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A High Strength Self-Healable Antibacterial and Anti-Inflammatory Supramolecular Polymer Hydrogel

机译:高强度自愈抗菌消炎超分子聚合物水凝胶

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摘要

There is a significant cost to mitigate the infection and inflammation associated with the implantable medical devices. The development of effective antibacterial and anti-inflammatory biomaterials with novel mechanism of action has become an urgent task. In this study, a supramolecular polymer hydrogel is synthesized by the copolymerization of N-acryloyl glycinamide and 1-vinyl-1,2,4-triazole in the absence of any chemical crosslinker. The hydrogel network is crosslinked through the hydrogen bond interactions between dual amide motifs in the side chain of N-acryloyl glycinamide. The prepared hydrogels demonstrate excellent mechanical properties—high tensile strength (≈1.2 MPa), large stretchability (≈1300%), and outstanding compressive strength (≈11 MPa) at swelling equilibrium state. A simulation study elaborates the changes of hydrogen bond interactions when 1-vinyl-1,2,4-triazole is introduced into the gel network. It is demonstrated that the introduction of 1-vinyl-1,2,4-triazole endowes the supramolecular hydrogels with self-repairability, thermoplasticity, and reprocessability over a lower temperature range for 3D printing of different shapes and patterns under simplified thermomelting extrusion condition. In addition, these hydrogels exhibit antimicrobial and anti-inflammatory activities, and in vitro cytotoxicity assay and histological staining following in vivo implantation confirm the biocompatibility of the hydrogel. These hydrogels with integrated multifunctions hold promising potential as an injectable biomaterial for treating degenerated soft supporting tissues.
机译:减轻与可植入医疗设备相关的感染和炎症的成本很高。具有新型作用机理的有效的抗菌和消炎生物材料的开发已成为当务之急。在这项研究中,超分子聚合物水凝胶是在不存在任何化学交联剂的情况下,通过N-丙烯酰基甘氨酰胺和1-乙烯基-1,2,4-三唑的共聚反应合成的。水凝胶网络通过N-丙烯酰基甘氨酰胺侧链中双酰胺基序之间的氢键相互作用而交联。所制备的水凝胶在膨胀平衡状态下表现出优异的机械性能-高拉伸强度(≈1.2MPa),大拉伸性(≈1300%)和出色的抗压强度(≈11MPa)。模拟研究详细说明了将1-乙烯基-1,2,4-三唑引入凝胶网络时氢键相互作用的变化。已经证明,引入1-乙烯基-1,2,4-三唑使超分子水凝胶在较低的温度范围内具有自修复性,热塑性和可再加工性,以便在简化的热熔挤出条件下进行不同形状和图案的3D打印。另外,这些水凝胶表现出抗微生物和抗炎活性,并且在体内植入后的体外细胞毒性测定和组织学染色证实了水凝胶的生物相容性。这些具有集成多功能功能的水凝胶具有潜力可作为治疗退化性软支持组织的可注射生物材料。

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