Institut für Organische Chemie, Universität Regensburg , Universitätsstr. 31, D-93053 Regensburg, Germany.
Departament de Química, EPS, Universitat de Lleida , Jaume II 69, 25001 Lleida, Spain.
Biomacromolecules. 2017 Sep 11;18(9):2967-2979. doi: 10.1021/acs.biomac.7b00934. Epub 2017 Aug 28.
This manuscript describes a new route to prepare rapidly Ca-free hydrogels from unmodified sodium alginate by simply mixing with small organic molecules such as poly(carboxylic acid) compounds as cross-linker agents instead of classical divalent metal salts such as CaCl. Dimethyl sulfoxide (DMSO) was also found to induce the rapid gelation of aqueous alginate solutions. The gelation process takes place at room temperature, and depending on the composition, gels with good thermal (90-100 °C) and mechanical properties compared to classical metal-containing analogs are obtained. DMSO-based gels showed remarkable self-supporting and thixotropic properties, which can be tuned by the biopolymer concentration. Furthermore, oxalic acid-based gels show superior elasticity than HCl, CaCl and DMSO-based gels. The possibility to prepare monoliths, beads, and films of these gels provide them with significant versatility. In particular, films made of alginate and oxalic acid show good potential as synergistic anticancer drug delivery carrier. Computational studies using both quantum mechanical and classical force-field methodologies reveal that hydrogen bonding networks between water and DMSO molecules located close to the alginate chains are responsible for the stability of DMSO-based gels. In contrast, the cohesion of oxalic acid-based gels is a consequence of the coexistence of multiple ionic associations involving oxalate, alginate, and Na counterions, which stabilize the system and keep all the interacting species grouped.
本文描述了一种新的方法,通过简单地将未经修饰的海藻酸钠与小分子如聚(羧酸)化合物等交联剂混合,而不是使用传统的二价金属盐如 CaCl2,来制备快速无钙水凝胶。还发现二甲基亚砜(DMSO)可以诱导海藻酸钠水溶液的快速凝胶化。凝胶化过程在室温下进行,根据组成的不同,可以得到具有良好热(90-100°C)和机械性能的凝胶,与传统的含金属类似物相比。基于 DMSO 的凝胶具有显著的自支撑和触变特性,其可以通过生物聚合物浓度进行调节。此外,基于草酸的凝胶比 HCl、CaCl2 和 DMSO 基凝胶具有更好的弹性。这些凝胶制备块状物、珠粒和薄膜的可能性为其提供了显著的多功能性。特别是由海藻酸钠和草酸制成的薄膜具有作为协同抗癌药物输送载体的良好潜力。使用量子力学和经典力场方法的计算研究表明,靠近海藻酸钠链的水分子和 DMSO 分子之间的氢键网络是 DMSO 基凝胶稳定的原因。相比之下,基于草酸的凝胶的内聚性是多种涉及草酸、海藻酸钠和 Na 反离子的离子相互作用共存的结果,这些相互作用稳定了体系并使所有相互作用的物质聚集在一起。