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Evidence of a Discrete Axial Structure in Unimodal Collagen Fibrils

机译:单峰胶原原纤维中离散轴结构的证据

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摘要

The collagen fibrils of cornea, blood vessel walls, skin, gut, interstitial tissues, the sheath of tendons and nerves, and other connective tissues are known to be made of helically wound subfibrils winding at a constant angle to the fibril axis. A critical aspect of this model is that it requires the axial microfibrils to warp in an implausible way. This architecture lends itself quite naturally to an epitaxial layout where collagen microfibrils envelop a central core of a different nature. Here we demonstrate an axial domain in collagen fibrils from rabbit nerve sheath and tendon sheath by means of transmission electron microscopy after a histochemical reaction designed to evidence all polysaccharides and by tapping-mode atomic force microscopy. This axial domain was consistently found in fibrils with helical microfibrils but was not observed in tendon, whose microfibrils run longitudinal and parallel.
机译:已知角膜,血管壁,皮肤,肠,间质组织,腱和神经的鞘以及其他结缔组织的胶原原纤维是由螺旋缠绕的亚原纤维制成的,该副纤维相对于原纤维轴以恒定的角度缠绕。该模型的一个关键方面是,它要求轴向微纤维以难以置信的方式翘曲。这种结构非常自然地适合于外延布局,其中胶原微纤维包裹着不同性质的核心。在这里,我们在组织化学反应后通过透射电子显微镜证实了来自兔神经鞘和腱鞘的胶原纤维的轴向结构域,该反应旨在证明所有多糖并通过敲击模式原子力显微镜观察。在具有螺旋微纤丝的原纤维中始终存在该轴向区域,但在肌腱中未观察到,该肌腱的微纤丝纵向和平行。

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