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首页> 外文期刊>Micron: The international research and review journal for microscopy >The extracellular matrix of the human aortic wall: Ultrastructural observations by FEG-SEM and by tapping-mode AFM
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The extracellular matrix of the human aortic wall: Ultrastructural observations by FEG-SEM and by tapping-mode AFM

机译:人主动脉壁的细胞外基质:FEG-SEM和敲击模式AFM的超微结构观察

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Fragments of human ascending aorta harvested during heart surgery were cryofractured and observed by scanning electron microscopy (SEM) and atomic force microscopy (AFM). Elastic fibers appear as irregular, undulated laminae of variable size and shape. Their surface shows an evident fibrous texture suggestive of a criss-crossed, delicate filamentous scaffold and is marked by a number of features such as ridges, holes and protruding ribs. At higher magnification, both SEM and AFM show the surface composed of a finely granular material, with a bead size of approximately 20 nm. However, the thickness of the metal coating in one case, and the tip convolution effect on the other, may equally result in an artifactual enlargement of the structures, so that the beads may be significantly smaller. The surfaces created by the fracture always appear smooth and compact and with this technique do not reveal significant detail. The collagen component is mostly represented by small, uniform fibrils gathered in flexuous bundles and following a wavy course not unlike that of the elastic laminae. An orthogonal lattice of small proteoglycans is readily evident even without a specific treatment. Occasionally, the fibrils appear encrusted or engulfed in a grainy matrix reminiscent of the elastic fiber surface. Fluid Tapping-Mode Atomic Force Microscopy simultaneously reveals the surface-bound proteoglycans and the inner architecture of the fibrils, composed of smaller subunits following a spiral course with a winding angle of approximately 17°.
机译:将心脏手术中收获的人升主动脉碎片冷冻破碎,并通过扫描电子显微镜(SEM)和原子力显微镜(AFM)进行观察。弹性纤维表现为大小和形状可变的不规则,起伏的薄片。它们的表面显示出明显的纤维质感,暗示了纵横交错的精致丝状脚手架,并具有许多特征,例如脊,孔和突出的肋骨。在更高的放大倍数下,SEM和AFM均显示出由细颗粒材料组成的表面,其珠子尺寸约为20 nm。但是,在一种情况下,金属涂层的厚度以及在另一种情况下的尖端卷积效应可能同样导致结构的人为扩大,从而珠子可能明显变小。断裂产生的表面总是显得光滑,致密,并且使用这种技术并不能显示出明显的细节。胶原蛋白成分主要表现为细小,均匀的原纤维,聚集在弯曲的束中,并呈波浪状,与弹性薄片不同。即使没有特殊处理,小蛋白聚糖的正交晶格也很明显。有时,原纤维被包裹在或包裹在颗粒状的基质中,使人联想到弹性纤维的表面。流体攻丝模式原子力显微镜同时显示了表面结合的蛋白聚糖和原纤维的内部结构,该原纤维由较小的亚基组成,并以大约17°的缠绕角螺旋状运动。

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