Institute of Diagnostic and Interventional Radiology, University Medical Center Goettingen, Robert Koch Str. 40, Goettingen, Lower Saxony, 37075, Germany.
Clinic of Hematology and Medical Oncology, University Medical Center Goettingen, Robert Koch Str. 40, Goettingen, Lower Saxony, 37075, Germany.
Sci Rep. 2018 Jan 23;8(1):1407. doi: 10.1038/s41598-018-19773-5.
The increasing number of patients with end stage chronic kidney disease not only calls for novel therapeutics but also for pioneering research using convincing preclinical disease models and innovative analytical techniques. The aim of this study was to introduce a virtual histology approach using micro computed tomography (µCT) for the entire murine kidney in order to close the gap between single slice planar histology and a 3D high resolution dataset. An ex vivo staining protocol based on phosphotungstic acid diffusion was adapted to enhance renal soft tissue x-ray attenuation. Subsequent CT scans allowed (i) the detection of the renal cortex, medulla and pelvis in greater detail, (ii) the analysis of morphological alterations, (iii) the quantification of the volume as well as the radio-opacity of these portions and (iv) the quantification of renal fibrotic remodeling based on altered radio-opacity using the unilateral ureteral obstruction model. Thus, virtual histology based on PTA contrast enhanced CT will in future help to refine the outcome of preclinical research on kidney associated murine disease models.
越来越多的终末期慢性肾脏疾病患者不仅需要新的治疗方法,还需要使用有说服力的临床前疾病模型和创新的分析技术进行开创性研究。本研究旨在引入一种使用微计算机断层扫描(µCT)的虚拟组织学方法,以弥合单层平面组织学和 3D 高分辨率数据集之间的差距。基于磷钨酸扩散的体外染色方案被用来增强肾脏软组织的 X 射线衰减。随后的 CT 扫描允许(i)更详细地检测肾脏皮质、髓质和肾盂,(ii)分析形态改变,(iii)定量这些部分的体积和射线不透明度,以及(iv)使用单侧输尿管梗阻模型基于射线不透明度改变来定量评估肾脏纤维化重塑。因此,基于 PTA 对比增强 CT 的虚拟组织学将有助于改进与肾脏相关的小鼠疾病模型的临床前研究结果。