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Characterization of Biocompatible Poly(Ethylene Glycol)-Dimethacrylate Hydrogels for Tissue Engineering

机译:用于组织工程的生物相容性聚(乙二醇) - 二甲基丙烯酸水凝胶的表征

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Tissue Engineering depends on broadly techniques to regenerate tissues and/or organ functions. To do so, tailored polymeric and/or hydrogel scaffolds may be used to ensure the appropriate regeneration. Hydrogels are suitable materials for constructing cell-laden matrices as they can be produced with incorporation of cells and rapidly cross-linked in situ through photopolymerisation reactions. Measurement of the polymerization degree, as well as resistance to compression and water retention are fundamental tests to evaluate the characteristics of hydrogels. In this work, free-radical polymerisation of poly(ethylene glycol)-dimethacrylate (PEGDMA) in UV light was assessed. Several hydrogels with different photoinitiator and water contents were produced to evaluate their influence on hydrogels behaviour. Experiments showed that variations on water and photoinitiator content induce changes in the physical and chemical behaviour of hydrogels. As it was found, water content prevents polymerisation to occur and reduces the mechanical properties of hydrogels weakening them. Furthermore, differences were found in varying water content from 15 to 30%, since this increase turned hydrogels more fragile and increase their stabilization time for water retention.
机译:组织工程取决于广泛的技术来再生组织和/或器官功能。为此,可以使用定制的聚合物和/或水凝胶支架来确保适当的再生。水凝胶是用于构建细胞 - 载体基质的合适材料,因为它们可以通过光聚合物反应掺入细胞并通过光聚合反应而快速交联。测量聚合度,以及对压缩和水保持抗性的抗性是评估水凝胶的特征的基本试验。在这项工作中,评估UV光中的聚(乙二醇) - 二甲基丙烯酸酯(PEGDMA)的自由基聚合。制备了几种具有不同光引发剂和水含量的水凝胶以评估它们对水凝胶行为的影响。实验表明,水和光引发剂含量的变化诱导水凝胶物理和化学行为的变化。如发现,水含量会导致聚合发生并降低水凝胶的机械性能削弱它们。此外,在不同的水含量为15%至30%的情况下发现差异,因为这种增加变化了水凝胶更脆弱并增加了它们的水潴留的稳定时间。

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