长远来看,在多模态成像中使用荧光标记的GF/TPO NPs可能为梗死心脏的高分辨率三维重建提供基础,从而成为独特的治疗诊断平台。