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Systematic comparison of biologically active foreign ions-codoped calcium phosphate microparticles on osteogenic differentiation in rat osteoporotic and normal mesenchymal stem cells

机译:具有生物活性的外来离子掺杂磷酸钙微粒对大鼠骨质疏松和正常间充质干细胞成骨分化的系统比较

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摘要

Osteoporosis is a disease characterized by structural deterioration of bone tissue, leading to skeletal fragility with increased fracture risk. Calcium phosphates (CaPs) are widely used in bone tissue engineering strategies as they have similarities to bone apatite except for the absence of trace elements (TEs) in the CaPs. Bioactive glasses (BGs) have also been used successfully in clinic for craniomaxillofacial and dental applications during the last two decades due to their excellent potential for bonding with bone and inducing osteoblastic differentiation. In this study, we evaluated the osteogenic effects of the ionic dissolution products of the quaternary Si-Sr-Zn-Mg-codoped CaP (TEs-CaP) or 45S5 Bioglass® (45S5 BG), both as mixtures and separately, on rat bone marrow-derived mesenchymal stem cells (rOMSCs & rMSCs) from osteoporotic and normal animals, using an MTT test and Alizarin Red S staining. The materials enhanced cell proliferation and osteogenic differentiation, especially the combination of the BG and TEs-CaP. Analysis by quantitative PCR and ELISA indicated that the expression of osteogenic-specific genes and proteins were elevated. These investigations suggest that the TEs-CaP and 45S5 BG operate synergistically to create an extracellular environment that promotes proliferation and terminal osteogenic differentiation of both osteoporotic and normal rMSCs.
机译:骨质疏松症是一种以骨组织结构退化为特征的疾病,导致骨骼脆弱,骨折风险增加。磷酸钙(CaPs)被广泛用于骨组织工程策略,因为它们与骨磷灰石相似,但CaPs中不存在痕量元素(TEs)。在过去的二十年中,由于生物活性玻璃(BGs)具有与骨头结合和诱导成骨细胞分化的巨大潜力,它们已经在临床上成功用于颅颌面和牙科应用。在这项研究中,我们评估了四元Si-Sr-Zn-Mg掺杂的CaP(TEs-CaP)或45S5Bioglass®(45S5 BG)的离子溶解产物对大鼠骨骼的成骨作用。使用MTT测试和茜素红S染色,从骨质疏松动物和正常动物中提取骨髓来源的间充质干细胞(rOMSCs和rMSCs)。该材料增强了细胞增殖和成骨分化,特别是BG和TEs-CaP的组合。通过定量PCR和ELISA的分析表明成骨特异性基因和蛋白质的表达升高。这些研究表明,TEs-CaP和45S5 BG具有协同作用,可创造一个促进骨质疏松和正常rMSC增殖和终末成骨分化的细胞外环境。

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