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Human disk cells from degenerated disks and mesenchymal stem cells in co-culture result in increased matrix production.

机译:共培养中来自退化盘的人盘细胞和间充质干细胞导致基质产量增加。

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摘要

Transplantation of mesenchymal stem cells (MSCs) has been suggested for disk degeneration, which is characterized by dysfunctional cells and low proteoglycan production. The aim of this study was to examine the effects of a 3D co-culture system using human disk cells (DCs) and MSCs on collagen and proteoglycan production. DCs and MSCs were expanded in monolayer and grown in pellet cultures for 7, 14 and 28 days and analyzed for hydroxyproline (HP), reflecting total collagen production, and glycosaminoglycan (GAG) accumulation. DCs and MSCs co-cultured at different ratios (25/75, 50/50 and 75%/25%) were examined for GAG accumulation. Collagen type II expression was analyzed immunohistochemically. In a second series, conditioned media were added to pellet cultures of degenerated DCs or MSCs. DCs from degenerated disks and MSCs demonstrated lower total collagen production than non-degenerated DC pellets. GAG production was comparable in DCs and MSCs, except in the youngest donor, with MSC producing about 10 times higher GAG/DNA. Co-cultures resulted in approximately 1.5 times higher GAG/DNA production than DCs. Increased collagen type II expression was seen in co-cultures compared to DC or MSC culture alone, except in the case with highly active MSCs. No positive effect of conditioned media was seen. In conclusion, co-culture of MSCs with degenerated DCs increased proteoglycan and collagen-type ceII production, indicating that in future clinical therapy MSCs can be transplanted without pre-differentiation in vitro. The lack of effect of conditioned media suggests that the positive effect of co-culture on matrix production is not due to soluble factors.
机译:已经提出了间充质干细胞(MSCs)的移植用于椎间盘退变,其特征是细胞功能异常和蛋白聚糖产量低。这项研究的目的是检查使用人磁盘细胞(DC)和MSC的3D共培养系统对胶原蛋白和蛋白聚糖生产的影响。 DC和MSC在单层中扩增,并在沉淀培养物中生长7、14和28天,并分析羟脯氨酸(HP),反映了总胶原蛋白的产生和糖胺聚糖(GAG)的积累。检查以不同比例(25 / 75、50 / 50和75%/ 25%)共培养的DC和MSC的GAG积累。免疫组化分析了II型胶原蛋白的表达。在第二系列中,将条件培养基添加到变性DC或MSC的沉淀培养物中。变性圆盘和MSC的DC显示出的胶原蛋白总产量低于未变性DC颗粒。除最年轻的供体外,DC和MSC中的GAG产量相当,其中MSC的GAG / DNA高约10倍。共培养产生的GAG / DNA产量比DC大约高1.5倍。与单独的DC或MSC培养相比,在共培养中观察到II型胶原蛋白表达增加,但高活性MSC除外。没有看到条件培养基的积极作用。总之,将MSC与简并的DC共培养可增加蛋白聚糖和胶原型ceII的产生,这表明在将来的临床治疗中,可以在不进行预分化的情况下移植MSC。条件培养基影响的缺乏表明共培养对基质产生的积极影响不是由于可溶性因子。

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