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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >The effect of concentration, thermal history and cell seeding density on the initial mechanical properties of agarose hydrogels.
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The effect of concentration, thermal history and cell seeding density on the initial mechanical properties of agarose hydrogels.

机译:浓度,热历史和细胞接种密度对琼脂糖水凝胶初始机械性能的影响。

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Agarose hydrogels are commonly used for cartilage tissue engineering studies and to provide a three dimensional environment to investigate cellular mechanobiology. Interpreting the results of such studies requires accurate quantification of the mechanical properties of the hydrogel. There is significant variation in the reported mechanical properties of agarose hydrogels, and little is reported on the influence of factors associated with mixing these hydrogels with cell suspensions on their initial mechanical properties. The objective of this study was to determine the influence of agarose concentration, the cooling rate during gelation, the thermal history following gelation and the cell seeding density on the initial mechanical properties of agarose hydrogels. The average ramp modulus of 2% agarose gel in tension was 24.9 kPa (+/-1.7, n=10), compared with 55.6 kPa (+/-0.5, n=10) in compression. The average tensile equilibrium modulus was 39.7 kPa (+/-5.7, n=6), significantly higher than the compressive equilibrium modulus of 14.2 kPa (+/-1.6, n=10). The equilibrium and dynamic compressive modulus of agarose hydrogels were observed to reduce if maintained at 37 ( composite function)C following gelation compared with samples maintained at room temperature. Depending on the methodology used to encapsulate chondrocytes within agarose hydrogels, the equilibrium compressive modulus was found to be significantly higher for acellular 2% agarose gels compared with 2% agarose gels seeded at approximately 40 x 10(6) cells/mL. These results have important implications for interpreting the results of chondrocyte mechanobiology studies in agarose hydrogels.
机译:琼脂糖水凝胶通常用于软骨组织工程研究,并提供三维环境来研究细胞力学生物学。解释此类研究的结果需要准确量化水凝胶的机械性能。所报道的琼脂糖水凝胶的机械性能有显着变化,关于将这些水凝胶与细胞悬浮液混合对其初始机械性能的影响因素的报道很少。这项研究的目的是确定琼脂糖浓度,胶凝过程中的冷却速率,胶凝后的热历史以及细胞接种密度对琼脂糖水凝胶初始力学性能的影响。拉伸时2%琼脂糖凝胶的平均斜率模量为24.9 kPa(+/- 1.7,n = 10),而压缩时为55.6 kPa(+/- 0.5,n = 10)。平均拉伸平衡模量为39.7 kPa(+/- 5.7,n = 6),明显高于压缩平衡模量14.2 kPa(+/- 1.6,n = 10)。与维持在室温下的样品相比,观察到琼脂糖水凝胶的平衡和动态压缩模量在凝胶化后保持在37(复合功能)C时会降低。根据用于将软骨细胞封装在琼脂糖水凝胶中的方法的不同,发现无细胞2%琼脂糖凝胶的平衡压缩模量明显高于接种约40 x 10(6)细胞/ mL的2%琼脂糖凝胶。这些结果对于解释琼脂糖水凝胶中软骨细胞力学生物学研究的结果具有重要意义。

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