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Effects of a Pseudophysiological Environment on the Elastic and Viscoelastic Properties of Collagen Gels

机译:伪生理环境对胶原凝胶弹性和粘弹性的影响

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摘要

Vascular tissue engineering focuses on the replacement of diseased small-diameter blood vessels with a diameter less than 6 mm for which adequate substitutes still do not exist. One approach to vascular tissue engineering is to culture vascular cells on a scaffold in a bioreactor. The bioreactor establishes pseudophysiological conditions for culture (medium culture, 37°C, mechanical stimulation). Collagen gels are widely used as scaffolds for tissue regeneration due to their biological properties; however, they exhibit low mechanical properties. Mechanical characterization of these scaffolds requires establishing the conditions of testing in regard to the conditions set in the bioreactor. The effects of different parameters used during mechanical testing on the collagen gels were evaluated in terms of mechanical and viscoelastic properties. Thus, a factorial experiment was adopted, and three relevant factors were considered: temperature (23°C or 37°C), hydration (aqueous saline solution or air), and mechanical preconditioning (with or without). Statistical analyses showed significant effects of these factors on the mechanical properties which were assessed by tensile tests as well as stress relaxation tests. The last tests provide a more consistent understanding of the gels' viscoelastic properties. Therefore, performing mechanical analyses on hydrogels requires setting an adequate environment in terms of temperature and aqueous saline solution as well as choosing the adequate test.
机译:血管组织工程的重点是更换直径小于6mm的患病小直径血管,而对于这种血管,仍然没有足够的替代物。血管组织工程的一种方法是在生物反应器中的支架上培养血管细胞。生物反应器为培养建立了假生理条件(中等培养,37°C,机械刺激)。胶原蛋白凝胶由于其生物学特性而被广泛用作组织再生的支架。然而,它们表现出低的机械性能。这些支架的机械表征要求就生物反应器中设定的条件建立测试条件。在机械测试过程中使用的不同参数对胶原蛋白凝胶的影响根据机械和粘弹性质进行了评估。因此,采用了阶乘实验,并考虑了三个相关因素:温度(23°C或37°C),水合(盐水溶液或空气)和机械预处理(有或没有)。统计分析表明这些因素对机械性能的显着影响,通过拉伸试验和应力松弛试验对其进行了评估。最后的测试使人们对凝胶的粘弹性能有了更一致的了解。因此,对水凝胶进行机械分析需要根据温度和盐水溶液设置适当的环境,并选择适当的测试。

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