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肿瘤血管生成评估:超顺磁氧化铁纳米颗粒增强磁共振动态成像与 Gd-DTPA 增强磁共振成像在兔 Vx-2 肿瘤模型中的对比研究。

Assessment of tumor angiogenesis: dynamic contrast-enhanced MRI with paramagnetic nanoparticles compared with Gd-DTPA in a rabbit Vx-2 tumor model.

机构信息

Department of Medical Imaging, University of Toronto, Toronto, Canada.

出版信息

Contrast Media Mol Imaging. 2010 May-Jun;5(3):155-61. doi: 10.1002/cmmi.380.

Abstract

The purpose of this study was to evaluate the suitability of a macromolecular MRI contrast agent (paramagnetic nanoparticles, PNs) for the characterization of tumor angiogenesis. Our aim was to estimate the permeability of PNs in developing tumor vasculature and compare it with that of a low molecular weight contrast agent (Gd-DTPA) using dynamic contrast-enhanced MRI (DCE). Male New Zealand white rabbits (n = 5) underwent DCE MRI 12-14 days after Vx-2 tumor fragments were implanted into the left hind limb. Each contrast agent (PNs followed by Gd-DTPA) was evaluated using a DCE protocol and transendothelial transfer coefficient (K(i)) maps were calculated using a two-compartment model. Two regions of interest (ROIs) were located within the tumor core and hindlimb muscle and five ROIs were placed within the tumor rim. Comparisons were performed using repeated measures analysis of variance (ANOVA). The K(i) values estimated using PNs were significantly lower than those obtained for Gd-DTPA (p = 0.018). When PNs and Gd-DTPA data were analyzed separately, significant differences were identified among tumor rim ROIs for PNs (p < 0.0001), but not for Gd-DTPA data (p = 0.34). The mean K(i) for the tumor rim was significantly greater than that of either the core or the hindlimb muscle for both contrast agents (p < 0.05 for each comparison). In summary, the extravasation of Gd-DTPA was far greater than that of PNs, suggesting that PNs can reveal regional differences in tumor vascular permeability that are not otherwise apparent with clinical contrast agents such as Gd-DTPA. These results suggest that PNs show potential for the noninvasive delineation of tumor angiogenesis.

摘要

本研究旨在评估一种大分子 MRI 对比剂(超顺磁纳米颗粒,PNs)用于肿瘤血管生成特征的适用性。我们的目的是使用动态对比增强 MRI(DCE)估计 PNs 在发育中的肿瘤血管中的渗透性,并将其与低分子量对比剂(Gd-DTPA)进行比较。12-14 天后,雄性新西兰白兔(n = 5)将 Vx-2 肿瘤碎片植入左后肢,进行 DCE MRI。使用 DCE 方案评估每个对比剂(PNs 后接 Gd-DTPA),并使用两室模型计算跨内皮转移系数(K(i))图。在肿瘤核心和后肢肌肉内定位 2 个感兴趣区(ROI),在肿瘤边缘内放置 5 个 ROI。使用重复测量方差分析(ANOVA)进行比较。使用 PNs 估计的 K(i)值明显低于 Gd-DTPA(p = 0.018)。当单独分析 PNs 和 Gd-DTPA 数据时,PNs 的肿瘤边缘 ROI 之间存在显著差异(p < 0.0001),而 Gd-DTPA 数据则没有(p = 0.34)。对于两种对比剂,肿瘤边缘的平均 K(i)均明显大于核心或后肢肌肉(对于每个比较,p < 0.05)。综上所述,Gd-DTPA 的外渗明显大于 PNs,这表明 PNs 可以揭示临床对比剂如 Gd-DTPA 无法显示的肿瘤血管通透性的区域差异。这些结果表明 PNs 具有用于非侵入性描绘肿瘤血管生成的潜力。

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