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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Menaquinone-4 enhances osteogenic potential of human amniotic fluid mesenchymal stem cells cultured in 2D and 3D dynamic culture systems
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Menaquinone-4 enhances osteogenic potential of human amniotic fluid mesenchymal stem cells cultured in 2D and 3D dynamic culture systems

机译:menaquinone-4增强了在2D和3D动态培养系统中培养的人羊水间充质干细胞的成骨潜力

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Menaquinones, also known as Vitamin K2 family, regulate calcium homeostasis in a bone-vascular cross-talk' and recently received particular attention for their positive effect on bone formation. Given that the correlation between menaquinones and bone metabolism to date is still unclear, the objective of our study was to investigate the possible role of menaquinone-4 (MK-4), an isoform of the menaquinones family, in the modulation of osteogenesis. For this reason, we used a model of human amniotic fluid mesenchymal stem cells (hAFMSCs) cultured both in two-dimensional (2D) and three-dimensional (3D; RCCSbioreactor) in vitro culture systems. Furthermore, to mimic the bone remodelling unit' in vitro, hAFMSCs were co-cultured in the 3D system with human monocyte cells (hMCs) as osteoclast precursors. The results showed that in a conventional 2D culture system, hAFMSCs were responsive to the MK-4, which significantly improved the osteogenic process through -glutamyl carboxylase-dependent pathway. The same results were obtained in the 3D dynamic system where MK-4 treatment supported the osteoblast-like formation promoting the extracellular bone matrix deposition and the expression of the osteogenic-related proteins (alkaline phosphatase, osteopontin, collagen type-1 and osteocalcin). Notably, when the hAFMSCs were co-cultured in a 3D dynamic system with the hMCs, the presence of MK-4 supported the cellular aggregate formation as well as the osteogenic function of hAFMSCs, but negatively affected the osteoclastogenic process. Taken together, our results demonstrate that MK-4 supported the aggregate formation of hAFMSCs and increased the osteogenic functions. Specifically, our data could help to optimize bone regenerative medicine combining cell-based approaches with MK-4 treatment.
机译:梅花酮,又称维生素K2家族,调节骨血管交叉口交的钙稳态',最近接受了对骨形成的积极影响的特别关注。鉴于迄今迄今为止的母牛和骨代谢之间的相关性尚不清楚,我们研究的目的是调查menaquinone-4(MK-4)的可能作用,在骨质发生调节中,母牛家族的同种型。因此,我们使用两维(2D)和三维(3D; RCCSbioreSector)在体外培养系统中培养的人羊液间充质干细胞(HAFMSCs)模型。此外,为了模拟体外骨重塑单元',HAFMSCS在具有人单核细胞细胞(HMC)的3D系统中共培养,作为骨质体前体。结果表明,在常规的2D培养系统中,HAFMSCs对MK-4的响应性,通过 - 谷氨酸羧化酶依赖性途径显着改善了成沸过程。在3D动态系统中获得了相同的结果,其中MK-4处理支持促进细胞外骨基质沉积的成骨细胞样形成和骨质发生相关蛋白质(碱性磷酸酶,骨孔,胶原蛋白型-1和骨钙素)的表达。值得注意的是,当HAFMSCs在具有HMC的3D动态系统中共培养时,MK-4的存在支持细胞聚集体形成以及HAFMSCs的成骨功能,但对骨溶解过程负面影响。我们的结果一起携带,表明MK-4支持HAFMSCs的总形成并增加了成骨功能。具体地,我们的数据可以有助于优化与MK-4治疗相结合基于细胞的方法的骨再生药物。

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