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首页> 外文期刊>Tissue engineering, Part A >Injectable and photopolymerizable tissue-engineered auricular cartilage using poly(ethylene glycol) dimethacrylate copolymer hydrogels.
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Injectable and photopolymerizable tissue-engineered auricular cartilage using poly(ethylene glycol) dimethacrylate copolymer hydrogels.

机译:使用聚(乙二醇)二甲基丙烯酸酯共聚物水凝胶的可注射和可光聚合的组织工程耳廓软骨。

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摘要

In this study we investigated the histological, biochemical, and integrative features of the neocartilage using swine auricular chondrocytes photoencapsulated into two poly(ethylene glycol) dimethacrylate (PEGDM) copolymer hydrogels of a different degradation profile: degradable (PEG-4,5LA-DM) and nondegradable (PEGDM) macromers in molar ratios of 60:40 and 70:30. Integration of the engineered tissue with existing native cartilage was examined using an articular cartilaginous ring model. Experimental group samples (total n=96) were implanted subcutaneously into nude mice and harvested at 6, 12, and 18 weeks. Nonimplanted constructs (total n=16) were used as controls for quantification of DNA, glycosaminoglycan, and hydroxyproline. Histologically, neocartilage resembled both the cellular population and composition of the extracellular matrix of the native swine auricular cartilage. DNA content demonstrated that the photoencapsulated chondrocytes were capable of survival and proliferation over time. Both glycosaminoglycan and hydroxyproline contents appeared higher in the neotissue, which was supported by less degradable PEGDM hydrogel. Integration of neocartilage with surrounding native cartilage improved with time, resulting in the development of tight integration interface. PEGDM copolymer hydrogels can support in vivo chondrogenesis by photoencapsulating auricular chondrocytes.
机译:在这项研究中,我们研究了使用猪耳廓软骨细胞的Neocartilage的组织学,生物化学和整合特征,其使用猪静态软骨细胞分为两种聚(乙二醇)二甲基丙烯酸酯(PEGDM)共聚物水凝胶的不同降解型材:可降解(PEG-4,5LA-DM)和60:40和70:30的摩尔比中的非致碎片(PEGDM)大分子。使用关节软骨环模型检查与现有的天然软骨的工程化组织的整合。实验组样品(总N = 96)被皮下植入裸鼠并在6,12和18周收获。非拟化构建体(总N = 16)用作定量DNA,糖胺聚糖和羟脯氨酸的对照。组织学上,Neocartilage类似于天然猪耳廓软骨的细胞群和组成的细胞群和组成。 DNA含量证明了光胶囊化的软骨细胞能够随时间存活和增殖。糖胺聚糖和羟基脯氨酸含量均在新发现中出现较高,其由较小可降解的PEGDM水凝胶负载。与周围的天然软骨的整合随时间改进,导致开发紧密集成界面。 PEGDM共聚物水凝胶可通过光胶囊化耳廓软骨细胞体内体内软骨发生。

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