体内分布
正电子发射断层摄影术
体内
磁共振成像
脂质体
化学
生物医学工程
分子成像
临床前影像学
核医学
离体
放射科
医学
体外
生物技术
生物
生物化学
作者
Mark E. Lobatto,Tina Binderup,Philip M. Robson,Luuk Giesen,Claudia Calcagno,Julia J. Witjes,François Fay,Samantha Baxter,Chang Ho Wessel,Mootaz Eldib,Jason Bini,Sean Carlin,Erik S.G. Stroes,Gert Storm,Andreas Kjær,Jason S. Lewis,Thomas Reiner,Zahi A. Fayad,Willem J. M. Mulder,Carlos Pérez‐Medina
标识
DOI:10.1021/acs.bioconjchem.9b00256
摘要
Nanotherapy has recently emerged as an experimental treatment option for atherosclerosis. To fulfill its promise, robust noninvasive imaging approaches for subject selection and treatment evaluation are warranted. To that end, we present here a positron emission tomography (PET)-based method for quantification of liposomal nanoparticle uptake in the atherosclerotic vessel wall. We evaluated a modular procedure to label liposomal nanoparticles with the radioisotope zirconium-89 (89Zr). Their biodistribution and vessel wall targeting in a rabbit atherosclerosis model was evaluated up to 15 days after intravenous injection by PET/computed tomography (CT) and PET/magnetic resonance imaging (PET/MRI). Vascular permeability was assessed in vivo using three-dimensional dynamic contrast-enhanced MRI (3D DCE-MRI) and ex vivo using near-infrared fluorescence (NIRF) imaging. The 89Zr-radiolabeled liposomes displayed a biodistribution pattern typical of long-circulating nanoparticles. Importantly, they markedly accumulated in atherosclerotic lesions in the abdominal aorta, as evident on PET/MRI and confirmed by autoradiography, and this uptake moderately correlated with vascular permeability. The method presented herein facilitates the development of nanotherapy for atherosclerotic disease as it provides a tool to screen for nanoparticle targeting in individual subjects' plaques.
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