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利用同步辐射从原子尺度到宏观尺度探索生物组织:以毛发为例。

Exploring a biological tissue from atomic to macroscopic scale using synchrotron radiation: example of hair.

作者信息

Briki F, Busson B, Kreplak L, Dumas P, Doucet J

机构信息

LURE, Centre Universitaire Paris-Sud, Orsay, France.

出版信息

Cell Mol Biol (Noisy-le-grand). 2000 Jul;46(5):1005-16.

Abstract

A combined approach, using synchrotron radiation-based diffraction and infrared microspectrometry, has been used to study the structure and molecular composition of hair samples. These methods allowed us to get an insight at different structural scales into the composition and structure of hair. Firstly, information about the configuration of amino-acid residues was obtained at atomic scale, secondly, a model was presented for the geometry and the packing of the microfibrils at medium scale and finally different structural zones were evidenced by microdiffraction at macroscopic scale. We also showed that the two main components of hair--proteins and lipids--are not evenly distributed within the fiber. In addition, these two components exhibit different structure, depending upon their location. Moreover, diffraction and microdiffraction data indicate that the cuticle zone is mainly composed of lipid granules, whereas the cortex and the medulla zones are composed primarily of alpha-keratin. Infrared microspectroscopy, using an enhanced lateral resolution thanks to synchrotron radiation, indicates, on one hand, that the protein structure between the cuticle and cortex are different, and on the other hand, that the concentration of lipids, inside the medulla, is much higher than everywhere else. This work emphasizes the complementarity between both techniques, and highlights the potentialities they can offer in the case of various other studies in biology.

摘要

一种结合了基于同步辐射的衍射和红外显微光谱法的方法,已被用于研究毛发样本的结构和分子组成。这些方法使我们能够在不同的结构尺度上深入了解毛发的组成和结构。首先,在原子尺度上获得了有关氨基酸残基构型的信息;其次,提出了一个关于微原纤维在中等尺度上的几何形状和堆积的模型;最后,通过宏观尺度上的微衍射证实了不同的结构区域。我们还表明,毛发的两个主要成分——蛋白质和脂质——在纤维内分布不均。此外,这两种成分根据其位置呈现出不同的结构。而且,衍射和微衍射数据表明,角质层区域主要由脂质颗粒组成,而皮质和髓质区域主要由α-角蛋白组成。借助同步辐射提高横向分辨率的红外显微光谱法一方面表明,角质层和皮质之间的蛋白质结构不同,另一方面表明,髓质内部的脂质浓度比其他任何地方都高得多。这项工作强调了这两种技术之间的互补性,并突出了它们在生物学其他各种研究中所能提供的潜力。

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