Department of Materials and Production, Aalborg University, Fibigerstraede 16, 9220 Aalborg, Denmark.
Int J Mol Sci. 2023 Mar 7;24(6):5064. doi: 10.3390/ijms24065064.
A new two-step method is suggested for the preparation of homogeneous alginate gels. In the first step, alginate chains are weakly bonded by Ca2+ ions in an aqueous solution with a low pH. In the next step, the gel is immersed into a strong solution of CaCl2 to finalize the cross-linking process. Homogeneous alginate gels preserve their integrity in aqueous solutions with a pH ranging from 2 to 7 and ionic strength in the interval from 0 to 0.2 M, at temperatures ranging from room temperature up to 50 °C, and can be used in biomedical applications. The immersion of these gels into aqueous solutions with low pH induces the partial breakage of ionic bonds between chains (treated as gel degradation). This degradation affects the equilibrium and transient swelling of homogeneous alginate gels and makes them sensitive to the history of loading and environmental conditions (pH, ionic strength and temperature of aqueous solutions). As sensitivity to the environmental stimuli is a characteristic feature of polymer networks connected by catch bonds, homogeneous alginate gels may serve as a simple model, mimicking the behavior of more sophisticated structures in living matter.
一种新的两步法被提出用于制备均相海藻酸盐凝胶。在第一步中,海藻酸盐链在低 pH 值的水溶液中通过 Ca2+离子弱结合。在下一步中,将凝胶浸入到高浓度的 CaCl2 溶液中以完成交联过程。均相海藻酸盐凝胶在 pH 值范围为 2 至 7 且离子强度在 0 至 0.2 M 之间的水溶液中、在室温至 50°C 的温度范围内以及在可用于生物医学应用的条件下保持其完整性。将这些凝胶浸入低 pH 值的水溶液中会导致链间离子键的部分断裂(视为凝胶降解)。这种降解会影响均相海藻酸盐凝胶的平衡和瞬态溶胀,使其对加载的历史和环境条件(水溶液的 pH 值、离子强度和温度)敏感。由于对环境刺激的敏感性是由捕获键连接的聚合物网络的特征,因此均相海藻酸盐凝胶可用作简单的模型,模拟活物质中更复杂结构的行为。