Kocen Rok, Gasik Michael, Gantar Ana, Novak Saša
Department for Nanostructured Materials, Jožef Stefan Institute, Jamova cesta 39, 1000 Ljubljana, Slovenia. Jožef Stefan International Postgraduate School, Jamova cesta 39, 1000 Ljubljana, Slovenia.
Biomed Mater. 2017 Mar 6;12(2):025004. doi: 10.1088/1748-605X/aa5b00.
Along with biocompatibility, bioinductivity and appropriate biodegradation, mechanical properties are also of crucial importance for tissue engineering scaffolds. Hydrogels, such as gellan gum (GG), are usually soft materials, which may benefit from the incorporation of inorganic particles, e.g. bioactive glass, not only due to the acquired bioactivity, but also due to improved mechanical properties. They exhibit complex viscoelastic properties, which can be evaluated in various ways. In this work, to reliably evaluate the effect of the bioactive glass (BAG) addition on viscoelastic properties of the composite hydrogel, we employed and compared the three most commonly used techniques, analyzing their advantages and limitations: monotonic uniaxial unconfined compression, small amplitude oscillatory shear (SAOS) rheology and dynamic mechanical analysis (DMA). Creep and small amplitude dynamic strain-controlled tests in DMA are suggested as the best ways for the characterization of mechanical properties of hydrogel composites, whereas the SAOS rheology is more useful for studying the hydrogel's processing kinetics, as it does not induce volumetric changes even at very high strains. Overall, the results confirmed a beneficial effect of BAG (nano)particles on the elastic modulus of the GG-BAG composite hydrogel. The Young's modulus of 6.6 ± 0.8 kPa for the GG hydrogel increased by two orders of magnitude after the addition of 2 wt.% BAG particles (500-800 kPa).
除了生物相容性、生物诱导性和适当的生物降解性外,机械性能对于组织工程支架也至关重要。水凝胶,如结冷胶(GG),通常是软材料,掺入无机颗粒(如生物活性玻璃)可能会带来益处,这不仅是因为获得了生物活性,还因为机械性能得到了改善。它们表现出复杂的粘弹性,可以通过多种方式进行评估。在这项工作中,为了可靠地评估添加生物活性玻璃(BAG)对复合水凝胶粘弹性的影响,我们采用并比较了三种最常用的技术,分析了它们的优缺点:单调单轴无侧限压缩、小振幅振荡剪切(SAOS)流变学和动态力学分析(DMA)。DMA中的蠕变和小振幅动态应变控制测试被认为是表征水凝胶复合材料机械性能的最佳方法,而SAOS流变学对于研究水凝胶的加工动力学更有用,因为即使在非常高的应变下它也不会引起体积变化。总体而言,结果证实了BAG(纳米)颗粒对GG-BAG复合水凝胶弹性模量的有益影响。添加2 wt.% BAG颗粒后,GG水凝胶6.6±0.8 kPa的杨氏模量增加了两个数量级(500-800 kPa)。