Lu Cheng-Hsun, Yeh Yi-Cheun
Institute of Polymer Science and Engineering, National Taiwan University, Taipei 10617, Taiwan.
ACS Biomater Sci Eng. 2022 Oct 10;8(10):4289-4300. doi: 10.1021/acsbiomaterials.2c00873. Epub 2022 Sep 8.
Using functionalized nanoparticles to crosslink hydrophilic polymers is a growing theme of directly constructing nanocomposite (NC) hydrogels. Employing dynamic covalent chemistry at the nanoparticle-polymer interface is particularly attractive due to the spontaneous formation and reversible manner of dynamic covalent bonds. However, the structure and property modulation of the dynamic covalently crosslinked NC hydrogels has not been thoroughly discussed. Here, we fabricated NC hydrogels by using amine-functionalized carbon dots (CDs) to crosslink polydextran aldehyde (PDA) polymers through imine bond formation. The role of PDA with different oxidation degrees (i.e., PDA10, PDA30, and PDA50) in affecting the microstructures and properties of PDA@CD hydrogels was systematically investigated, showing that the PDA50@CD hydrogel presented the densest structure and the highest mechanical strength among the three PDA@CD hydrogels. The pH-responsiveness, 3D printing, electrospinning, and biocompatibility of PDA@CD hydrogels were also demonstrated, showing the great promise of using PDA@CD hydrogels for applications in biomedicine and biofabrication.
使用功能化纳米颗粒交联亲水性聚合物是直接构建纳米复合(NC)水凝胶这一不断发展的主题。由于动态共价键的自发形成和可逆性,在纳米颗粒 - 聚合物界面采用动态共价化学尤其具有吸引力。然而,动态共价交联的NC水凝胶的结构和性能调控尚未得到充分讨论。在此,我们通过使用胺功能化碳点(CDs)通过形成亚胺键交联聚葡聚糖醛(PDA)聚合物来制备NC水凝胶。系统研究了不同氧化程度的PDA(即PDA10、PDA30和PDA50)在影响PDA@CD水凝胶微观结构和性能方面的作用,结果表明,在三种PDA@CD水凝胶中,PDA50@CD水凝胶呈现出最致密的结构和最高的机械强度。还展示了PDA@CD水凝胶的pH响应性、3D打印、静电纺丝和生物相容性,表明使用PDA@CD水凝胶在生物医学和生物制造应用中具有巨大潜力。