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μCT of ex-vivo stained mouse hearts and embryos enables a precise match between 3D virtual histology classical histology and immunochemistry

机译:体外染色的小鼠心脏和胚胎的μCT可实现3D虚拟组织学经典组织学和免疫化学之间的精确匹配

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摘要

The small size of the adult and developing mouse heart poses a great challenge for imaging in preclinical research. The aim of the study was to establish a phosphotungstic acid (PTA) ex-vivo staining approach that efficiently enhances the x-ray attenuation of soft-tissue to allow high resolution 3D visualization of mouse hearts by synchrotron radiation based μCT (SRμCT) and classical μCT. We demonstrate that SRμCT of PTA stained mouse hearts ex-vivo allows imaging of the cardiac atrium, ventricles, myocardium especially its fibre structure and vessel walls in great detail and furthermore enables the depiction of growth and anatomical changes during distinct developmental stages of hearts in mouse embryos. Our x-ray based virtual histology approach is not limited to SRμCT as it does not require monochromatic and/or coherent x-ray sources and even more importantly can be combined with conventional histological procedures. Furthermore, it permits volumetric measurements as we show for the assessment of the plaque volumes in the aortic valve region of mice from an ApoE-/- mouse model. Subsequent, Masson-Goldner trichrome staining of paraffin sections of PTA stained samples revealed intact collagen and muscle fibres and positive staining of CD31 on endothelial cells by immunohistochemistry illustrates that our approach does not prevent immunochemistry analysis. The feasibility to scan hearts already embedded in paraffin ensured a 100% correlation between virtual cut sections of the CT data sets and histological heart sections of the same sample and may allow in future guiding the cutting process to specific regions of interest. In summary, since our CT based virtual histology approach is a powerful tool for the 3D depiction of morphological alterations in hearts and embryos in high resolution and can be combined with classical histological analysis it may be used in preclinical research to unravel structural alterations of various heart diseases.
机译:在临床前研究中,成年小鼠心脏和发育中的小鼠心脏的小尺寸对成像提出了巨大的挑战。该研究的目的是建立一种磷钨酸(PTA)体外染色方法,该方法可以有效地增强软组织的X射线衰减,从而可以通过基于同步辐射的μCT(SRμCT)和经典方法对小鼠心脏进行高分辨率3D可视化μCT。我们证明了PTA染色的小鼠心脏离体的SRμCT可以使心脏心房,心室,心肌尤其是其纤维结构和血管壁成像更加详细,并且还可以描述小鼠心脏不同发育阶段的生长和解剖变化胚胎。我们基于x射线的虚拟组织学方法不限于SRμCT,因为它不需要单色和/或相干的x射线源,甚至更重要的是可以与常规组织学程序结合使用。此外,它允许进行体积测量,如我们所示,用于评估来自ApoE-/-小鼠模型的小鼠主动脉瓣区域中的斑块体积。随后,PTA染色样品的石蜡切片的Masson-Goldner三色染色显示完整的胶原蛋白和肌肉纤维以及内皮细胞CD31的免疫组织化学染色呈阳性,这说明我们的方法不会阻止免疫化学分析。扫描已经包埋在石蜡中的心脏的可行性确保了CT数据集的虚拟切割部分与同一样本的组织学心脏部分之间具有100%的相关性,并可能在将来将切割过程引导至特定的目标区域。总之,由于我们基于CT的虚拟组织学方法是高分辨率以高分辨率3D描绘心脏和胚胎形态变化的强大工具,并且可以与经典组织学分析结合使用,因此可以在临床前研究中用于阐明各种心脏的结构变化疾病。

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