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X-ray microtomography reveals a lattice-like network within aortic elastic lamellae

机译:X射线显微镜摄影显示主动脉弹性Lamellae内的晶格状网络

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摘要

The arterial wall consists of three concentric layers: intima, media, and adventitia. Beyond their resident cells, these layers are characterized by an extracellular matrix (ECM), which provides both biochemical and mechanical support. Elastin, the major component of arterial ECM, is present in the medial layer and organized in concentric elastic lamellae that confer resilience to the wall. We explored the arterial wall structures from C57Bl6 (control), db/db (diabetic), and ApoE?/? (atherogenic) mice aged 3 months using synchrotron X-ray computed microtomography on fixed and unstained tissues with a large image field (8 mm3 ). This approach combined a good resolution (0.83 μm/voxel), large 3D imaging field. and an excellentsignal to noise ratio conferred by phase-contrast imaging. We determined from 2D virtual slices that the thickness of intramural ECM structures was comparable between strains but automated image analysis of the 3D arterial volumes revealed a lattice-like network within concentric elastic lamellae. We hypothesize that this network could play a role in arterial mechanics. This work demonstrates that phase-contrast synchrotron X-ray computed microtomography is a powerful technique which to characterize unstained soft tissues.
机译:动脉墙由三个同心层组成:内部,媒体和患者。超出其驻留电池,这些层的特征在于细胞外基质(ECM),其提供生物化学和机械支撑。弹性蛋白,动脉ECM的主要成分存在于内侧层中,并以同心的弹性薄片组织成赋予墙壁的弹性。我们探索了C57BL6(控制),DB / DB(糖尿病)和Apoe的动脉壁结构?/? (静血电)小鼠3个月使用Synchrotron X射线计算的Microtopography在固定和未染色的组织上具有大图像场(8mm3)。该方法组合了良好的分辨率(0.83μm/ voxel),大3D成像场。和相位对比度成像赋予的卓越噪声比。我们根据2D虚拟切片确定,抗脉络膜结构的厚度在菌株之间具有可比性,但是3D动力量的自动图像分析显示在同心弹性薄片内的晶格状网络。我们假设这个网络可以在动脉机制中发挥作用。这项工作表明,相位对比同步X射线计算的微观图是一种强大的技术,其要表征未染色的软组织。

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