首页> 美国卫生研究院文献>Journal of Synchrotron Radiation >Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples
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Functionalized synchrotron in-line phase-contrast computed tomography: a novel approach for simultaneous quantification of structural alterations and localization of barium-labelled alveolar macrophages within mouse lung samples

机译:功能化同步加速器在线相衬计算机断层扫描:一种同时量化小鼠肺部样品中钡标记的肺泡巨噬细胞结构改变和定位的新方法

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摘要

Functionalized computed tomography (CT) in combination with labelled cells is virtually non-existent due to the limited sensitivity of X-ray-absorption-based imaging, but would be highly desirable to realise cell tracking studies in entire organisms. In this study we applied in-line free propagation X-ray phase-contrast CT (XPCT) in an allergic asthma mouse model to assess structural changes as well as the biodistribution of barium-labelled macrophages in lung tissue. Alveolar macrophages that were barium-sulfate-loaded and fluorescent-labelled were instilled intratracheally into asthmatic and control mice. Mice were sacrificed after 24 h, lungs were kept in situ, inflated with air and scanned utilizing XPCT at the SYRMEP beamline (Elettra Synchrotron Light Source, Italy). Single-distance phase retrieval was used to generate data sets with ten times greater contrast-to-noise ratio than absorption-based CT (in our setup), thus allowing to depict and quantify structural hallmarks of asthmatic lungs such as reduced air volume, obstruction of airways and increased soft-tissue content. Furthermore, we found a higher concentration as well as a specific accumulation of the barium-labelled macrophages in asthmatic lung tissue. It is believe that XPCT will be beneficial in preclinical asthma research for both the assessment of therapeutic response as well as the analysis of the role of the recruitment of macrophages to inflammatory sites.
机译:由于基于X射线吸收的成像灵敏度有限,功能化计算机断层扫描(CT)与标记细胞的结合实际上是不存在的,但在整个生物体中实现细胞跟踪研究将是非常需要的。在这项研究中,我们在过敏性哮喘小鼠模型中应用了在线自由传播X射线相衬CT(XPCT),以评估肺组织中钡标记的巨噬细胞的结构变化和生物分布。将装有硫酸钡并荧光标记的肺泡巨噬细胞气管内滴入哮喘和对照小鼠中。 24小时后将小鼠处死,将肺保持在原位,给空气充气并在SYRMEP光束线(意大利Elettra Synchrotron光源)上使用XPCT进行扫描。使用单距相检索生成的数据集的对比度/噪声比是基于吸收的CT(在我们的设置中)的十倍,因此可以描绘和量化哮喘肺的结构特征,例如气量减少,阻塞气道和增加的软组织含量。此外,我们发现哮喘肺组织中钡标记的巨噬细胞具有更高的浓度以及特定的积累。据信,XPCT将在临床前哮喘研究中有益于评估治疗反应以及分析巨噬细胞募集至炎症部位的作用。

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