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首页> 外文期刊>American Journal of Sports Medicine >Zonal chondrocyte subpopulations reacquire zone-specific characteristics during in vitro redifferentiation.
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Zonal chondrocyte subpopulations reacquire zone-specific characteristics during in vitro redifferentiation.

机译:在体外再分化过程中,带状软骨细胞亚群重新获得了区域特异性特征。

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BACKGROUND: If chondrocytes from the superficial, middle, and deep zones of articular cartilage could maintain or regain their characteristic properties during in vitro culture, it would be feasible to create constructs comprising these distinctive zones. HYPOTHESIS: Zone-specific characteristics of zonal cell populations will disappear during 2-dimensional expansion but will reappear after 3-dimensional redifferentiation, independent of the culture technique used (alginate beads versus pellet culture). STUDY DESIGN: Controlled laboratory study. METHODS: Equine articular chondrocytes from the 3 zones were expanded in monolayer culture (8 donors) and subsequently redifferentiated in pellet and alginate bead cultures for up to 4 weeks. Glycosaminoglycans and DNA were quantified, along with immunohistochemical assessment of the expression of various zonal markers, including cartilage oligomeric protein (marking cells from the deeper zones) and clusterin (specifically expressed by superficial chondrocytes). RESULTS: Cell yield varied between zones, but proliferation rates did not show significant differences. Expression of all evaluated zonal markers was lost during expansion. Compared to the alginate bead cultures, pellet cultures showed a higher amount of glycosaminoglycans produced per DNA after redifferentiation. In contrast to cells in pellet cultures, cells in alginate beads regained zonal differences, as evidenced by zone-specific reappearance of cartilage oligomeric protein and clusterin, as well as significantly higher glycosaminoglycans production by cells from the deep zone compared to the superficial zone. CONCLUSION: Chondrocytes isolated from the 3 zones of equine cartilage can restore their zone-specific matrix expression when cultured in alginate after in vitro expansion. CLINICAL RELEVANCE: Appreciation of the zonal differences can lead to important advances in cartilage tissue engineering. Findings support the use of hydrogels such as alginate for engineering zonal cartilage constructs.
机译:背景:如果来自关节软骨浅表,中部和深部区域的软骨细胞在体外培养过程中可以维持或恢复其特征,那么创建包含这些独特区域的构建体将是可行的。假设:在二维扩展过程中,区域细胞群的区域特异性特征将消失,但在三维再分化后将再次出现,而与所使用的培养技术无关(藻酸盐珠与沉淀培养)。研究设计:受控实验室研究。方法:将3个区域的马关节软骨细胞在单层培养中扩增(8个供体),然后在沉淀和藻酸盐珠培养物中再分化长达4周。对糖胺聚糖和DNA进行定量,并对各种区域性标志物的表达进行免疫组化评估,包括软骨寡聚蛋白(来自较深区域的标志性细胞)和簇蛋白(由浅表软骨细胞特异性表达)。结果:细胞产量在区域之间变化,但增殖率没有显示出显着差异。在扩增过程中所有评估的区域标记的表达均丢失。与藻酸盐珠培养物相比,沉淀培养物显示了再分化后每个DNA产生的糖胺聚糖含量更高。与沉淀培养物中的细胞相比,藻酸盐珠粒中的细胞重新获得了区域差异,这由软骨低聚蛋白和簇蛋白的区域特异性再现以及从深部区域的细胞产生的糖胺聚糖产量明显高于表层区域所证明。结论:在体外扩增后,在藻酸盐中培养的马软骨三个区域分离的软骨细胞可以恢复其区域特异性基质表达。临床意义:认识区域差异可导致软骨组织工程学的重要进步。研究结果支持将藻酸盐等水凝胶用于工程化带状软骨构造。

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