López Carlos, Ximenis Marta, Orvay Francisca, Rotger Carmen, Costa Antonio
Departament de Química, Facultad de Ciències, Universitat de les Illes Balears, Ctra. Valldemossa, Km. 7.5, Palma, 07122, Spain.
Chemistry. 2017 Jun 1;23(31):7590-7594. doi: 10.1002/chem.201701029. Epub 2017 May 15.
Supramolecular hydrogels with tunable properties have innovative applications in biomedicine, catalysis, and materials chemistry. Minimalist low-molecular-weight hydrogelators based on squaramide and squaramic acid motifs have been designed. This approach benefits from the high acidity of squaramic acids and the aromaticity of squaramides. Moreover, substituents on the aryl ring tune the π density of the arylsquaramide motif. Thus, materials featuring distinct thermal and mechanical properties have been successfully prepared. The hydrogel (G'≈400 Pa, G''≈57 Pa; at 1.0 % w/v; 1 Hz) obtained from 4-nitrophenylsquaramide motif 1 is thermoreversible (T=57 °C at 0.2 % w/v), thixotropic, self-healable, and undergoes irreversible shrinking in response to saline stress. Furthermore, the hydrogel is injectable and can be loaded with substantial amounts (5:1 excess molar ratio) of zwitterionic biomolecules, such as l-carnitine, γ-aminobutyric acid (GABA), or d,l-Ala-d,l-Ala, without any loss of structural integrity. Then, the release of these molecules can be modulated by saline solutions.
具有可调性质的超分子水凝胶在生物医学、催化和材料化学领域有着创新应用。基于方酰胺和方酸基序的极简低分子量水凝胶剂已被设计出来。这种方法得益于方酸的高酸度和方酰胺的芳香性。此外,芳环上的取代基可调节芳基方酰胺基序的π电子密度。因此,已成功制备出具有不同热性能和机械性能的材料。由4-硝基苯基方酰胺基序1得到的水凝胶(G'≈400 Pa,G''≈57 Pa;1.0 % w/v;1 Hz)是热可逆的(0.2 % w/v时T = 57 °C),具有触变性、可自愈性,并且在盐胁迫下会发生不可逆收缩。此外,该水凝胶可注射,并且可以负载大量(5:1过量摩尔比)的两性离子生物分子,如左旋肉碱、γ-氨基丁酸(GABA)或d,l-丙氨酰-d,l-丙氨酸,而不会损失任何结构完整性。然后,这些分子的释放可通过盐溶液进行调节。