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Micro-CT Imaging of Tumor Angiogenesis: Quantitative Measures Describing Micromorphology and Vascularization

机译:肿瘤血管生成的微CT成像:描述微观形态和血管化的定量测量。

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摘要

Angiogenesis is a hallmark of cancer, and its noninvasive visualization and quantification are key factors for facilitating translational anticancer research. Using four tumor models characterized by different degrees of aggressiveness and angiogenesis, we show that the combination of functional in vivo and anatomical ex vivo X-ray micro-computed tomography (μCT) allows highly accurate quantification of relative blood volume (rBV) and highly detailed three-dimensional analysis of the vascular network in tumors. Depending on the tumor model, rBV values determined using in vivo μCT ranged from 2.6% to 6.0%, and corresponds well with the values assessed using IHC. Using ultra-high-resolution ex vivo μCT, blood vessels as small as 3.4 mm and vessel branches up to the seventh order could be visualized, enabling a highly detailed and quantitative analysis of the three-dimensional micromorphology of tumor vessels. Microvascular parameters such as vessel size and vessel branching correlated very well with tumor aggressiveness and angiogenesis. In rapidly growing and highly angiogenic A431 tumors, the majority of vessels were small and branched only once or twice, whereas in slowly growing A549 tumors, the vessels were much larger and branched four to seven times. Thus, we consider that combining highly accurate functional with highly detailed anatomical μCT is a useful tool for facilitating high-throughput, quantitative, and translational (anti-) angiogenesis and antiangiogenesis research.
机译:血管生成是癌症的标志,其无创可视化和量化是促进转化抗癌研究的关键因素。使用四个以不同程度的侵略性和血管生成为特征的肿瘤模型,我们表明功能性体内和解剖离体X射线微计算机断层扫描(μCT)的组合可以对相对血容量(rBV)进行高度准确的定量,并且高度详细肿瘤血管网络的三维分析。取决于肿瘤模型,使用体内μCT测定的rBV值在2.6%至6.0%的范围内,与使用IHC评估的值非常吻合。使用超高分辨率离体μCT,可以观察到小至3.4 mm的血管和多达七阶的血管分支,从而可以对肿瘤血管的三维微观形态进行高度详细和定量的分析。微血管参数,例如血管大小和血管分支与肿瘤侵袭性和血管生成非常相关。在快速生长且高度血管生成的A431肿瘤中,大多数血管较小且仅分支一次或两次,而在缓慢生长的A549肿瘤中,血管较大且分支四至七次。因此,我们认为将高精度的功能与高度详细的解剖μCT相结合是促进高通量,定量和翻译(抗)血管生成和抗血管生成研究的有用工具。

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