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首页> 外文期刊>Acta biomaterialia >Gel structure has an impact on pericellular and extracellular matrix deposition, which subsequently alters metabolic activities in chondrocyte-laden PEG hydrogels.
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Gel structure has an impact on pericellular and extracellular matrix deposition, which subsequently alters metabolic activities in chondrocyte-laden PEG hydrogels.

机译:凝胶结构会影响细胞周围和细胞外基质的沉积,继而改变软骨细胞中PEG水凝胶的代谢活性。

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摘要

While designing poly(ethylene glycol) hydrogels with high moduli suitable for in situ placement is attractive for cartilage regeneration, the impact of a tighter crosslinked structure on the organization and deposition of the matrix is not fully understood. The objectives of this study were to characterize the composition and spatial organization of new matrix as a function of gel crosslinking and study its impact on chondrocytes in terms of anabolic and catabolic gene expression and catabolic activity. Bovine articular chondrocytes were encapsulated in hydrogels with three crosslinking densities (compressive moduli 60, 320 and 590 kPa) and cultured for 25 days. Glycosaminoglycan production increased with culture time and was greatest in the gels with lowest crosslinking. Collagens II and VI, aggrecan, link protein and decorin were localized to pericellular regions in all gels, but their presence decreased with increasing gel crosslinking. Collagen II and aggrecan expression were initially up-regulated in gels with higher crosslinking, but increased similarly up to day 15. Matrix metalloproteinase (MMP)-1 and MMP-13 expression were elevated ( approximately 25-fold) in gels with higher crosslinking throughout the study, while MMP-3 was unaffected by gel crosslinking. The presence of aggrecan and collagen degradation products confirmed MMP activity. These findings indicate that chondrocytes synthesized the major cartilage components within PEG hydrogels, however, gel structure had a significant impact on the composition and spatial organization of the new tissue and on how chondrocytes responded to their environment, particularly with respect to their catabolic expression.
机译:尽管设计适合于原位放置的具有高模量的聚(乙二醇)水凝胶对于软骨再生是有吸引力的,但尚未完全理解更紧密的交联结构对基质的组织和沉积的影响。这项研究的目的是表征新基质的组成和空间组织与凝胶交联的功能,并研究其在合成代谢和分解代谢基因表达以及分解代谢活性方面对软骨细胞的影响。将牛关节软骨细胞封装在具有三种交联密度(压缩模量分别为60、320和590 kPa)的水凝胶中,并培养25天。糖胺聚糖的产生随培养时间的增加而增加,在交联程度最低的凝胶中最大。胶原蛋白II和VI,聚集蛋白聚糖,连接蛋白和除蛋白在所有凝胶中均位于细胞周围区域,但它们的存在随着凝胶交联的增加而减少。胶原蛋白II和聚集蛋白聚糖的表达最初在交联度较高的凝胶中上调,但直到第15天都类似地增加。基质金属蛋白酶(MMP)-1和MMP-13的表达在交联度较高的凝胶中升高(约25倍)该研究表明,MMP-3不受凝胶交联的影响。聚集蛋白聚糖和胶原降解产物的存在证实了MMP活性。这些发现表明软骨细胞在PEG水凝胶中合成了主要的软骨成分,但是,凝胶结构对新组织的组成和空间组织以及软骨细胞对环境的反应,特别是对分解代谢的表达有重大影响。

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