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首页> 外文期刊>Tissue engineering, Part A >Coculture with Partial Digestion Notochordal Cell-Rich Nucleus Pulposus Tissue Activates Degenerative Human Nucleus Pulposus Cells
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Coculture with Partial Digestion Notochordal Cell-Rich Nucleus Pulposus Tissue Activates Degenerative Human Nucleus Pulposus Cells

机译:与部分消化的共培养尚未激活了富含细胞的细胞核组织激活退行性人核脉搏细胞

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Recent studies suggested that notochordal cells (NCs) and NC-conditioned medium (NCCM) can stimulate cell viability and matrix production of nucleus pulposus cells (NPCs). However, the potential of notochordal cell-rich nucleus pulposus (NRNP) incorporating the native environment of the intervertebral disc (IVD) has not been evaluated. The objective of this study was to develop an optimal NRNP model and test whether it can allow a significant level of NPC activation in vitro . Rabbit NRNP explants were divided into three groups according to different digestion time: digestion NRNP of 8?h, partial digestion NRNP of 2?h, and natural NRNP. Cell viability and NC phenotype were compared between these groups after 14 days of incubation. The products of the selected partial digestion NRNP group were then cocultured with human degenerated NPCs for 14 days. NPC viability, cell proliferation and senescence, the production of glycosaminoglycan (GAG) found in extracellular matrix, and NP matrix production by NPCs were assessed. The results showed that coculturing with partial digestion NRNP significantly improved the cell proliferation, cell senescence, and disc matrix gene expression of NPCs compared with those in the monoculture group. In addition, GAG/DNA ratio in the coculture group increased significantly, while the level of collagen II protein remained unchanged. In this study, we demonstrated that partial digestion NRNP may show a promising potential for NPC regeneration in IVD tissue engineering.
机译:最近的研究表明,Notochordal细胞(NCS)和NC条件培养基(NCM)可以刺激细胞生存力和基质产生的核脉搏细胞(NPC)。然而,尚未评估包含掺入椎间盘(IVD)的天然环境的富含富含细胞的细胞核浆(NRNP)的潜力。本研究的目的是开发最佳的NRNP模型,并测试其是否可以在体外允许显着的NPC活化。兔NRNP外植体根据不同的消化时间分为三组:8μl的消化NRNP,部分消化NRNP为2?H,NRNP。在孵育14天后,在这些基团之间比较细胞活力和NC表型。然后将所选部分消化NRNP组的产物与人退化的NPC共同化为14天。评估NPC活力,细胞增殖和衰老,在细胞外基质中发现的糖胺聚糖(GAG)的产生,并通过NPCS产生NPC的NP基质产生。结果表明,与单殖民组中的那些相比,通过部分消化NRNP与部分消化NRNP具有显着改善了NPC的细胞增殖,细胞衰老和椎间盘基因基因表达。此外,共培养组中的GAG / DNA比率显着增加,而胶原蛋白II蛋白的水平保持不变。在这项研究中,我们证明了部分消化NRNP可以显示IVD组织工程中NPC再生的有希望的潜力。

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