首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >A Trimodal Imaging Platform for Tracking Viable Transplanted Pancreatic Islets In Vivo: F-19 MR, Fluorescence, and Bioluminescence Imaging
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A Trimodal Imaging Platform for Tracking Viable Transplanted Pancreatic Islets In Vivo: F-19 MR, Fluorescence, and Bioluminescence Imaging

机译:用于跟踪体内可行移植的胰岛胰岛的三极管成像平台:F-19 MR,荧光和生物发光成像

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摘要

PurposeCombining specific and quantitative F-19 magnetic resonance imaging (MRI) with sensitive and convenient optical imaging provides complementary information about the distribution and viability of transplanted pancreatic islet grafts. In this study, pancreatic islets (PIs) were labeled with positively charged multimodal nanoparticles based on poly(lactic-co-glycolic acid) (PLGA-NPs) with encapsulated perfluoro-15-crown-5-ether and the near-infrared fluorescent dye indocyanine green.ProceduresOne thousand and three thousand bioluminescent PIs were transplanted into subcutaneous artificial scaffolds, which served as an alternative transplant site. The grafts were monitored using in vivo F-19 MR, fluorescence, and bioluminescence imaging in healthy rats for 2weeks.ResultsTransplanted PIs were unambiguously localized in the scaffolds by F-19 MRI throughout the whole experiment. Fluorescence was detected in the first 4days after transplantation only. Importantly, in vivo bioluminescence correlated with the F-19 MRI signal.ConclusionsWe developed a trimodal imaging platform for in vivo examination of transplanted PIs. Fluorescence imaging revealed instability of the fluorescent dye and its limited applicability for longitudinal in vivo studies. A correlation between the bioluminescence signal and the F-19 MRI signal indicated the fast clearance of PLGA-NPs from the transplantation site after cell death, which addresses a major issue with intracellular imaging labels. Therefore, the proposed PLGA-NP platform is reliable for reflecting the status of transplanted PIs in vivo.
机译:具有敏感和方便的光学成像的预防特定和定量的F-19磁共振成像(MRI)提供了关于移植的胰岛移植移植物的分布和存活的互补信息。在该研究中,胰岛(PIS)用基于聚(乳酸 - 共乙醇酸)(PLGA-NPS)的带正电荷的多峰纳米颗粒用包封的全氟-15-冠-5-醚和近红外荧光染料标记吲哚菁绿。将千和三千种生物发光PIS移植到皮下人工支架中,其用作替代移植部位。使用体内F-19 MR,荧光和生物发光成像在2周的健康大鼠中进行监测移植物。在整个实验中,F-19 MRI在支架上明确地将PIS毫不含糊地定位。仅在移植后的前40天内检测到荧光。重要的是,在体内生物发光中与F-19 MRI信号相关.Conclusionswe为移植的PIS体内进行体内检查的三极管成像平台。荧光成像显示出荧光染料的不稳定性及其对体内研究中的纵向纵向的有限适用性。生物发光信号与F-19 MRI信号之间的相关性表明了细胞死亡后从移植部位的PLGA-NPS的快速间隙,这解决了细胞内成像标签的主要问题。因此,所提出的PLGA-NP平台可靠,以反映体内移植的PIS的状态。

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