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首页> 外文期刊>Tissue engineering, Part C. Methods >Multi-level factorial analysis of Ca 2+/P i supplementation as bio-instructive media for in vitro biomimetic engineering of three-dimensional osteogenic hybrids
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Multi-level factorial analysis of Ca 2+/P i supplementation as bio-instructive media for in vitro biomimetic engineering of three-dimensional osteogenic hybrids

机译:Ca 2 + / P i补充作为三维成骨杂交种体外仿生工程生物教学介质的多级因子分析

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We report on the in vitro use of Ca 2+/P i supplementation as a bio-instructive medium to drive human periosteum-derived cells (hPDCs) toward osteogenic differentiation on three-dimensional (3D) porous Ti6Al4V scaffolds. Through a multilevel factorial analysis, we have systematically investigated the biological effect and interactions of Ca 2+ or P i supplementation in three selected media preparations (i.e., basic growth medium, osteogenic medium [OM], and osteogenic medium without β-glycerophosphate [OM -]) and have identified specific conditions which induce proliferation and significant osteogenic differentiation of two-dimensional (2D) hPDC cultures. These findings were translated from 2D to 3D cultures conditions to instruct hPDCs to populate porous Ti6Al4V scaffolds and to differentiate into the osteoblast lineage with collagenous matrix production and subsequent matrix mineralization on the 3D structures. These osteogenic hybrids may potentially serve as a clinically relevant customizable bone reparative unit, providing a biomimetic template to more effectively mediate in vivo bone regeneration.
机译:我们报告了体外使用Ca 2 + / Pi补充剂作为生物指导介质来驱动人类骨膜衍生细胞(hPDCs)向三维(3D)多孔Ti6Al4V支架上的成骨分化方向发展。通过多因素分析,我们系统地研究了Ca 3+或P i补充剂在三种选择的培养基制剂(即基本生长培养基,成骨培养基[OM]和不含β-甘油磷酸酯[OM]的成骨培养基)中的生物学效应和相互作用。 -]),并确定了诱导二维(2D)hPDC培养物增殖和显着成骨分化的特定条件。将这些发现从2D培养条件转换为3D培养条件,以指示hPDC填充多孔Ti6Al4V支架,并分化为成骨细胞谱系,并产生胶原基质并随后在3D结构上矿化。这些成骨杂种可能潜在地用作临床相关的可定制骨修复单元,提供仿生模板以更有效地介导体内骨再生。

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