首页> 外文期刊>Acta biomaterialia >Biodegradable and injectable cure-on-demand polyurethane scaffolds for regeneration of articular cartilage.
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Biodegradable and injectable cure-on-demand polyurethane scaffolds for regeneration of articular cartilage.

机译:可生物降解和可注射的按需固化聚氨酯支架,用于关节软骨的再生。

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This paper describes the synthesis and characterization of an injectable methacrylate functionalized urethane-based photopolymerizable prepolymer to form biodegradable hydrogels. The tetramethacrylate prepolymer was based on the reaction between two synthesized compounds, diisocyanato poly(ethylene glycol) and monohydroxy dimethacrylate poly(epsilon-caprolactone) triol. The final prepolymer was hydrated with phosphate-buffered saline (pH 7.4) to yield a biocompatible hydrogel containing up to 86% water. The methacrylate functionalized prepolymer was polymerized using blue light (450 nm) with an initiator, camphorquinone and a photosensitizer, N,N-dimethylaminoethyl methacrylate. The polymer was stable in vitro in culture media over the 28 days tested (1.9% mass loss); in the presence of lipase, around 56% mass loss occurred over the 28 days in vitro. Very little degradation occurred in vivo in rats over the same time period. The polymer was well tolerated with very little capsule formation and a moderate host tissue response. Human chondrocytes, seeded onto Cultispher-S beads, were viable in the tetramethacrylate prepolymer and remained viable during and after polymerization. Chondrocyte-bead-polymer constructs were maintained in static and spinner culture for 8 weeks. During this time, cells remained viable, proliferated and migrated from the beads through the polymer towards the edge of the polymer. New extracellular matrix (ECM) was visualized with Masson's trichrome (collagen) and Alcian blue (glycosaminoglycan) staining. Further, the composition of the ECM was typical for articular cartilage with prominent collagen type II and type VI and moderate keratin sulphate, particularly for tissue constructs cultured under dynamic conditions.
机译:本文描述了可注射的甲基丙烯酸酯官能化的氨基甲酸酯基可光聚合的预聚物的合成和表征,以形成可生物降解的水凝胶。四甲基丙烯酸酯预聚物基于两种合成的化合物二异氰酸酯基聚乙二醇和单羟基二甲基丙烯酸酯聚ε-己内酯三醇之间的反应。将最终的预聚物与磷酸盐缓冲盐水(pH 7.4)进行水合,以生产出一种生物相容性水凝胶,其中的水含量高达86%。使用引发剂,樟脑醌和光敏剂甲基丙烯酸N,N-二甲基氨基乙酯,通过蓝光(450 nm)聚合甲基丙烯酸酯官能化的预聚物。在测试的28天内,该聚合物在培养基中体外稳定(质量损失1.9%);在存在脂肪酶的情况下,体外28天的质量损失约为56%。在同一时间段内,大鼠体内几乎没有发生降解。该聚合物具有良好的耐受性,几乎没有胶囊形成,并且具有中等的宿主组织反应。接种到Cultispher-S珠子上的人软骨细胞在四甲基丙烯酸酯预聚物中是可行的,并且在聚合过程中和聚合后仍保持活力。软骨细胞-珠-聚合物构建体在静态和旋转培养中保持8周。在这段时间内,细胞保持活力,增殖并从珠子穿过聚合物向聚合物的边缘迁移。新的细胞外基质(ECM)通过Masson的三色(胶原蛋白)和Alcian蓝(糖胺聚糖)染色可见。此外,ECM的组成对于具有突出的II型和VI型胶原蛋白和适度硫酸角蛋白的关节软骨而言是典型的,特别是对于在动态条件下培养的组织构造而言。

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