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In Vivo Detection and Measurement of Aortic Aneurysm and Dissection in Mouse Models Using Microcomputed Tomography with Contrast Agent

机译:用造影剂使用微型仿制性断层扫描的小鼠模型主动脉瘤和解剖的体内检测和测量

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Objectives. The aim of this study was to evaluate the potential of microcomputed tomography (micro-CT) using the intravascular contrast agent ExiTron nano 12000 for aorta imaging and monitoring the dynamic changing process of the aorta in mouse models with aortic aneurysm and dissection. Materials and Methods. Experiments were performed on healthy mice and mice with aortic dissection. Mice that were developing aortic dissection and healthy mice underwent micro-CT imaging after injection of ExiTron nano 12000. Time-dependent signal enhancement (at 1, 2, 3, 6, and 12?hours after intravenous injection of the contrast agent, respectively) in the aorta of healthy mice was measured to confirm the optimal imaging time of aorta. Various contrast agent doses (70, 100, and 150?μl per 25?g mouse, respectively) were investigated to determine the optimal required dose for imaging of the aorta. The mice were scanned with micro-CT at 1, 14, and 28?days after onset of aneurysm and dissection to monitor the dynamic changing process of the aorta. Mouse aortas were stained with hematoxylin and eosin staining, and the diameter of the aorta was measured and compared with those obtained by micro-CT. Results. Time-dependent signal enhancement in the aorta shows that the contrast agent has a long blood half-life of 6?hours, with a peak enhancement at 2?hours after injection. Injection of 100?μl ExiTron nano 12000 per 25?g mouse allows for effective visualization of the aorta. Micro-CT combined with contrast agent can monitor the changing process of the aorta in the mouse model of aortic aneurysm and dissection dynamically. The values of the diameter of the aortas obtained from the in vivo micro-CT imaging were compared with those obtained from histology and showed a significant correlation (R2?=?0.96). Conclusions. These data demonstrate that in vivo micro-CT is an accurate and feasible technique to detect aortic aneurysm or dissection in a mouse model, and the micro-CT technique using the innovative contrast agent ExiTron nano 12000 allows for monitoring various processes dynamically such as aortic remodeling in longitudinal studies.
机译:目标。本研究的目的是使用血管内造影剂Exitron纳米12000用于主动脉成像和监测小鼠模型中主动脉瘤和解剖的模型中主动脉的动态变化过程的微型断层扫描(微型CT)的潜力。材料和方法。在具有主动脉夹层的健康小鼠和小鼠上进行实验。在注射Exitron纳米12000后,正在开发主动脉夹层和健康小鼠的小鼠进行微型CT成像。时间依赖性信号增强(分别在静脉注射造影剂后1,2,3,6和12.小时)在测量健康小鼠的主动脉中以确认主动脉的最佳成像时间。研究了各种造影剂剂量(分别为每25​​μl小鼠70,100和150μL),以确定用于成像的最佳所需剂量。用Micro-CT在1,14和28℃扫描小鼠,在动脉瘤发起和解剖后,以监测主动脉的动态变化过程。用苏木精和曙红染色染色小鼠主动脉,并测量主动脉的直径并与通过微型CT获得的直径。结果。主动脉中的时间依赖性信号增强表明造影剂的长血半衰期为6?小时,注射后2个小时的峰值增强。每25μl小鼠注射100·μleAitron纳米12000允许有效可视化主动脉。微型CT与造影剂结合可以监测主动脉瘤小鼠模型中主动脉瘤和动态解剖的主动脉的变化过程。将从体内微型CT成像中获得的主动脉的直径的值与组织学中获得的那些进行比较,并显示出显着的相关性(R2?= 0.96)。结论。这些数据表明,在体内微型CT中是一种准确和可行的技术来检测小鼠模型中的主动脉动脉瘤或解剖,并且使用创新的造影剂Exitron Nano 12000的微型CT技术允许动态地监测各种过程,例如主动脉重塑在纵向研究中。

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