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首页> 外文期刊>Investigative radiology >Influence of ultrasound induced cavitation on magnetic resonance imaging contrast in the rat liver in the presence of macromolecular contrast agent.
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Influence of ultrasound induced cavitation on magnetic resonance imaging contrast in the rat liver in the presence of macromolecular contrast agent.

机译:在大分子造影剂存在下,超声空化对大鼠肝脏磁共振成像对比度的影响。

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OBJECTIVES: Local drug delivery by ultrasound (US)-induced cavitation is a promising strategy for increasing the drug concentration at the target location and for decreasing the systemic toxicity effects. The presence of microbubbles during sonication at the targeted location improves the likelihood for cavitation that can be exploited to increase the capillary permeability. The objective of this work was to evaluate the magnetic resonance imaging (MRI) contrast changes in hepatic tissue in vivo, induced by US-triggered cavitation and destruction of microbubbles (Sonovue), in the presence of a coinjected blood pool MRI contrast agent (Vistarem) used as a reporter macromolecule. The potential tissue damage induced by microbubbles destruction was also evaluated by histology. METHOD: The change in the hepatic distribution of the macromolecular MRI contrast agent associated with cavitation was monitored at 1.5 T with a look-locker fast inversion recovery sequence to map the longitudinal relaxation rates, before and during 1 hour after intravenous administration of Vistarem and Sonovue. In 1 group of rats (n = 5), these microbubbles were immediately destroyed with a clinical echograph, using a high mechanical index (MI = 1.5) at low frequency (2 MHz). The control group (n = 7) received identical injections without application of US. The parametric relaxation rate images were computed, and the changes in time were analyzed to account for the potential effect of microbubble destruction by US on the permeability of the hepatic vessels. The animals were killed 1 day after the experiment for routine histology of the liver. RESULTS: For both groups of animals, after an initial increase, a transient decay of the longitudinal relaxation rate was observed, followed by a constant plateau after 20 minutes. The analysis of the mean relaxation rates in the liver showed significant (P < 0.01) higher values for the group with destruction of microbubbles as compared with the control group. The US-triggered cavitation and destruction of microbubble with the proposed protocol suggests an increased concentration of Vistarem of a factor 2 in the hepatic tissue. No tissue damage was observed at the microscopic analysis. CONCLUSION: The absence of tissue alterations indicates that the destruction of this US contrast agent could be safe in vivo under an appropriate choice of the sonication parameters. This approach opens new perspectives for translation toward clinical applications of local drug delivery. Ultrasound-mediated microbubble destruction may help in increasing the local concentration of a drug currently limited by the endothelial barrier. In addition, it may help in reducing the systemic toxicity to normal cells in standard chemotherapies, because the enhanced capillary permeability effect can be spatially adjusted by selecting the sonicated region.
机译:目的:超声(US)诱导的空化局部给药是增加靶部位药物浓度并降低全身毒性作用的一种有前途的策略。在超声处理过程中目标位置的微气泡的存在提高了可用于增加毛细血管渗透性的气穴现象的可能性。这项工作的目的是评估在共注入血池MRI造影剂(Vistarem)的存在下,由US触发的空化和微泡破坏(Sonovue)引起的体内肝组织磁共振成像(MRI)对比变化。 )用作报告分子。还通过组织学评估了由微泡破坏引起的潜在组织损伤。方法:在静脉输注Vistarem和Sonovue 1小时之前和之后的1小时内,使用外观锁快速反转恢复序列在1.5 T下监测与空化相关的大分子MRI造影剂的肝脏分布变化,以绘制纵向舒张率。 。在1组大鼠(n = 5)中,这些微气泡立即用临床回波图破坏,并在低频(2 MHz)下使用高机械指数(MI = 1.5)。对照组(n = 7)在未应用US的情况下接受了相同的注射。计算参数弛豫率图像,并分析时间变化,以说明US对微泡破坏对肝血管通透性的潜在影响。实验后1天,按照常规肝组织学将动物处死。结果:对于这两组动物,在初始增加后,观察到纵向松弛率的瞬时衰减,然后在20分钟后保持稳定。与对照组相比,微泡破坏组的肝脏平均松弛率分析显示出较高的值(P <0.01)。美国对空泡的空泡破坏和拟议方案的破坏表明,肝组织中Vistarem因子2的浓度增加。在显微镜分析中未观察到组织损伤。结论:没有组织改变表明在适当选择超声处理参数的情况下,这种US造影剂的销毁在体内可能是安全的。这种方法为翻译本地药物的临床应用开辟了新的前景。超声介导的微泡破坏可能有助于增加目前受内皮屏障限制的药物的局部浓度。另外,由于可以通过选择超声处理的区域在空间上调节增强的毛细血管通透性效果,因此可以帮助减少对标准化学疗法中正常细胞的全身毒性。

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