Missbach-Guentner Jeannine, Dullin Christian, Kimmina Sarah, Zientkowska Marta, Domeyer-Missbach Melanie, Malz Cordula, Grabbe Eckhardt, Stühmer Walter, Alves Frauke
Department of Hematology and Oncology, University Medicine, Robert-Koch-Str. 40, 37075 Göttingen, Germany.
Neoplasia. 2008 Jul;10(7):663-73. doi: 10.1593/neo.08270.
Noninvasive methods are strongly needed to detect and quantify not only tumor growth in murine tumor models but also the development of vascularization and necrosis within tumors. This study investigates the use of a new imaging technique, flat-panel detector volume computed tomography (fpVCT), to monitor in vivo tumor progression and structural changes within tumors of two murine carcinoma models. After tumor cell inoculation, single fpVCT scans of the entire mice were performed at different time points. The acquired isotropic, high-resolution volume data sets enable an accurate real-time assessment and precise measurements of tumor volumes. Spreading of contrast agent-containing blood vessels around and within the tumors was clearly visible over time. Furthermore, fpVCT permits the identification of differences in the uptake of contrast media within tumors, thus delineating necrosis, tumor tissues, and blood vessels. Classification of tumor tissues based on the decomposition of the underlying mixture distribution of tissue-related Hounsfield units allowed the quantitative acquisition of necrotic tissues at each time point. Morphologic alterations of the tumor depicted by fpVCT were confirmed by histopathologic examination. Concluding, our data show that fpVCT may be highly suitable for the noninvasive evaluation of tumor responses to anticancer therapies during the course of the disease.
不仅在小鼠肿瘤模型中检测和量化肿瘤生长,而且检测和量化肿瘤内血管生成和坏死的发展,都迫切需要非侵入性方法。本研究调查了一种新的成像技术——平板探测器容积计算机断层扫描(fpVCT),用于监测两种小鼠癌模型肿瘤的体内进展和肿瘤内的结构变化。在接种肿瘤细胞后,在不同时间点对整个小鼠进行单次fpVCT扫描。获取的各向同性、高分辨率容积数据集能够对肿瘤体积进行准确的实时评估和精确测量。随着时间的推移,含造影剂的血管在肿瘤周围和内部的扩散清晰可见。此外,fpVCT可以识别肿瘤内造影剂摄取的差异,从而勾勒出坏死区域、肿瘤组织和血管。基于与组织相关的亨氏单位的潜在混合分布分解对肿瘤组织进行分类,能够在每个时间点定量获取坏死组织。fpVCT所描绘的肿瘤形态学改变通过组织病理学检查得到证实。总之,我们的数据表明,fpVCT可能非常适合在疾病过程中对肿瘤对抗癌治疗的反应进行非侵入性评估。