Department of Life Sciences, University of Trieste, Via Licio Giorgieri 5, Trieste, I-34127, Italy.
NanoInnovation Lab, Elettra-Sincrotrone Trieste S.C.p.A., Trieste, I-34149, Italy.
Adv Healthc Mater. 2023 Oct;12(26):e2300973. doi: 10.1002/adhm.202300973. Epub 2023 Jul 9.
The scaffolding of agarose hydrogel networks depends critically on the rate of cooling (quenching) after heating. Efforts are made to understand the kinetics and evolution of biopolymer self-assembly upon cooling, but information is lacking on whether quenching might affect the final hydrogel structure and performance. Here, a material strategy for the fine modulation of quenching that involves temperature-curing steps of agarose is reported. Combining microscopy techniques, standard and advanced macro/nanomechanical tools, it is revealed that agarose accumulates on the surface when the curing temperature is set at 121 °C. The inhomogeneity can be mostly recovered when it is reduced to 42 °C. This has a drastic effect on the stiffness of the surface, but not on the viscoelasticity, roughness, and wettability. When hydrogels are strained at small/large deformations, the curing temperature has no effect on the viscoelastic response of the hydrogel bulk but does play a role in the onset of the non-linear region. Cells cultured on these hydrogels exhibit surface stiffness-sensing that affects cell adhesion, spreading, F-actin fiber tension, and assembly of vinculin-rich focal adhesions. Collectively, the results indicate that the temperature curing of agarose is an efficient strategy to produce networks with tunable mechanics and is suitable for mechanobiology studies.
琼脂糖水凝胶网络的支架结构严重依赖于加热后的冷却(淬火)速率。人们努力了解生物聚合物自组装在冷却时的动力学和演变,但关于淬火是否会影响最终水凝胶结构和性能的信息还很缺乏。在这里,报道了一种通过琼脂糖的温度固化步骤来精细调节淬火的材料策略。通过结合显微镜技术、标准和先进的宏观/纳米力学工具,揭示了当固化温度设置为 121°C 时,琼脂糖会在表面上积累。当温度降低到 42°C 时,这种不均匀性可以大部分恢复。这对表面的刚度有很大的影响,但对粘弹性、粗糙度和润湿性没有影响。当水凝胶在小/大变形下应变时,固化温度对水凝胶本体的粘弹性响应没有影响,但对非线性区域的开始有影响。在这些水凝胶上培养的细胞表现出表面刚度感知,这会影响细胞黏附、铺展、F-肌动蛋白纤维张力和富含 vinculin 的黏着斑的组装。总的来说,结果表明琼脂糖的温度固化是一种生产具有可调力学性能的网络的有效策略,适合于机械生物学研究。