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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis, characterization, and cytotoxicity of PCL-PEG-PCL diacrylate and agarose interpenetrating network hydrogels for cartilage tissue engineering
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Synthesis, characterization, and cytotoxicity of PCL-PEG-PCL diacrylate and agarose interpenetrating network hydrogels for cartilage tissue engineering

机译:PCL-PEG-PCL二丙烯酸二丙烯酸盐和琼脂糖互穿网络水凝胶的合成,表征和细胞毒性软骨组织工程

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摘要

Hydrogels are suitable biomaterials for cartilage tissue engineering due to the excellent ability to retain water to provide suitable environment for the tissue, however, the insufficient mechanical properties often prevent their wider applications. The objective of this study was to fabricate biocompatible hydrogels with good mechanical performance, high-water content, and porous microstructure for cartilage regeneration. Photocrosslinked hydrogels are one of the most widely used systems in tissue engineering due to the superior mechanical properties. In this study, block copolymer, poly(epsilon -caprolactone)-poly(ethylene)-poly(epsilon-caprolactone) diacrylate (PCL-PEG-PCL; PEC), was prepared by ring-opening polymerization, and PEC hydrogels were made through free radical crosslinking mechanism. Agarose network is chosen as another component of the hydrogels, because of the high-swelling behavior and cartilage-like microstructure, which is helpful for chondrocytes growth. Interpenetrating networks (IPN) were fabricated by diffusing PEC into agarose network followed by photo-crosslinking process. It was noted that incorporating PEC into the agarose network increased the elastic modulus and the compressive failure properties of individual component networks. In addition, high-swelling ratio and uniform porosity microstructures were found in the IPN hydrogels. IPN and PEC showed low cytotoxicity and good biocompatibility in elution test method. The results suggest promising characteristics of IPN hydrogels as a potential biomaterial for cartilage tissue engineering.
机译:水凝胶是软骨组织工程的合适生物材料,由于保持水的优异能力,以为组织提供合适的环境,因此机械性能不足通常可以防止其更广泛的应用。本研究的目的是制造具有良好的机械性能,高含水量和用于软骨再生的多孔微观结构的生物相容性水凝胶。光胶瘤水凝胶是由于机械性能优异的组织工程中最广泛使用的系统之一。在该研究中,通过开环聚合制备嵌段共聚物,聚(ε-己内酯)-poly(乙烯)-poly(乙烯 - 己内酯)二丙烯酸酯(PCL-PEG-PCL; PEC),并通过PEC水凝胶制备自由基交联机构。由于高膨胀行为和软骨状微观结构,选择琼脂糖网络作为水凝胶的另一个组分,这有助于软骨细胞生长。通过将PEC扩散到琼脂糖网络之后,通过将PEC扩散到琼脂糖网络中的互穿网络(IPN)。注意,将PEC掺入琼脂糖网络增加了各个组件网络的弹性模量和压缩故障特性。此外,在IPN水凝胶中发现了高溶胀比和均匀的孔隙率微观结构。 IPN和PEC在洗脱试验方法中表现出低细胞毒性和良好的生物相容性。结果表明IPN水凝胶的有希望的特性作为软骨组织工程的潜在生物材料。

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