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评估一系列用于组织工程应用的 PEGDMA 水凝胶的材料性能、稳定性和细胞反应。

Evaluation of the materials properties, stability and cell response of a range of PEGDMA hydrogels for tissue engineering applications.

机构信息

Materials Research Institute, Athlone Institute of Technology, Dublin Road, Co. Westmeath, Ireland.

Materials Research Institute, Athlone Institute of Technology, Dublin Road, Co. Westmeath, Ireland.

出版信息

J Mech Behav Biomed Mater. 2019 Nov;99:1-10. doi: 10.1016/j.jmbbm.2019.07.003. Epub 2019 Jul 9.

Abstract

The main aim of this study was to examine the stability of a range of polyethyleneglycol dimethacrylate (PEGDMA) hydrogels over a 28-day period in simulated physiological solution. Upon optimisation of the ultraviolet (UV) curing conditions, the PEGDMA hydrogels were prepared using four different monomer concentrations (25, 50, 75 and 100 wt% PEGDMA) in water and cross-linked by photopolymerisation. Initial results revealed a correlation between monomer concentration and swelling behaviour, where a decrease in swelling was observed with increase in monomer content. On storage in physiological solutions at 37 °C, a decrease in the weight remaining of the hydrogels and the pH of the solutions was observed over a 28-day period. Using scanning electron microscopy, the surface topography of the hydrogels appeared to get smoother and in parallel changes in hydrophilicty were observed, with the biggest changes observed for the higher monomer concentrations where water contact angle values were seen to increase toward 90°. However, the mechanical properties remained relatively unaffected and there was no adverse effect on cell metabolic activity observed for cells grown in the presence of PEGDMA samples or using elution methods. Looking at the combination of mechanical chemical and thermal properties shown these results are an important finding for scaffolds intended for tissue engineering applications, where provision of mechanical support without the elicitation of an inflammatory response due to polymer degradation products is crucial for successful integration and neotissue formation during the first 28 days post implantation.

摘要

本研究的主要目的是在模拟生理溶液中考察一系列聚乙二醇二甲基丙烯酸酯(PEGDMA)水凝胶在 28 天内的稳定性。在优化紫外(UV)固化条件后,使用四种不同单体浓度(25、50、75 和 100wt% PEGDMA)在水中制备 PEGDMA 水凝胶,并通过光聚合交联。初步结果表明,单体浓度与溶胀行为之间存在相关性,随着单体含量的增加,溶胀度降低。在 37°C 的生理溶液中储存 28 天后,观察到水凝胶的剩余重量和溶液的 pH 值下降。使用扫描电子显微镜,水凝胶的表面形貌似乎变得更加光滑,同时观察到亲水性的变化,对于较高单体浓度,变化最大,水接触角值趋于 90°。然而,机械性能基本不受影响,在 PEGDMA 样品存在或使用洗脱方法的情况下,细胞代谢活性没有观察到不良影响。综合考虑机械、化学和热性能,这些结果对于组织工程应用的支架是一个重要的发现,因为在植入后最初 28 天内,提供机械支撑而不引起聚合物降解产物的炎症反应对于成功整合和新组织形成至关重要。

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