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Can Notochordal Cells Promote Bone Marrow Stromal Cell Potential for Nucleus Pulposus Enrichment? A Simplified In Vitro System

机译:脊索细胞能促进骨髓基质细胞富集髓核的潜力吗?简化的体外系统

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Bone marrow stromal cells (BMSCs) have shown promising potential to stop intervertebral disc degeneration in several animal models. In order to restore a healthy state, though, this potential should be further stimulated. Notochordal cells (NCs), influential in disc development, have been shown to stimulate BMSC differentiation, but it is unclear how this effect will translate in an environment where resident disc cells (nucleus pulposus cells [NPCs]) could also influence BMSCs. The goal of this study was, therefore, to evaluate the effects of NCs on BMSCs when cocultured with NPCs, in a simplified 3D in vitro system. Bovine BMSCs and NPCs were mixed (Mix) and seeded into alginate beads. Using culture inserts, the Mix was then cocultured with porcine NCs (alginate beads) and compared to coculture with empty beads or porcine skin fibroblasts (SFs, alginate beads). NPCs alone were also cocultured with NCs, and BMSCs alone cultured under chondrogenic conditions. The effects of coculture conditions on cell viability, matrix production (proteoglycan and collagen), and gene expression of disc markers (aggrecan, type II collagen, and SOX9) were assessed after 4 weeks of culture. The NC phenotype and gene expression profile were also analyzed. Coculture with NCs did not significantly influence cell viability, proteoglycan production, or disc marker gene expression of the Mix. When compared to NPCs, the Mix produced the same amount of proteoglycan and displayed a higher expression of disc marker, indicating a stimulation of the BMSCs (and/or NPCs) in the Mix. Additionally, during the 4 weeks of culture, the NC phenotype changed drastically (morphology, gene expression profile). These results show that NCs might not be as stimulatory for BMSCs in an NPC-rich environment, as believed from individual cultures. This absence of effects could be explained by a mild stimulation provided by (de)differentiating NCs and the costimulation of BMSCs and NPCs by each other.
机译:在几种动物模型中,骨髓基质细胞(BMSC)都显示出有望阻止椎间盘退变的潜力。但是,为了恢复健康状态,应进一步激发这种潜力。已经显示了影响椎间盘发育的脊索细胞(NCs)刺激BMSC分化,但是目前尚不清楚在驻留的椎间盘细胞(髓核细胞[NPC])也可能影响BMSC的环境中这种作用如何转化。因此,本研究的目的是在简化的3D体外系统中评估与NPC共培养时NC对BMSC的影响。将牛BMSC和NPC混合(混合)并接种到藻酸盐珠中。然后使用培养插入物,将混合物与猪NCs(藻酸盐珠)共培养,并与空珠或猪皮肤成纤维细胞(SFs,藻酸盐珠)共培养进行比较。 NPCs也单独与NCs共培养,而BMSCs在软骨形成条件下单独培养。培养4周后,评估了共培养条件对细胞活力,基质产生(蛋白聚糖和胶原蛋白)和椎间盘标记物(aggrecan,II型胶原蛋白和SOX9)的基因表达的影响。还分析了NC表型和基因表达谱。与NC的共培养不会显着影响Mix的细胞活力,蛋白聚糖的产生或椎间盘标记基因的表达。当与NPC相比时,混合物产生相同量的蛋白聚糖并显示出较高的椎间盘标记物表达,表明刺激了混合物中的BMSC(和/或NPC)。另外,在培养的4周中,NC表型急剧变化(形态,基因表达谱)。这些结果表明,NCs可能不像NPC那样刺激NPC丰富环境中的BMSC。这种影响的不存在可以通过(去)分化NC提供的轻度刺激以及BMSC和NPC彼此的共刺激来解释。

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