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成骨细胞在共培养系统中受到机械应变的抑制,从而抑制破骨细胞的分化和骨质吸收。

Osteoblasts subjected to mechanical strain inhibit osteoclastic differentiation and bone resorption in a co-culture system.

机构信息

Institute of Medical Equipment of the Academy of Military Medical Sciences, No. 106 Wandong Road, Hedong District, Tianjin 300161, China.

出版信息

Ann Biomed Eng. 2013 Oct;41(10):2056-66. doi: 10.1007/s10439-013-0810-x. Epub 2013 Apr 23.

DOI:10.1007/s10439-013-0810-x
PMID:23609024
Abstract

Bone remodeling is strictly mediated by the coupled activities of osteoblasts and osteoclasts, which are responsible for bone formation and resorption, respectively. Although many papers have been published on the mechanical responses of osteoblasts and osteoclasts, little is known about their communication during mechanical loading. In this study, a novel co-culture system was first established using Transwell culture inserts; MC3T3-E1 cells were embedded in the lower compartment of the inserts, and RAW264.7 cells were co-cultured in the upper compartment. The MC3T3-E1 cells were subjected to a mechanical strain of 2500 με at 0.5 Hz to investigate the effect of strain-loaded osteoblasts on co-cultured osteoclasts. The results showed that osteoblast-like cells were activated with an increase of alkaline phosphatase (ALP) activities. The strain-conditioned medium caused decreased activity of tartrate-resistant acid phosphatase and reduced the number of mature multinucleated osteoclasts, which subsequently resulted in the suppressed formation of resorption pits. The expression levels of cathepsin-K and matrix metalloproteinase-9 were also depressed by the strain-conditioned medium. In addition, we found that the expression ratio between osteoprotegerin (OPG) and receptor activator of NF-kB ligand in osteoblasts was significantly up-regulated due to the enhanced levels of OPG. In summary, we conclude that the strain-stimulated osteoblasts inhibited the differentiation and bone resorption of osteoclasts and that the mechanism was associated with the increased secretion of OPG in osteoblasts.

摘要

骨重建是由成骨细胞和破骨细胞的偶联活性严格介导的,它们分别负责骨形成和骨吸收。尽管已经发表了许多关于成骨细胞和破骨细胞的机械响应的论文,但对于它们在机械加载下的交流却知之甚少。在这项研究中,首先使用 Transwell 培养插入物建立了一种新的共培养系统; MC3T3-E1 细胞嵌入插入物的下腔室,RAW264.7 细胞共培养在上腔室。MC3T3-E1 细胞受到 2500με、0.5Hz 的机械应变,以研究应变加载的成骨细胞对共培养的破骨细胞的影响。结果表明,成骨样细胞被激活,碱性磷酸酶(ALP)活性增加。应变条件培养基导致抗酒石酸酸性磷酸酶活性降低,成熟多核破骨细胞数量减少,随后抑制了吸收凹坑的形成。应变条件培养基还降低了组织蛋白酶 K 和基质金属蛋白酶-9 的表达水平。此外,我们发现由于 OPG 水平的升高,成骨细胞中骨保护素(OPG)和核因子-kB 配体受体激活剂的表达比率显著上调。总之,我们得出结论,应变刺激的成骨细胞抑制了破骨细胞的分化和骨吸收,其机制与成骨细胞中 OPG 的分泌增加有关。

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