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首页> 外文期刊>Journal of Materials Science >Influencing biophysical properties of fibrin with buffer solutions
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Influencing biophysical properties of fibrin with buffer solutions

机译:用缓冲溶液影响血纤蛋白的生物物理特性

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Fibrin has been proposed as cell scaffold for numerous tissue engineering applications. While most of the studies have focused on fibrinogen and thrombin, other components of fibrin can also affect its properties. The present study aimed to evaluate the effects of buffer solution composition on fibrin biophysical properties. Fibrin scaffolds were synthesized with different calcium, chloride, and factor XIII (FXIII) final concentrations. Light transmission was determined as a relative, semi-quantitative estimator of fiber structure differences, and two compositions, resulting in translucent and opaque gels, were tested for mechanical and biological properties. Gels were seeded with mouse mesenchymal cells, C3H10T1/2, or bovine bone marrow-derived mesenchymal stromal cells and cultured up to 10 or 24 days, before cell number, morphology and distribution were evaluated. Calcium increased gel opacity (i.e., fiber thickness), while chloride and FXIII decreased it. Opaque gels displayed a fluid-like viscous behavior while translucent gels showed improved elastic properties. Both compositions supported survival of both cell types with opaque gels leading to better proliferation, but significant scaffold shrinkage after 17 days of culture. These results demonstrated that calcium, chloride, and FXIII modulate the biophysical properties of fibrin, and can be used to adjust mechanical and biological properties for tissue engineering applications.
机译:纤维蛋白已被提出作为用于许多组织工程应用的细胞支架。尽管大多数研究集中在纤维蛋白原和凝血酶上,但纤维蛋白的其他成分也会影响其性质。本研究旨在评估缓冲溶液成分对血纤蛋白生物物理特性的影响。合成的血纤蛋白支架具有不同的钙,氯化物和因子XIII(FXIII)最终浓度。确定光透射率是纤维结构差异的相对的,半定量的估计量,并测试了导致半透明和不透明凝胶的两种成分的机械和生物学性能。将凝胶接种小鼠间充质细胞,C3H10T1 / 2或牛骨髓来源的间充质基质细胞,并培养长达10或24天,然后评估细胞数量,形态和分布。钙增加了凝胶的不透明度(即纤维厚度),而氯化物和FXIII降低了它。不透明的凝胶显示出类似流体的粘性行为,而半透明的凝胶显示出改善的弹性。两种组合物均通过不透明凝胶支持两种细胞类型的存活,从而导致更好的增殖,但是在培养17天后支架明显收缩。这些结果表明,钙,氯化物和FXIII可以调节血纤蛋白的生物物理特性,并且可以用于调节组织工程应用的机械和生物学特性。

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