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聚合层粘连蛋白的分形性质。

A fractal nature for polymerized laminin.

作者信息

Hochman-Mendez Camila, Cantini Marco, Moratal David, Salmeron-Sanchez Manuel, Coelho-Sampaio Tatiana

机构信息

Institute of Biomedical Sciences, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil; Institute of Biophysics Carlos Chagas Filho, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.

Division of Biomedical Engineering, School of Engineering, University of Glasgow, Glasgow, United Kingdom.

出版信息

PLoS One. 2014 Oct 8;9(10):e109388. doi: 10.1371/journal.pone.0109388. eCollection 2014.

Abstract

Polylaminin (polyLM) is a non-covalent acid-induced nano- and micro-structured polymer of the protein laminin displaying distinguished biological properties. Polylaminin stimulates neuritogenesis beyond the levels achieved by ordinary laminin and has been shown to promote axonal regeneration in animal models of spinal cord injury. Here we used confocal fluorescence microscopy (CFM), scanning electron microscopy (SEM) and atomic force microscopy (AFM) to characterize its three-dimensional structure. Renderization of confocal optical slices of immunostained polyLM revealed the aspect of a loose flocculated meshwork, which was homogeneously stained by the antibody. On the other hand, an ordinary matrix obtained upon adsorption of laminin in neutral pH (LM) was constituted of bulky protein aggregates whose interior was not accessible to the same anti-laminin antibody. SEM and AFM analyses revealed that the seed unit of polyLM was a flat polygon formed in solution whereas the seed structure of LM was highly heterogeneous, intercalating rod-like, spherical and thin spread lamellar deposits. As polyLM was visualized at progressively increasing magnifications, we observed that the morphology of the polymer was alike independently of the magnification used for the observation. A search for the Hausdorff dimension in images of the two matrices showed that polyLM, but not LM, presented fractal dimensions of 1.55, 1.62 and 1.70 after 1, 8 and 12 hours of adsorption, respectively. Data in the present work suggest that the intrinsic fractal nature of polymerized laminin can be the structural basis for the fractal-like organization of basement membranes in the neurogenic niches of the central nervous system.

摘要

聚层粘连蛋白(polyLM)是层粘连蛋白经非共价酸诱导形成的纳米和微观结构聚合物,具有独特的生物学特性。聚层粘连蛋白刺激神经突生长的程度超过普通层粘连蛋白,并且已证实在脊髓损伤动物模型中能促进轴突再生。在此,我们使用共聚焦荧光显微镜(CFM)、扫描电子显微镜(SEM)和原子力显微镜(AFM)来表征其三维结构。免疫染色的polyLM共聚焦光学切片的渲染图显示出一种松散的絮凝网状结构,该结构被抗体均匀染色。另一方面,在中性pH条件下吸附层粘连蛋白得到的普通基质(LM)由大量蛋白质聚集体组成,其内部无法被相同的抗层粘连蛋白抗体识别。SEM和AFM分析表明,polyLM的种子单元是在溶液中形成的扁平多边形,而LM的种子结构高度异质,夹杂着棒状、球状和薄片状沉积物。随着polyLM在逐渐增加的放大倍数下被观察到,我们发现聚合物的形态与用于观察的放大倍数无关。对两种基质图像的豪斯多夫维数搜索显示,polyLM在吸附1、8和12小时后分别呈现分形维数为1.55、1.62和1.70,而LM则没有。本研究中的数据表明,聚合层粘连蛋白的内在分形性质可能是中枢神经系统神经源性微环境中基底膜类分形组织的结构基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd07/4190072/541d1b7c7af4/pone.0109388.g001.jpg

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