Key Laboratory of Colloid and Interface Chemistry & Key Laboratory of Special Aggregated Materials , (Shandong University), Ministry of Education , Jinan 250100 , P. R. China.
Biomacromolecules. 2018 Mar 12;19(3):980-988. doi: 10.1021/acs.biomac.7b01764. Epub 2018 Feb 23.
To meet the progressive requirements of advanced engineering materials with superior physicochemical performances, self-healing and injectable hydrogels (AD hydrogels) based on agarose with pH-response were prepared through dynamic covalent Schiff-base linkages by simply mixing nontoxic agarose-ethylenediamine conjugate (AG-NH) and dialdehyde-functionalized polyethylene glycol (DF-PEG) solutions. The self-healing and injectable capabilities of the hydrogels without any external stimulus are ascribed to dynamic covalent Schiff-base linkages between the aldehyde groups of DF-PEG and amine groups on AG-NH backbone. It is demonstrated that the AD hydrogels possess interconnected porous morphologies, rapid gelation time, excellent deformability, and good mechanical strength. The incorporated Schiff's base imparts the hydrogels to the remarkable tissue adhesiveness. In vivo hemostatic tests on rabbit liver demonstrate that the hydrogels are able to stanch the severe trauma effectively. Compared with the conventional gauze treatment, the total amount of bleeding sharply declined to be (0.19 ± 0.03) g, and hemostasis time was strikingly shorter than 10 s after treating with AD hydrogels. In summary, the self-healing ability, cytocompatibility, and adhesion characteristic of the pH-responsive hydrogels make them promising candidates for long-lived wound dressings in critical situations.
为了满足具有优越物理化学性能的先进工程材料的不断发展的要求,通过动态共价希夫碱键简单混合无毒的琼脂糖-乙二胺缀合物(AG-NH)和醛基功能化聚乙二醇(DF-PEG)溶液,制备了基于琼脂糖的具有 pH 响应的自修复和可注射水凝胶(AD 水凝胶)。水凝胶无需任何外部刺激即可实现自修复和可注射能力,这归因于 DF-PEG 上的醛基和 AG-NH 主链上的胺基之间的动态共价希夫碱键。结果表明,AD 水凝胶具有相互连接的多孔形态、快速的凝胶化时间、优异的可变形性和良好的机械强度。所掺入的希夫碱赋予水凝胶显著的组织粘附性。在兔肝的体内止血测试中,水凝胶能够有效地止住严重创伤。与传统的纱布处理相比,在用 AD 水凝胶处理后,总出血量急剧下降至(0.19±0.03)g,止血时间明显短于 10s。总之,pH 响应水凝胶的自修复能力、细胞相容性和粘附特性使它们成为在危急情况下长效伤口敷料的有前途的候选材料。