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Physical, Spatial, and Molecular Aspects of Extracellular Matrix of In Vivo Niches and Artificial Scaffolds Relevant to Stem Cells Research

机译:与干细胞研究相关的体内利基和人工支架的体内,空间和分子方面

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摘要

Extracellular matrix can influence stem cell choices, such as self-renewal, quiescence, migration, proliferation, phenotype maintenance, differentiation, or apoptosis. Three aspects of extracellular matrix were extensively studied during the last decade: physical properties, spatial presentation of adhesive epitopes, and molecular complexity. Over 15 different parameters have been shown to influence stem cell choices. Physical aspects include stiffness (or elasticity), viscoelasticity, pore size, porosity, amplitude and frequency of static and dynamic deformations applied to the matrix. Spatial aspects include scaffold dimensionality (2D or 3D) and thickness; cell polarity; area, shape, and microscale topography of cell adhesion surface; epitope concentration, epitope clustering characteristics (number of epitopes per cluster, spacing between epitopes within cluster, spacing between separate clusters, cluster patterns, and level of disorder in epitope arrangement), and nanotopography. Biochemical characteristics of natural extracellular matrix molecules regard diversity and structural complexity of matrix molecules, affinity and specificity of epitope interaction with cell receptors, role of non-affinity domains, complexity of supramolecular organization, and co-signaling by growth factors or matrix epitopes. Synergy between several matrix aspects enables stem cells to retain their function in vivo and may be a key to generation of long-term, robust, and effective in vitro stem cell culture systems.
机译:细胞外基质可以影响干细胞选择,例如自我更新,静态,迁移,增殖,表型维持,分化或细胞凋亡。在过去十年期间,细胞外基质的三个方面是广泛的研究:物理性质,粘合剂表层的空间呈递和分子复杂性。已经显示出超过15种不同的参数来影响干细胞选择。物理方面包括刚度(或弹性),粘弹性,孔径,孔隙率,静脉振幅和施加到基质的动态变形的振幅和频率。空间方面包括支架维度(2D或3D)和厚度;细胞极性;电池粘附表面的区域,形状和微观地形;表位浓度,表位聚类特征(每簇表位的表位数,簇内的表位之间的间隔,间隙排列中的单独簇,簇模式和病症水平之间的间隔)和纳米复印件。天然细胞外基质分子的生化特征是基质分子的分集和结构复杂性,表位与细胞受体相互作用的亲和力和特异性,非亲和结构域的作用,超分子组织的复杂性,并通过生长因子或基质表位共信用。几种基质方面之间的协同作用使干细胞能够在体内保留其功能,并且可以是在体外干细胞培养系统中产生长期,鲁棒性和有效的关键。

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