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Pharmacokinetic Changes Induced by Focused Ultrasound in Glioma-Bearing Rats as Measured by Dynamic Contrast-Enhanced MRI

机译:动态聚焦增强MRI测量聚焦超声在胶质瘤大鼠体内诱发的药代动力学变化

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摘要

Focused ultrasound (FUS) combined with microbubbles has been shown to be a noninvasive and targeted drug delivery technique for brain tumor treatment. The purpose of this study was to measure the kinetics of Gadolinium diethylenetriamine pentaacetic acid (Gd-DTPA) in glioma-bearing rats in the presence of FUS-induced blood-brain barrier disruption (BBB-D) by magnetic resonance imaging (MRI). A total of ten glioma-bearing rats (9–12 weeks, 290–340 g) were used in this study. Using dynamic contrast-enhanced (DCE)-MRI, the spatial permeability of FUS-induced BBB-D was evaluated and the kinetic parameters were calculated by a general kinetic model (GKM). The results demonstrate that the mean K trans of the sonicated tumor (0.128±0.019 at 20 min and 0.103±0.023 at 24 h after sonication, respectively) was significantly higher than (2.46-fold at 20 min and 1.78-fold at 24 h) that of the contralateral (non-sonicated) tumor (0.052±0.019 at 20 min and 0.058±0.012 at 24 h after sonication, respectively). In addition, the transfer constant K trans in the sonicated tumor correlated strongly with tissue EB extravasation (R = 0.95), which suggests that DCE-MRI may reflect drug accumulation in the brain. Histological observations showed no macroscopic damage except for a few small erythrocyte extravasations. The current study demonstrates that DCE-MRI can monitor the dynamics of the FUS-induced BBB-D process and constitutes a useful tool for quantifying BBB permeability in tumors.
机译:聚焦超声(FUS)与微泡相结合已被证明是一种用于脑肿瘤治疗的非侵入性和靶向药物递送技术。这项研究的目的是通过磁共振成像(MRI)测量在FUS诱导的血脑屏障破坏(BBB-D)存在的神经胶质瘤大鼠中of二乙三胺五乙酸(Gd-DTPA)的动力学。这项研究总共使用了10只荷胶质瘤大鼠(9-12周,290-340 g)。使用动态对比度增强(DCE)-MRI,评估FUS诱导的BBB-D的空间渗透性,并通过通用动力学模型(GKM)计算动力学参数。结果表明,超声处理后的肿瘤的平均K trans值(超声处理后20 min分别为0.128±0.019和超声处理24 h分别为0.103±0.023)明显高于(超声处理20 min的2.46倍和24 h的1.78倍)。对侧(非超声处理)肿瘤的超声诊断值(超声处理后20分钟为0.052±0.019,超声处理24小时后为0.058±0.012)。此外,超声处理后的肿瘤中的转移常数K trans与组织EB外渗密切相关(R = 0.95),这表明DCE-MRI可能反映了大脑中的药物蓄积。组织学观察结果表明,除了少量少量红细胞外渗外,没有肉眼可见的损害。当前的研究表明DCE-MRI可以监测FUS诱导的BBB-D过程的动力学,并构成量化肿瘤中BBB渗透性的有用工具。

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