College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan, 410083, PR China.
State Key Laboratory for Powder Metallurgy, Central South University, Changsha, Hunan, 410083, PR China.
Chemistry. 2018 May 2;24(25):6557-6563. doi: 10.1002/chem.201705841. Epub 2018 Mar 1.
A new strategy is proposed to fabricate adaptable protein-based hydrogel networks with both injectable and self-healable properties. By mixing proteins and metal ions under alkaline conditions, the metal ions can crosslink proteins into protein-metal ion dynamic networks. Subsequently, the metal ions can react with the cysteine residues of protein to in situ form corresponding metal sulfide NPs with ultra-small size, which leads to nanocomposite hydrogels with adaptable structures. This approach is general and a series of metal sulfide NP in situ embedded nanocomposite hydrogels were obtained. As an example, a Bi S -BSA hydrogel with tunable networks is shown to serve as an injectable, self-healable photothermal agent for the treatment of tumors. Our finding paves a new avenue for the preparation of injectable and self-healable hydrogels with potential applications in biomedicine.
提出了一种新策略,用于制备具有可注射和自修复性能的适应性蛋白水凝胶网络。通过在碱性条件下混合蛋白质和金属离子,金属离子可以将蛋白质交联成蛋白质-金属离子动态网络。随后,金属离子可以与蛋白质的半胱氨酸残基反应,就地形成具有超小尺寸的相应金属硫化物 NPs,从而得到具有适应性结构的纳米复合水凝胶。该方法具有通用性,获得了一系列金属硫化物 NPs 原位嵌入的纳米复合水凝胶。例如,展示了一种具有可调网络的 Bi S -BSA 水凝胶作为可注射、自修复的光热剂用于治疗肿瘤。我们的发现为制备可注射和自修复水凝胶开辟了新途径,这些水凝胶在生物医学中有潜在的应用。