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Comparison of Photopolymerizable Thiol-ene PEG and Acrylate-Based PEGHydrogels for Cartilage Development

机译:可光聚合的巯基-PEG和丙烯酸酯基PEG的比较用于软骨发育的水凝胶

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摘要

When designing hydrogels for tissue regeneration, differences in polymerization mechanism and network structure have the potential to impact cellular behavior. Poly(ethylene glycol) hydrogels were formed by free-radical photopolymerization of acrylates (chain-growth) or thiol-norbornenes (step-growth) to investigate the impact of hydrogel system (polymerization mechanism and network structure) on the development of engineered tissue. Bovine chondrocytes were encapsulated in hydrogels and cultured under free swelling or dynamic compressive loading. In the acrylate system immediately after encapsulation chondrocytes exhibited high levels of intracellular ROS concomitant with a reduction in hydrogel compressive modulus and higher variability in cell deformation upon compressive strain; findings that were not observed in the thiol-norbornene system. Long-term the quantity of sulfated glycosaminoglycans and total collagen was greater in the acrylate system, but the quality resembled that of hypertrophic cartilage with positive staining for aggrecan, collagens I, II, and X and collagen catabolism. The thiol-norbornene system led to hyaline-like cartilage production especially under mechanical loading with positive staining for aggrecan and collagen II and minimal stainingfor collagens I and X and collagen catabolism. Findings from this study confirmthat the polymerization mechanism and network structure have long-term effectson the quality of engineered cartilage, especially under mechanical loading.
机译:当设计用于组织再生的水凝胶时,聚合机制和网络结构的差异可能会影响细胞行为。通过丙烯酸酯(链增长)或硫醇降冰片烯(逐步增长)的自由基光聚合反应形成聚乙二醇水凝胶,以研究水凝胶体系(聚合机理和网络结构)对工程组织发展的影响。将牛软骨细胞包裹在水凝胶中,并在自由溶胀或动态压缩负荷下培养。在包封后立即在丙烯酸酯体系中,软骨细胞表现出高水平的细胞内ROS,伴随着水凝胶压缩模量的降低和压缩应变后细胞变形的较高变异性;在硫醇-降冰片烯系统中未观察到的发现。长期在丙烯酸酯体系中硫酸化糖胺聚糖和胶原蛋白的总量较大,但是其质量类似于肥大软骨的蛋白聚糖,I,II和X胶原和X胶原分解代谢呈阳性。硫醇-降冰片烯系统特别是在机械负载下,聚集蛋白聚糖和II型胶原蛋白呈阳性染色,且染色极少,从而导致产生类似于透明质酸的软骨用于胶原蛋白I和X以及胶原蛋白的分解代谢。这项研究的结果证实了聚合机理和网络结构具有长期影响工程软骨的质量,尤其是在机械载荷下。

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