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Electron microscopy shows periodic structure in collagen fibril cross sections.

机译:电子显微镜显示胶原原纤维横截面中的周期性结构。

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摘要

X-ray diffraction was used to monitor the effects of electron microscope fixation, staining, and embedding procedures on the preservation of the three-dimensional crystalline order in collagen fibrils of rat tail tendon. A procedure is described in which the characteristic 3.8-nm lateral spacing is preserved, with increased contrast, in the diffraction pattern of the embedded fiber. This spacing is correlated with the separation between the tangentially oriented equally spaced lines of density observed in electron microscope ultrathin fibril cross sections of the same material. Optical diffraction of electron micrographs gives an objective measure of the periodicity and suggests that the fibril is composed of concentrically oriented crystalline domains. These observations, when combined with a recent interpretation of the native x-ray diffraction data [Hulmes, D. J. S. & Miller, A. (1979) Nature (London) 282, 878-880] suggest a tentative model for the three-dimensional structure of collagen fibrils.
机译:X射线衍射用于监测电子显微镜固定,染色和包埋程序对大鼠尾肌腱胶原纤维中三维晶体顺序的保持作用。描述了一种程序,其中在嵌入光纤的衍射图中保留了特征性的3.8 nm横向间距,并增加了对比度。该间距与在相同材料的电子显微镜超细原纤维横截面中观察到的切向取向的等间距密度线之间的间距相关。电子显微照片的光学衍射给出了周期性的客观度量,并表明原纤维由同心取向的晶域组成。这些观察结果与最近对本机X射线衍射数据的解释结合在一起[Hulmes,DJS&Miller,A.(1979)Nature(London)282,878-880]提出了一个关于三维三维结构的初步模型。胶原纤维。

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