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首页> 外文期刊>Polymers >Tailoring Mechanical Properties of Collagen-Based Scaffolds for Vascular Tissue Engineering: The Effects of pH, Temperature and Ionic Strength on Gelation
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Tailoring Mechanical Properties of Collagen-Based Scaffolds for Vascular Tissue Engineering: The Effects of pH, Temperature and Ionic Strength on Gelation

机译:量身定制用于血管组织工程的胶原基支架的力学性能:pH,温度和离子强度对胶凝的影响

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Collagen gels have been widely studied for applications in tissue engineering because of their biological implications. Considering their use as scaffolds for vascular tissue engineering, the main limitation has always been related to their low mechanical properties. During the process of in vitro self-assembly, which leads to collagen gelation, the size of the fibrils, their chemical interactions, as well as the resulting microstructure are regulated by three main experimental conditions: pH, ionic strength and temperature. In this work, these three parameters were modulated in order to increase the mechanical properties of collagen gels. The effects on the gelation process were assessed by turbidimetric and scanning electron microscopy analyses. Turbidity measurements showed that gelation was affected by all three factors and scanning electron images confirmed that major changes occurred at the microstructural level. Mechanical tests showed that the compressive and tensile moduli increased by four- and three-fold, respectively, compared to the control. Finally, viability tests confirmed that these gels are suitable as scaffolds for cellular adhesion and proliferation.
机译:胶原蛋白凝胶由于其生物学意义而被广泛研究用于组织工程。考虑到它们用作血管组织工程的支架,主要的限制一直与它们的低机械性能有关。在导致胶原胶凝的体外自组装过程中,原纤维的大小,它们的化学相互作用以及所产生的微结构受三个主要实验条件的调节:pH,离子强度和温度。在这项工作中,对这三个参数进行了调整,以提高胶原蛋白凝胶的机械性能。通过比浊和扫描电子显微镜分析评估对凝胶化过程的影响。浊度测量表明凝胶化受所有三个因素的影响,并且扫描电子图像证实在微观结构水平上发生了重大变化。力学测试表明,与对照组相比,压缩模量和拉伸模量分别增加了四倍和三倍。最后,可行性测试证实,这些凝胶适合用作细胞粘附和增殖的支架。

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