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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >Quantitative Micro-Computed Tomography Imaging of Vascular Dysfunction in Progressive Kidney Diseases
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Quantitative Micro-Computed Tomography Imaging of Vascular Dysfunction in Progressive Kidney Diseases

机译:进行性肾脏疾病的血管功能障碍的定量微计算机断层扫描成像

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Progressive kidney diseases and renal fibrosis are associated with endothelial injury and capillary rarefaction. However, our understanding of these processes has been hampered by the lack of tools enabling the quantitative and noninvasive monitoring of vessel functionality. Here, we used micro-computed tomography ( μ CT) for anatomical and functional imaging of vascular alterations in three murine models with distinct mechanisms of progressive kidney injury: ischemia-reperfusion (I/R, days 1–56), unilateral ureteral obstruction (UUO, days 1–10), and Alport mice (6–8 weeks old). Contrast-enhanced in vivo μ CT enabled robust, noninvasive, and longitudinal monitoring of vessel functionality and revealed a progressive decline of the renal relative blood volume in all models. This reduction ranged from ?20% in early disease stages to ?61% in late disease stages and preceded fibrosis. Upon Microfil perfusion, high-resolution ex vivo μ CT allowed quantitative analyses of three-dimensional vascular networks in all three models. These analyses revealed significant and previously unrecognized alterations of preglomerular arteries: a reduction in vessel diameter, a prominent reduction in vessel branching, and increased vessel tortuosity. In summary, using μ CT methodology, we revealed insights into macro-to-microvascular alterations in progressive renal disease and provide a platform that may serve as the basis to evaluate vascular therapeutics in renal disease.
机译:进行性肾脏疾病和肾纤维化与内皮损伤和毛细血管稀疏有关。但是,由于缺乏能够对血管功能进行定量和非侵入性监测的工具,我们对这些过程的理解受到了阻碍。在这里,我们使用微计算机断层扫描(μCT)对三种具有渐进性肾损伤机制的小鼠模型进行了血管改变的解剖学和功能成像:缺血再灌注(I / R,第1至56天),单侧输尿管阻塞( UUO,第1-10天)和Alport小鼠(6-8周大)。体内对比增强的CT能够对血管功能进行可靠,无创和纵向的监测,并揭示了所有模型中肾脏相对血容量的逐渐下降。降低的范围从疾病早期的20%到疾病晚期和纤维化之前的61%。进行Microfil灌注后,高分辨率的离体μCT可以对所有三个模型中的三维血管网络进行定量分析。这些分析显示了肾小球前动脉的显着变化和以前未曾认识到的变化:血管直径的减小,血管分支的明显减少以及血管曲折性的增加。总之,使用μCT方法,我们揭示了对进行性肾脏疾病中的宏到微血管改变的见识,并提供了一个平台,可作为评估肾脏疾病中血管治疗的基础。

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