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首页> 外文期刊>Osteoarthritis and cartilage >Osteoblasts from the sclerotic subchondral bone downregulate aggrecan but upregulate metalloproteinases expression by chondrocytes. This effect is mimicked by interleukin-6, -1beta and oncostatin M pre-treated non-sclerotic osteoblasts.
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Osteoblasts from the sclerotic subchondral bone downregulate aggrecan but upregulate metalloproteinases expression by chondrocytes. This effect is mimicked by interleukin-6, -1beta and oncostatin M pre-treated non-sclerotic osteoblasts.

机译:来自硬化软骨下骨的成骨细胞下调软骨聚集蛋白聚糖,但上调软骨细胞的金属蛋白酶表达。白细胞介素6,-1β和抑瘤素M预处理的非硬化性成骨细胞可模仿这种效果。

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摘要

OBJECTIVE: To determine the effects of osteoarthritic (OA) subchondral osteoblasts on the metabolism of human OA chondrocytes in alginate beads. METHODS: Human chondrocytes were isolated from OA cartilage and cultured in alginate beads for 4 days in the absence or in the presence of osteoblasts isolated from non-sclerotic (N) or sclerotic (SC) zones of human OA subchondral bone in monolayer (co-culture system). Before co-culture, osteoblasts were incubated for 72 h with or without 1.7ng/ml interleukin (IL)-1beta, 100 ng/ml IL-6 with its soluble receptor (50 ng/ml) or 10 ng/ml oncostatin M (OSM). Aggrecan (AGG) and matrix metalloproteases (MMP)-3 and -13 mRNA levels in chondrocytes were quantified by real-time polymerase chain reaction. AGG production was assayed by a specific enzyme amplified sensitivity immunoassay. RESULTS: SC, but not N, osteoblasts induced a significant inhibition of AGG production and AGG gene expression by human OA chondrocytes in alginate beads, and significantly increased MMP-3and MMP-13 gene expression by chondrocytes. When they were pre-incubated with IL-1beta, IL-6 or OSM, N osteoblasts inhibited AGG synthesis and increased MMP-3 and -13 gene expression by chondrocytes in alginate beads in a same order of magnitude as SC osteoblasts. CONCLUSIONS: These results demonstrate that SC OA subchondral osteoblasts could contribute to cartilage degradation by stimulating chondrocytes to produce more MMP and also by inhibiting AGG synthesis.
机译:目的:确定骨关节炎(OA)软骨下成骨细胞对藻酸盐珠粒中人OA软骨细胞代谢的影响。方法:从OA软骨中分离出人类软骨细胞,并在藻酸盐珠粒中培养4天,在无或有成骨细胞的情况下,成骨细胞是从单层OA软骨下骨的非硬化区(N)或硬化区(SC)中分离出来的(co-文化体系)。共培养前,将成骨细胞与或不与1.7ng / ml白介素(IL)-1beta,100 ng / ml IL-6及其可溶性受体(50 ng / ml)或10 ng / ml抑瘤素M(72 ng)孵育72小时。 OSM)。通过实时聚合酶链反应定量软骨细胞中的Aggrecan(AGG)和基质金属蛋白酶(MMP)-3和-13 mRNA水平。通过特异性酶扩增敏感性免疫测定法测定AGG的产生。结果:SC而不是N成骨细胞诱导人OA软骨细胞在藻酸盐珠粒中显着抑制AGG产生和AGG基因表达,并显着增加软骨细胞MMP-3和MMP-13基因表达。当将它们与IL-1beta,IL-6或OSM预先孵育时,N成骨细胞以与SC成骨细胞相同的数量级抑制藻酸盐珠粒中软骨细胞的AGG合成并增加MMP-3和-13基因表达。结论:这些结果表明,SC OA软骨下成骨细胞可以通过刺激软骨细胞产生更多的MMP以及抑制AGG的合成来促进软骨的降解。

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