首页> 美国卫生研究院文献>Journal of Tissue Engineering >Osteogenic differentiation of human dental pulp stem cells on β-tricalcium phosphate/poly (l-lactic acid/caprolactone) three-dimensional scaffolds
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Osteogenic differentiation of human dental pulp stem cells on β-tricalcium phosphate/poly (l-lactic acid/caprolactone) three-dimensional scaffolds

机译:人牙髓干细胞在β-磷酸三钙/聚(l-乳酸/己内酯)三维支架上的成骨分化

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摘要

Functional tissue engineering for bone augmentation requires the appropriate combination of biomaterials, mesenchymal stem cells, and specific differentiation factors. Therefore, we investigated the morphology, attachment, viability, and proliferation of human dental pulp stem cells cultured in xeno-free conditions in human serum medium seeded on β-tricalcium phosphate/poly(l-lactic acid/caprolactone) three-dimensional biomaterial scaffold. Additionally, osteogenic inducers dexamethasone and vitamin D3 were compared to achieve osteogenic differentiation. Dental pulp stem cells cultured in human serum medium maintained their morphology; furthermore, cells attached, remained viable, and increased in cell number within the scaffold. Alkaline phosphatase staining showed the osteogenic potential of dental pulp stem cells under the influence of osteogenic medium containing vitamin D3 or dexamethasone within the scaffolds. Maintenance of dental pulp stem cells for 14 days in osteogenic medium containing vitamin D3 resulted in significant increase in osteogenic markers as shown at mRNA level in comparison to osteogenic medium containing dexamethasone. The results of this study show that osteogenic medium containing vitamin D3 osteo-induced dental pulp stem cells cultured in human serum medium within β-tricalcium phosphate/poly(l-lactic acid/caprolactone) three-dimensional biomaterial, which could be directly translated clinically.
机译:用于骨骼增强的功能性组织工程需要生物材料,间充质干细胞和特定分化因子的适当组合。因此,我们研究了在β-磷酸三钙/聚(L-乳酸/己内酯)三维生物材料支架上接种的人血清培养基中在无异种条件下培养的人牙髓干细胞的形态,附着,活力和增殖。 。另外,比较了成骨诱导剂地塞米松和维生素D3来实现成骨分化。在人血清培养基中培养的牙髓干细胞保持其形态。此外,支架中附着的细胞,保持活力并增加细胞数量。碱性磷酸酶染色显示在支架内含有维生素D3或地塞米松的成骨培养基的影响下,牙髓干细胞具有成骨潜力。与含有地塞米松的成骨培养基相比,在含有维生素D3的成骨培养基中将牙髓干细胞维持14天会导致成骨标记物的显着增加(如mRNA水平所示)。研究结果表明,在人血清培养基中β-磷酸三钙/聚(l-乳酸/己内酯)三维生物材料中培养的含维生素D3骨诱导牙髓干细胞的成骨培养基可直接临床翻译。

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