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In vitro osteogenic and odontogenic differentiation of human dental pulp stem cells seeded on carboxymethyl cellulose-hydroxyapatite hybrid hydrogel

机译:羧甲基纤维素-羟磷灰石杂化水凝胶接种的人牙髓干细胞的体外成骨和成牙分化

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Stem cells from human dental pulp have been considered as an alternative source of adult stem cells in tissue engineering because of their potential to differentiate into multiple cell lineages. Recently, polysaccharide based hydrogels have become especially attractive as matrices for the repair and regeneration of a wide variety of tissues and organs. The incorporation of inorganic minerals as hydroxyapatite nanoparticles can modulate the performance of the scaffolds with potential applications in tissue engineering. The aim of this study was to verify the osteogenic and odontogenic differentiation of dental pulp stem cells (DPSCs) cultured on a carboxymethyl cellulose—hydroxyapatite hybrid hydrogel. Human DPSCs were seeded on carboxymethyl cellulose—hydroxyapatite hybrid hydrogel and on carboxymethyl cellulose hydrogel for 1, 3, 5, 7, 14, and 21 days. Cell viability assay and ultramorphological analysis were carried out to evaluate biocompatibility and cell adhesion. Real Time PCR was carried out to demonstrate the expression of osteogenic and odontogenic markers. Results showed a good adhesion and viability in cells cultured on carboxymethyl cellulose—hydroxyapatite hybrid hydrogel, while a low adhesion and viability was observed in cells cultured on carboxymethyl cellulose hydrogel. Real Time PCR data demonstrated a temporal up-regulation of osteogenic and odontogenic markers in dental pulp stem cells cultured on carboxymethyl cellulose—hydroxyapatite hybrid hydrogel. In conclusion, our in vitro data confirms the ability of DPSCs to differentiate toward osteogenic and odontogenic lineages in presence of a carboxymethyl cellulose—hydroxyapatite hybrid hydrogel. Taken together, our results provide evidence that DPSCs and carboxymethyl cellulose—hydroxyapatite hybrid hydrogel could be considered promising candidates for dental pulp complex and periodontal tissue engineering.
机译:来自人类牙髓的干细胞被认为是组织工程中成人干细胞的替代来源,因为它们具有分化成多种细胞谱系的潜力。近来,基于多糖的水凝胶作为用于修复和再生各种组织和器官的基质已变得特别有吸引力。无机矿物作为羟基磷灰石纳米粒子的掺入可以调节支架的性能,并在组织工程中具有潜在的应用。这项研究的目的是验证在羧甲基纤维素-羟基磷灰石杂化水凝胶上培养的牙髓干细胞(DPSC)的成骨和成牙分化。将人DPSCs接种在羧甲基纤维素-羟基磷灰石杂化水凝胶上和羧甲基纤维素水凝胶上1、3、5、7、14和21天。进行细胞活力测定和超形态学分析以评价生物相容性和细胞粘附。进行实时PCR以证明成骨和成牙标记物的表达。结果表明,在羧甲基纤维素-羟基磷灰石杂化水凝胶上培养的细胞中具有良好的粘附力和生存力,而在羧甲基纤维素水凝胶上培养的细胞中则具有较低的粘附力和生存力。实时PCR数据表明,在羧甲基纤维素-羟磷灰石杂化水凝胶上培养的牙髓干细胞中成骨和成牙标记物的时间上调。总之,我们的体外数据证实了在存在羧甲基纤维素-羟基磷灰石杂化水凝胶的情况下,DPSCs能够分化为成骨和成牙细胞系。综上所述,我们的结果提供了证据,即DPSC和羧甲基纤维素-羟基磷灰石杂化水凝胶可被认为是牙髓复合物和牙周组织工程的有希望的候选物。

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