Rubber Technology Centre, Indian Institute of Technology, Kharagpur 721302, India.
Solid State Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India.
Ultrason Sonochem. 2018 Apr;42:212-227. doi: 10.1016/j.ultsonch.2017.11.028. Epub 2017 Nov 23.
Nanohybrid hydrogels based on pristine graphene with enhanced toughness and dual responsive drug delivery feature is opening a new era for smart materials. Here pristine graphene hydrogels are synthesized by in situ free radical polymerization where graphene platelets are the nanobuiliding blocks to withstand external stress and shows reversible ductility. Such uniqueness is a mere reflection of rubber-like elasticity on the hydrogels. These nanobuilding blocks serve also the extensive physisorption which enhances the physical crosslinking inside the gel matrix. Besides the pH-responsive drug release features, these hydrogels are also implemented as a pulsatile drug delivery device. The electric responsive drug release behaviours are noticed and hypothesized by the formation of conducting network in the polyelectrolytic hydrogel matrix. The hydrogels are also tested as good biocompatibility and feasible cell-attachment during live-dead cell adhesion study. The drug release characteristics can also be tuned by adjusting the conducting filler loading into the gel matrix. As of our knowledge, this type of hydrogels with rubber-like consistency, high mechanical property, tunable and dual responsive drug delivery feature and very good human cell compatible is the first to report.
基于原始石墨烯的纳米杂化水凝胶具有增强的韧性和双重响应药物输送特性,为智能材料开辟了新时代。在这里,通过原位自由基聚合合成了原始石墨烯水凝胶,其中石墨烯片是纳米构建块,可承受外部应力并表现出可逆的延展性。这种独特性仅仅反映了水凝胶的橡胶状弹性。这些纳米构建块还具有广泛的物理吸附作用,增强了凝胶基质内部的物理交联。除了 pH 响应药物释放特性外,这些水凝胶还被用作脉冲药物输送装置。通过形成聚电解质水凝胶基质中的导电网络,注意到并假设了电响应药物释放行为。水凝胶还在活死细胞黏附研究中进行了良好的生物相容性和可行的细胞附着测试。通过调整导电填料在凝胶基质中的负载量,也可以调整药物释放特性。据我们所知,这种具有橡胶状一致性、高机械性能、可调谐和双重响应药物输送特性以及非常好的人类细胞相容性的水凝胶是首例报道。