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Cytocompatible Injectable and Electroconductive Soft Adhesives with Hybrid Covalent/Noncovalent Dynamic Network

机译:具有混合共价/非共价动态网络的细胞相容性可注射和导电性软胶

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摘要

Synthetic conductive biopolymers have gained increasing interest in tissue engineering, as they can provide a chemically defined electroconductive and biomimetic microenvironment for cells. In addition to low cytotoxicity and high biocompatibility, injectability and adhesiveness are important for many biomedical applications but have proven to be very challenging. Recent results show that fascinating material properties can be realized with a bioinspired hybrid network, especially through the synergy between irreversible covalent crosslinking and reversible noncovalent self‐assembly. Herein, a polysaccharide‐based conductive hydrogel crosslinked through noncovalent and reversible covalent reactions is reported. The hybrid material exhibits rheological properties associated with dynamic networks such as self‐healing and stress relaxation. Moreover, through fine‐tuning the network dynamics by varying covalentoncovalent crosslinking content and incorporating electroconductive polymers, the resulting materials exhibit electroconductivity and reliable adhesive strength, at a similar range to that of clinically used fibrin glue. The conductive soft adhesives exhibit high cytocompatibility in 2D/3D cell cultures and can promote myogenic differentiation of myoblast cells. The heparin‐containing electroconductive adhesive shows high biocompatibility in immunocompetent mice, both for topical application and as injectable materials. The materials could have utilities in many biomedical applications, especially in the area of cardiovascular diseases and wound dressing.
机译:合成导电生物聚合物在组织工程中越来越受到关注,因为它们可以为细胞提供化学定义的导电和仿生微环境。除了低细胞毒性和高生物相容性外,可注射性和粘附性对于许多生物医学应用也很重要,但事实证明这是非常具有挑战性的。最近的结果表明,通过生物启发的混合网络可以实现令人着迷的材料特性,尤其是通过不可逆共价交联和可逆非共价自组装之间的协同作用。本文报道了通过非共价和可逆共价反应交联的基于多糖的导电水凝胶。杂化材料表现出与动态网络相关的流变特性,例如自我修复和应力松弛。此外,通过改变共价/非共价交联含量并掺入导电聚合物来微调网络动力学,所得材料显示出导电性和可靠的粘合强度,其范围与临床使用的纤维蛋白胶相似。导电性软粘合剂在2D / 3D细胞培养物中显示出高细胞相容性,并可以促进成肌细胞的成肌分化。含肝素的导电胶在免疫活性小鼠中表现出高的生物相容性,无论是局部应用还是作为可注射材料。该材料可在许多生物医学应用中具有实用性,尤其是在心血管疾病和伤口敷料领域。

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