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首页> 外文期刊>Acta biomaterialia >A three-dimensional tissue culture model of bone formation utilizing rotational co-culture of human adult osteoblasts and osteoclasts.
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A three-dimensional tissue culture model of bone formation utilizing rotational co-culture of human adult osteoblasts and osteoclasts.

机译:利用人成人成骨细胞旋转共培养的骨形成三维组织培养模型。

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摘要

Living bone is a complex, three-dimensional composite material consisting of numerous cell types spatially organized within a mineralized extracellular matrix. To date, mechanistic investigation of the complex cellular level cross-talk between the major bone-forming cells involved in the response of bone to mechanical and biochemical stimuli has been hindered by the lack of a suitable in vitro model that captures the "coupled" nature of this response. Using a novel rotational co-culture approach, we have generated large (>4mm diameter), three-dimensional mineralized tissue constructs from a mixture of normal human primary osteoblast and osteoclast precursor cells without the need for any exogenous osteoconductive scaffolding material that might interfere with such cell-cell interactions. Mature, differentiated bone constructs consist of an outer region inhabited by osteoclasts and osteoblasts and a central region containing osteocytes encased in a self-assembled, porous mineralized extracellular matrix. Bone constructs exhibit morphological, mineral and biochemical features similar to remodeling human trabecular bone, including the expression of mRNA for SOST, BGLAP, ACP5, BMP-2, BMP-4 and BMP-7 within the construct and the secretion of BMP-2 protein into the medium. This "coupled" model of bone formation will allow the future investigation of various stimuli on the process of normal bone formation/remodeling as it relates to the cellular function of osteoblasts, osteoclasts and osteocytes in the generation of human mineralized tissue.
机译:生物骨是一种复杂的三维复合材料,包括在矿化细胞外基质中空间组织的许多细胞类型。迄今为止,由于缺乏合适的体外模型,缺乏捕获“耦合”性质的合适的体外模型,涉及骨骼与机械和生化刺激响应的主要骨形成细胞之间的复杂细胞水平串扰的机械研究。这个回应。使用新型旋转共培养方法,我们产生大(> 4mm直径),三维矿化组织构建法从正常人初级成骨细胞和破骨细胞前体细胞的混合物中,无需任何可能干扰的外源性骨导电脚手架材料这种细胞间相互作用。成熟的分化骨构造由骨细胞和成骨细胞居住的外部区域和含有在自组装的多孔矿化细胞外基质中包装的骨细胞的中心区域。骨构建体表现出类似于重塑人的小梁骨的形态,矿物和生化特征,包括在构建体中表达SOST,BGLAP,ACP5,BMP-2,BMP-4和BMP-7和BMP-2蛋白的分泌进入媒介。这种“耦合”的骨形成模型将允许未来对正常骨形成/重塑过程进行各种刺激的调查,因为它涉及在人矿化组织产生的成骨细胞,破骨细胞和骨细胞的细胞功能。

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