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High Magnesium Corrosion Rate has an Effect on Osteoclast and Mesenchymal Stem Cell Role During Bone Remodelling

机译:高镁腐蚀速率对骨重塑过程中破骨细胞和间充质干细胞的作用有影响

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摘要

The aim of this study was to gain an understanding on the collective cellular effects of magnesium (Mg) corrosion products on the behaviour of cells responsible for bone formation and remodelling. The response of mesenchymal stem cells (MSCs) and osteoclast cells to both soluble (Mg ions) and insoluble (granule) corrosion products were recapitulated in vitro by controlling the concentration of the corrosion products. Clearance of corrosion granules by MSCs was also inspected by TEM analysis at sub-cellular level. The effect of Mg corrosion products varied depending on the state of differentiation of cells, concentration and length of exposure. The presence of the corrosion products significantly altered the cells’ metabolic and proliferative activities, which further affected cell fusion/differentiation. While cells tolerated higher than physiological range of Mg concentration (16 mM), concentrations below 10 mM were beneficial for cell growth. Furthermore, MSCs were shown to contribute to the clearance of intercellular corrosion granules, whilst high concentrations of corrosion products negatively impacted on osteoclast progenitor cell number and mature osteoclast cell function.
机译:这项研究的目的是了解镁(Mg)腐蚀产物对负责骨骼形成和重塑的细胞行为的集体细胞效应。通过控制腐蚀产物的浓度,体外概括了间充质干细胞(MSCs)和破骨细胞对可溶性(Mg离子)和不溶性(颗粒)腐蚀产物的反应。还通过亚细胞水平的TEM分析检查了MSC对腐蚀颗粒的清除。镁腐蚀产物的作用取决于细胞的分化状态,浓度和暴露时间。腐蚀产物的存在极大地改变了细胞的代谢和增殖活性,从而进一步影响了细胞的融合/分化。虽然细胞耐受的镁浓度高于生理范围(16 concentrationmM),但低于10 mM的浓度对细胞生长有益。此外,已证明MSC有助于清除细胞间腐蚀颗粒,而高浓度的腐蚀产物对破骨细胞祖细胞数量和成熟的破骨细胞功能产生负面影响。

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