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Demineralized bone promotes chondrocyte or osteoblast differentiation of human marrow stromal cells cultured in collagen sponges

机译:脱矿质骨促进胶原海绵中培养的骨髓基质细胞的软骨细胞或成骨细胞分化

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摘要

Demineralized bone implants have been used for many types of craniomaxillofacial, orthopedic, periodontal, and hand reconstruction procedures. In previous studies, we showed that demineralized bone powder (DBP) induces chondrogenesis of human dermal fibroblasts in a DBP/collagen sponge system that optimized interactions between particles of DBP and target cells in cell culture. In this study, we test the hypothesis that DBP promotes chondrogenesis or osteogenesis of human marrow stromal cells (hMSCs) in 3-D collagen sponge culture, depending upon the culture conditions. We first confirmed that hMSCs have chondrogenic potential when treated with TGF-β, either in 2-D monolayer cultures or in 3-D porous collagen sponges. Second, we found that DBP markedly enhanced chondrogenesis in hMSCs in 3-D sponges, as assessed by metachromasia and expression of chondrocyte-specific genes AGGRECAN, COL II, and COL X. Human dermal fibroblasts (hDFs) were used to define mechanisms of chondroinduction because unlike hMSCs they have no inherent chondrogenic potential. In situ hybridization revealed that hDFs vicinal to DBPs express chondrocyte-specific genes AGGRECAN or COL II. Macroarray analysis showed that DBP activates TGF-β/BMP signaling pathway genes in hDFs. Finally, DBP induced hMSCs to express the osteoblast phenotype when cultured with osteogenic supplements. These studies show how culture conditions can influence the differentiation pathway that human marrow stromal cells follow when stimulated by DBP. These results support the potential to engineer cartilage or bone in vitro by using human bone marrow stromal cells and DBP/collagen scaffolds.
机译:脱钙骨植入物已用于多种类型的颅颌面部,整形外科,牙周和手重建手术。在以前的研究中,我们表明,去矿质骨粉(DBP)在DBP /胶原海绵系统中诱导人皮肤成纤维细胞的软骨生成,从而优化了DBP颗粒与细胞培养物中靶细胞之间的相互作用。在这项研究中,我们测试了以下假设:取决于培养条件,DBP在3-D胶原海绵培养中促进人骨髓基质细胞(hMSCs)的软骨形成或成骨作用。我们首先证实,在2-D单层培养物中或在3-D多孔胶原海绵中,用TGF-β处理时,hMSC具有软骨形成的潜力。其次,我们发现,通过变色和软骨细胞特异性基因AGGRECAN,COL II和COL X的表达评估,DBP显着增强了3-D海绵中hMSC的软骨形成。人类皮肤成纤维细胞(hDFs)用于定义软骨诱导的机制因为与hMSC不同,它们没有固有的软骨形成潜能。原位杂交显示,与DBP相邻的hDFs表达软骨细胞特异性基因AGGRECAN或COL II。宏阵列分析表明DBP激活hDFs中的TGF-β/ BMP信号通路基因。最后,当与成骨补品一起培养时,DBP诱导hMSCs表达成骨细胞表型。这些研究表明,在DBP刺激下,培养条件如何影响人骨髓基质细胞的分化途径。这些结果支持通过使用人骨髓基质细胞和DBP /胶原蛋白支架在体外工程化软骨或骨骼的潜力。

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