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Muramyl Dipeptide Enhances Lipopolysaccharide-Induced Osteoclast Formation and Bone Resorption through Increased RANKL Expression in Stromal Cells

机译:Muramyl二肽通过基质细胞中RANKL的表达增强脂多糖诱导的破骨细胞形成和骨吸收。

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摘要

Lipopolysaccharide (LPS) is bacterial cell wall component capable of inducing osteoclast formation and pathological bone resorption. Muramyl dipeptide (MDP), the minimal essential structural unit responsible for the immunological activity of peptidoglycans, is ubiquitously expressed by bacterium. In this study, we investigated the effect of MDP in LPS-induced osteoclast formation and bone resorption. LPS was administered with or without MDP into the supracalvariae of mice. The number of osteodasts, the level of mRNA for cathepsin K and tartrate-resistant acid phosphatase (TRAP), the ratio of the bone destruction area, the level of tartrate-resistant acid phosphatase form 5b (TRACP 5b), and C-terminal telopeptides fragments of type I collagen as a marker of bone resorption in mice administrated both LPS and MDP were higher than those in mice administrated LPS or MDP alone. On the other hand, MDP had no effect on osteodastogenesis in parathyroid hormone administrated mice. MDP enhanced LPS-induced receptor activator of NF-kappaB ligand (RANKL) expression and Toll-like receptor 4 (TLR4) expression in vivo and in stromal cells in vitro. MDP also enhanced LPS-induced mitogen-activated protein kinase (MAPK) signaling, including ERK, p38, and JNK, in stromal cells. These results suggest that MDP might play an important role in pathological bone resorption in bacterial infection diseases.
机译:脂多糖(LPS)是细菌细胞壁成分,能够诱导破骨细胞形成和病理性骨吸收。 Muramyl二肽(MDP)是负责肽聚糖免疫活性的最小基本结构单位,它在细菌中普遍表达。在这项研究中,我们调查了MDP在LPS诱导的破骨细胞形成和骨吸收中的作用。将LPS与MDP一起或不与MDP一起施用到小鼠的上睑静脉。骨屑的数量,组织蛋白酶K和抗酒石酸酸性磷酸酶(TRAP)的mRNA水平,骨破坏面积的比率,抗酒石酸酸性磷酸酶形式5b(TRACP 5b)的水平以及C端端端肽在同时使用LPS和MDP的小鼠中,I型胶原蛋白片段作为骨吸收的标志物高于单独使用LPS或MDP的小鼠。另一方面,MDP对甲状旁腺激素给药小鼠的骨形成没有影响。 MDP增强了体内和体外基质细胞中LPS诱导的NF-κB配体(RANKL)表达和Toll样受体4(TLR4)表达的受体激活剂。 MDP还增强了基质细胞中LPS诱导的丝裂原激活蛋白激酶(MAPK)信号传导,包括ERK,p38和JNK。这些结果表明,MDP可能在细菌感染疾病的病理性骨吸收中起重要作用。

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