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Chitosan enhances mineralization during osteoblast differentiation of human bone marrow-derived mesenchymal stem cells, by upregulating the associated genes.

机译:壳聚糖通过上调相关基因来增强人骨髓来源的间充质干细胞在成骨细胞分化过程中的矿化作用。

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OBJECTIVES: Chitosan is widely used as a scaffold for bone tissue engineering. However, up-to-date, no previous detailed study has been conducted to elucidate any mechanism of osteogenesis by chitosan itself. Here, we have evaluated effects of chitosan-coated tissue culture plates on adhesion and osteoblast differentiation processes of human mesenchymal stem cells (hMSCs), isolated from adult bone marrow. MATERIALS AND METHODS: Tissue culture plates coated with chitosan at different coating densities were used to evaluate the effects on hMSC adhesion and osteoblast differentiation. hMSCs were induced to differentiate into osteoblasts on the chitosan-coated plates and were evaluated using established techniques: alkaline phosphatase assay, demonstration of presence of calcium and real time PCR. RESULTS: The cells adhered to plates of lower coating density of chitosan, but formed viable cell aggregates at higher coating density (100 mug/sq.cm). Coating density of 25 mug/sq.cm, supporting cell adhesion was chosen for osteoblast differentiation experiments. Differentiating hMSCs showed higher mineral deposition and calcium content on chitosan-coated plates. Chitosan upregulated genes associated with calcium binding and mineralization such as collagen type 1 alpha 1, integrin-binding sialoprotein, osteopontin, osteonectin and osteocalcin, significantly. CONCLUSIONS: We demonstrate for the first time that chitosan enhanced mineralization by upregulating the associated genes. Thus, the study may help clinical situations promoting use of chitosan in bone mineralization, necessary for healing non-union fractures and more.
机译:目的:壳聚糖被广泛用作骨组织工程的支架。然而,迄今为止,尚未进行任何详细的研究来阐明壳聚糖本身对成骨的任何作用机理。在这里,我们评估了壳聚糖涂层组织培养板对从成人骨髓分离的人间充质干细胞(hMSCs)粘附和成骨细胞分化过程的影响。材料与方法:以不同的包被密度包被壳聚糖的组织培养板用于评价对hMSC粘附和成骨细胞分化的影响。在壳聚糖包被的板上诱导hMSC分化为成骨细胞,并使用已建立的技术进行评估:碱性磷酸酶测定,钙的存在证明和实时PCR。结果:细胞粘附在壳聚糖的较低涂层密度板上,但在较高的涂层密度(100杯/平方厘米)下形成有活力的细胞聚集体。选择25马克杯/平方厘米的涂层密度(支持细胞粘附)进行成骨细胞分化实验。分化的hMSCs在壳聚糖包被的平板上显示出更高的矿物质沉积和钙含量。壳聚糖显着上调了与钙结合和矿化有关的基因,例如1型胶原1α,整合素结合型唾液蛋白,骨桥蛋白,骨连接素和骨钙素。结论:我们首次证明壳聚糖通过上调相关基因来增强矿化作用。因此,该研究可能有助于临床情况,促进壳聚糖在骨矿化中的使用,这对于愈合不愈合的骨折是必不可少的。

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