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Strontium ranelate inhibits key factors affecting bone remodeling in human osteoarthritic subchondral bone osteoblasts.

机译:雷奈酸锶抑制关键因素影响人骨关节炎软骨下骨成骨细胞的骨重塑。

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INTRODUCTION: In osteoarthritis (OA) the progression of cartilage degeneration has been associated with remodeling of the subchondral bone. Human OA subchondral bone osteoblasts were shown to have an abnormal phenotype and altered metabolism leading to an abnormal resorptive process. Bone resorption is suggested to occur, at least in part, through the increased levels of two proteolytic enzymes, MMP-2 and MMP-9, and RANKL, which are mainly produced by osteoblasts. In this study, we investigated in human OA subchondral bone osteoblasts the modulatory effect of strontium ranelate on the above key factors. METHODS: Human subchondral bone osteoblasts were cultured in a medium containing 0.1, 1 and 2 mM of strontium ranelate for 18 h for mRNA and 72 h for protein determination. The effect of strontium ranelate was evaluated on the expression (qPCR) of MMP-2, MMP-9, OPG, RANKL (total), RANKL-1, and RANKL-3, on the production of OPG (ELISA), membranous RANKL (flow cytometry), and MT1-MMP, ADAM17, and ADAM19 (Western blot). After incubation of osteoblasts with pre-osteoclasts (i.e., differentiated human peripheral blood mononuclear cells), the resorbed surface was measured using a sub-micron synthetic calcium phosphate thin film. RESULTS: Firstly, the expression levels of MMP-2, MMP-9, OPG, and RANKL were determined in normal and OA subchondral bone osteoblasts. As expected, the gene expression of MMP-9 and RANKL were not detectable in normal cells, whereas MMP-2 was very low but detectable and OPG demonstrated high gene expression. Further experiments looking at the effect of strontium ranelate on expression levels, except for OPG, were performed only on the OA subchondral bone osteoblasts. In OA cells, the expression levels of MMP-2 and MMP-9 were significantly decreased by strontium ranelate at 1mM (p
机译:简介:在骨关节炎(OA)中,软骨退化的进展与软骨下骨的重塑有关。人类OA软骨下骨成骨细胞表现出异常的表型和新陈代谢改变,导致异常的吸收过程。建议至少部分地通过两种主要由成骨细胞产生的蛋白水解酶MMP-2和MMP-9和RANKL的水平发生骨吸收。在这项研究中,我们研究了人骨软骨下骨成骨细胞对雷奈酸锶对上述关键因素的调节作用。方法:将人软骨下成骨细胞在含有0.1、1和2 mM雷奈酸锶的培养基中培养18 h进行mRNA测定,并在72 h进行蛋白质测定。评估了雷奈酸锶对MMP-2,MMP-9,OPG,RANKL(总计),RANKL-1和RANKL-3的表达(qPCR),对OPG(ELISA),膜状RANKL(流式细胞仪)和MT1-MMP,ADAM17和ADAM19(蛋白质印迹)。将成骨细胞与破骨细胞前体(即分化的人外周血单核细胞)温育后,使用亚微米合成磷酸钙薄膜测量吸收的表面。结果:首先测定正常和OA软骨下成骨细胞中MMP-2,MMP-9,OPG和RANKL的表达水平。不出所料,在正常细胞中无法检测到MMP-9和RANKL的基因表达,而MMP-2却很低但可检测,而OPG则证明了高基因表达。仅在OA软骨下成骨细胞上进行了进一步研究,研究了雷奈酸锶对表达水平(除OPG外)的影响。雷诺酸锶分别在1mM(p

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