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首页> 外文期刊>Biomaterials >Dense type I collagen matrices that support cellular remodeling and microfabrication for studies of tumor angiogenesis and vasculogenesis in vitro.
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Dense type I collagen matrices that support cellular remodeling and microfabrication for studies of tumor angiogenesis and vasculogenesis in vitro.

机译:支持细胞重塑和微加工的致密I型胶原蛋白基质,用于体外研究肿瘤血管生成和血管生成。

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摘要

Type I collagen is a favorable substrate for cell adhesion and growth and is remodelable by many tissue cells; these characteristics make it an attractive material for the study of dynamic cellular processes. Low mass fraction (1.0-3.0 mg/ml), hydrated collagen matrices used for three-dimensional cell culture permit cellular movement and remodeling, but their microstructure and mechanics fail to mimic characteristics of many extracellular matrices in vivo and limit the definition of fine-scale geometrical features (<1 mm) within scaffolds. In this study, we worked with hydrated type I collagen at mass fractions between 3.0 and 20 mg/ml to define the range of densities over which the matrices support both microfabrication and cellular remodeling. We present pore and fiber dimensions based on confocal microscopy and longitudinal modulus and hydraulic permeability based on confined compression. We demonstrate faithful reproduction of simple pores of 50 mum-diameter over the entire range and formation of functional microfluidic networks for mass fractions of at least 10.0 mg/ml. We present quantitative characterization of the rate and extent of cellular remodelability using human umbilical vein endothelial cells. Finally, we present a co-culture with tumor cells and discuss the implications of integrating microfluidic control within scaffolds as a tool to study spatial and temporal signaling during tumor angiogenesis and vascularization of tissue engineered constructs.
机译:I型胶原蛋白是细胞粘附和生长的良好底物,可被许多组织细胞重塑。这些特性使其成为研究动态细胞过程的诱人材料。用于三维细胞培养的低质量分数(1.0-3.0 mg / ml)的水合胶原蛋白基质可实现细胞移动和重塑,但它们的微观结构和力学机制无法模仿体内许多细胞外基质的特征,并限制了精细的定义。缩放支架内的几何特征(<1毫米)。在这项研究中,我们使用质量分数在3.0至20 mg / ml之间的水合I型胶原蛋白来确定基质支持微加工和细胞重构的密度范围。我们介绍了基于共聚焦显微镜的孔和纤维尺寸,以及基于有限压缩的纵向模量和水力渗透率。我们证明了在整个范围内忠实再现了50微米直径的简单孔,并形成了质量分数至少为10.0 mg / ml的功能性微流体网络。我们目前使用人类脐静脉内皮细胞的细胞重塑速率和程度的定量表征。最后,我们提出了一种与肿瘤细胞共培养的方法,并讨论了在支架中整合微流控技术作为研究肿瘤血管生成和组织工程构建体血管化过程中时空信号传导的工具的意义。

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