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Whole-Body Imaging of a Hypercholesterolemic Female Zebrafish by Using Synchrotron X-Ray Micro-CT

机译:同步X射线微CT的高胆固醇血症雌性斑马鱼的全身成像。

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Zebrafish has been used as a powerful model system in biological and biomedical studies studying development and diseases. Comparative, functional, and developmental studies on zebrafish morphology require precise visualization of 3D morphological structures. Few methods that can visualize whole-volume of zebrafish tissues are available because optical bio-imaging methods are limited by pigmentation and hard tissues. To overcome these limitations, the 3D microstructures of a hypercholesterolemic zebrafish model are visualized using synchrotron X-ray micro-computed tomography (SR-mu CT). The model spatial resolution ranged from sub- to several microns. The microstructures of various zebrafish organs are observed by combining high-contrast staining (osmium tetroxide and uranyl acetate) and embedding a protocol to enhance the image contrast of soft tissues. Furthermore, blood vessels are identified using a barium sulfate injection technique. The internal organs and cells, such as liver, intestine, oocytes, and adipocytes, of a hypercholesterolemic zebrafish are compared with those of normal organs and cells. The SR-mu CT is useful for understanding the pathogenesis of circulatory vascular diseases by detecting the modifications in the 3D morphological structures of the whole body of the zebrafish. This bio-imaging technique can be readily used to study other disease models.
机译:斑马鱼已被用作研究发育和疾病的生物和生物医学研究的强大模型系统。斑马鱼形态的比较,功能和发展研究要求3D形态结构的精确可视化。由于光学生物成像方法受色素沉着和硬组织的限制,因此很少有方法可以显示整个体积的斑马鱼组织。为了克服这些限制,使用同步加速器X射线微计算机断层扫描(SR-mu CT)可视化了高胆固醇血斑马鱼模型的3D微观结构。模型的空间分辨率范围从亚微米到几微米。通过结合高对比度染色(四氧化os和乙酸铀酰)并嵌入规程以增强软组织的图像对比度,可以观察到各种斑马鱼器官的微观结构。此外,使用硫酸钡注射技术鉴定血管。将高胆固醇血症斑马鱼的内部器官和细胞(例如肝脏,肠,卵母细胞和脂肪细胞)与正常器官和细胞的内部器官和细胞进行比较。 SR-mu CT通过检测斑马鱼全身的3D形态结构的变化,有助于了解循环血管疾病的发病机理。这种生物成像技术可以很容易地用于研究其他疾病模型。

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