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Comparison of CT contrast blood pool agents for in-vivo 3D Angiography using MicroCT

机译:使用MicroCT对凝固血吸虫血吸镜的比较

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MicroCT small animal 3D angiography has various applications such as tumor growth evaluation or quantification of the pulmonary arterial tree morphometry. Due to longer acquisition times using preclinical systems, classical contrast agents are of little use in-vivo. Novel contrast agents such as gold nanoparticles and iodinated liposomes offer a possible solution to this difficulty by preventing rapid renal excretion. To evaluate different contrast agents, we filled pieces of polymer tubing (20 AWG) with solutions of 10 mg Au/ml and 30 mg Au/ml home-made gold nanoparticles, commercial gold nanoparticle (120 mg Au/ml), commercial iodinated liposomes, 30% barium sulfate solution, 6% iodine contrast solution and 100% saline (PBS), respectively. Each piece of tubing was imaged in our microCT together with the PBS filled tubing using identical imaging settings. Upon quantification and comparison of the phantom data, we imaged mice after injection of contrast agent. We also acquired data from excised lungs filled with contrast agent and gelatin solution. The barium sulfate solution had the highest measured radiodensity, which was 8 times higher than PBS. The solution with only 6% of iodine contrast gave us an increased radiodensity of 1.5x. Among the in-vivo compounds, the liposomal contrast agent had the highest radiodensity with 5 times than PBS, where the gold nanoparticles (10 mg/ml) were almost indistinguishable from PBS, but the higher concentrations show improvements in contrast. Our comparison shows that the traditional contrast agents have a higher radiodensity than novel compounds currently under development. Angiography using barium sulfate is a terminal experiment where the iodine contrast agent is cleared too quickly by the kidneys to be useful in-vivo. The small contrast improvement of the gold nanoparticles indicate that further development is still necessary for the particles to by useful in 3D angiography. In contrast, liposomal contrast agents appear to have reached a state where they can successfully highlight vessels in-vivo.
机译:微CT小动物3D血管造影具有多种应用,例如肿瘤生长评估或肺动脉树形态的定量。由于使用的临床前系统更长的采集时间,传统造影剂在体内没有多大用处。新颖的造影剂,如金纳米颗粒和脂质体碘化提供通过防止快速肾排泄的可能解决方案这一困难。为了评估不同的造影剂,我们填充的聚合物管(20 AWG)用10毫克的Au / ml和30毫克的Au / ml的自制金纳米粒子,商业金纳米颗粒(120毫克的Au / ml)的,商业碘化脂质体溶液的片,30%硫酸钡的溶液,6%的碘造影溶液和100%的盐水(PBS)中。每个管件在我们与填充PBS的使用相同的成像设置管显微CT一起进行成像。在量化和幻象数据的比较,我们造影剂注射后的小鼠成像。我们也从充满造影剂和明胶溶液切除肺部采集的数据。硫酸钡溶液具有最高的测量的放射密度,比PBS高8倍。只有6%的碘造影的解决方案给我们的1.5倍提高放射密度。之间的体内化合物,脂质体的造影剂具有最高的放射密度比PBS中的5倍,其中所述金纳米颗粒(10毫克/毫升)来自PBS几乎难以区分,但更高的浓度显示的对比度改进。我们的比较表明,传统的造影剂具有比目前正在开发的新型化合物更高的放射密度。血管造影用硫酸钡是终端实验,其中所述碘造影剂由肾脏太快速清除是在体内有用的。黄金纳米粒子的小对比度的提高表明,进一步发展还需要在3D血管造影术颗粒由有用。相比之下,脂质体造影剂似乎已经达到了一个状态,他们可以成功地突出了体内的血管。

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