Suppr超能文献

共培养诱导间充质干细胞分化和退变人髓核细胞表型的调节。

Co-culture induces mesenchymal stem cell differentiation and modulation of the degenerate human nucleus pulposus cell phenotype.

机构信息

Regenerative Medicine, School of Biomedicine, Faculty of Medical & Human Sciences, The University of Manchester, Manchester, M13 9PT, UK.

出版信息

Regen Med. 2010 Sep;5(5):701-11. doi: 10.2217/rme.10.59.

Abstract

AIMS

While mesenchymal stem cell (MSC)-based therapies for repair of the degenerate intervertebral disc (IVD) have been proposed, the interaction of MSCs with cells of the degenerate IVD has not been fully investigated. Therefore, it is unclear whether implanted MSCs would differentiate into nucleus pulposus (NP) cells and/or stimulate endogenous NP cells. Here, we investigate the differences in interaction between human MSCs and NP cells from both nondegenerate and degenerate discs during in vitro co-culture with direct cell-cell contact.

MATERIALS & METHODS: Human bone marrow-derived MSCs (labeled with CFDA) were co-cultured with direct cell-cell contact in monolayer with NP cells obtained from nondegenerate or degenerate human NP tissue from lumbar IVDs at 50:50 ratios for 7 days. Differentiation of MSCs and changes of matrix-associated genes in NP cells were assessed by quantitative real-time PCR.

RESULTS

MSCs differentiated to an NP-like phenotype following direct co-culture with both nondegenerate and degenerate NP, as shown by a significant upregulation of SOX9, type VI collagen, aggrecan and versican gene expression together with a simultaneous upregulation of CDMP-1, TGF-β1, IGF-1 and CTGF. Direct co-culture of normal NP cells with MSCs had no effect on the phenotype of normal NP cells, while co-culture with degenerate NP cells resulted in enhanced matrix gene expression in degenerate NP cells, accompanied by increases in both TGF-β and CDMP-1 gene expression.

CONCLUSION

Importantly for MSC-based therapies for repair of the degenerate IVD, these data suggest that cellular interactions between MSCs and degenerate NP cells may both stimulate MSC differentiation to an NP-like phenotype and also stimulate the endogenous NP cell population to regain a nondegenerate phenotype and consequently enhance matrix synthesis for self-repair.

摘要

目的

虽然已经提出了基于间充质干细胞(MSC)的退行性椎间盘(IVD)修复疗法,但 MSC 与退行性 IVD 细胞的相互作用尚未得到充分研究。因此,尚不清楚植入的 MSC 是否会分化为髓核(NP)细胞和/或刺激内源性 NP 细胞。在这里,我们通过直接细胞-细胞接触的体外共培养来研究人 MSC 与来自非退行性和退行性椎间盘的 NP 细胞之间相互作用的差异。

材料与方法

将 CFDA 标记的人骨髓来源 MSC 与 NP 细胞在单层中进行直接细胞-细胞接触共培养,NP 细胞来源于腰椎 IVD 的非退行性或退行性人 NP 组织,比例为 50:50,共培养 7 天。通过定量实时 PCR 评估 MSC 的分化和 NP 细胞中基质相关基因的变化。

结果

直接与非退行性和退行性 NP 共培养后,MSC 分化为 NP 样表型,SOX9、VI 型胶原、聚集蛋白聚糖和 versican 基因表达显著上调,同时 CDMP-1、TGF-β1、IGF-1 和 CTGF 基因表达也上调。正常 NP 细胞与 MSC 的直接共培养对正常 NP 细胞的表型没有影响,而与退行性 NP 细胞的共培养导致退行性 NP 细胞中基质基因表达增强,同时 TGF-β 和 CDMP-1 基因表达增加。

结论

对于基于 MSC 的退行性 IVD 修复疗法而言,这些数据表明 MSC 与退行性 NP 细胞之间的细胞相互作用可能既刺激 MSC 分化为 NP 样表型,又刺激内源性 NP 细胞群恢复非退行性表型,从而增强基质合成以实现自我修复。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验