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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性耳软骨

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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,我们调查了猪角膜软骨细胞的光化学包裹在两种具有不同降解特性的聚乙二醇二甲基丙烯酸酯(PEGDM)共聚物水凝胶中的新软骨的组织学,生化和整合特性:可降解(PEG-4,5LA-DM)以及摩尔比为60:40和70:30的不可降解(PEGDM)大分子单体。使用关节软骨环模型检查了工程组织与现有天然软骨的整合。将实验组样品(总n = 96)皮下植入裸鼠,并在第6、12和18周收获。未植入的构建体(总数n = 16)被用作定量DNA,糖胺聚糖和羟脯氨酸的对照。从组织学上讲,新软骨类似于天然猪耳软骨的细胞数量和细胞外基质的组成。 DNA含量表明,光囊化的软骨细胞能够随时间生存和增殖。新组织中糖胺聚糖和羟脯氨酸的含量均较高,这是由降解程度较低的PEGDM水凝胶支持的。随着时间的流逝,新软骨与周围天然软骨的融合得到改善,从而导致了紧密整合界面的发展。 PEGDM共聚物水凝胶可通过光囊化耳软骨细胞来支持体内软骨形成。

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