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Magnetic resonance imaging of gadolinium-labeled pancreatic islets for experimental transplantation.

机译:lin标记的胰岛的磁共振成像,用于实验性移植。

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摘要

New imaging techniques that couple anatomical resolution to sensitivity may greatly contribute to improving islet transplantation. In the present work, a report is given of the direct detection of islets by magnetic resonance imaging (MRI) after ex vivo cell labeling with the MRI T(1) contrast agent GdHPDO3A. Experiments on mouse and human islets demonstrated well-tolerated uptake of GdHPDO3A, based on morphology, viability, glucose-dependent insulin response and apoptosis/toxicity gene array profile. GdHPDO3A loading was sufficient for in vitro MRI cell detection. In vivo isotransplanted mouse islets into the kidney capsule and xenotransplanted human islets within the mouse liver were detected. Imaging specificity was supported by the absence of signal in unlabeled islet transplants, its persistence upon using fat-suppression MRI protocols and the colocalization with the transplanted islets. In conclusion, direct islet imaging with high spatial and contrast resolution after labeling with GdHPDO3A is demonstrated, allowing visualization of kidney subcapsular mouse islet grafts and intrahepatic human islet xenografts.
机译:将解剖学分辨率与敏感性相结合的新成像技术可能会极大地改善胰岛移植。在本工作中,给出了使用MRI T(1)造影剂GdHPDO3A进行离体细胞标记后,通过磁共振成像(MRI)直接检测胰岛的报告。小鼠和人类胰岛的实验表明,基于形态学,生存力,葡萄糖依赖性胰岛素反应和凋亡/毒性基因阵列谱,GdHPDO3A的耐受性良好。 GdHPDO3A负载足以进行体外MRI细胞检测。在体内将同种异体移植的小鼠胰岛注入肾囊,并在小鼠肝脏中检测到异种移植的人胰岛。在未标记的胰岛移植物中不存在信号,使用脂肪抑制MRI方案的持久性以及与移植胰岛的共定位,可支持成像特异性。总之,展示了用GdHPDO3A标记后具有高空间分辨率和对比度分辨率的直接胰岛成像,从而可以可视化肾脏亚囊小鼠胰岛移植物和肝内人类胰岛异种移植物。

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