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The actions of Resolvin E1 on osteoblast function.

机译:Resolvin E1对成骨细胞功能的作用。

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摘要

Resolvins are endogenous anti-inflammatory / pro-resolving lipid mediators derived from omega-3 fatty acids. Resolvin El (RvE1) reverses periodontitis and promotes regeneration of alveolar bone in vivo. The goal of this project was to determine the mechanism of RvE1 impact on bone formation. RvE1 significantly enhanced bone formation relative to a vehicle control in a mouse craniotomy model of bone healing. Since RvEl is reported to act through receptors expressed by cells of the innate immune system, the initial hypothesis tested was that RvE1 actions are mediated through bone macrophages. The hypothesis was rejected, as no impact of RvE1 on macrophage mediated bone formation was demonstrable. The alternative hypothesis was that RvE1 acts directly on osteoblasts. Using mouse neonatal osteoblasts, calcification of osteoblast cultures was demonstrated. Osteoblasts express the RvE1 receptor, ChemR23, at the mRNA and protein level. Examination of intracellular signaling by RvE1 demonstrated increased phosphorylation of rpS6 through the AKT-mTOR pathway. The specificity of RvE1 signaling through ChemR23 was demonstrated with ChemR23 specific blocking antibody that abrogated the phosphorylation of rpS6. Rapamycin, an inhibitor of mTOR, also blocked rpS6 phosphorylation.;To examine the mechanism of RvE1 treated osteoblast enhanced bone formation, secretion of bone specific proteins by osteoblasts after pro-inflammatory stimulation (IL-6) was examined with a focus on the osteoprotegerin (OPG) and receptor activator of NF-kappaB ligand (RANKL) axis, which regulates osteoclast differentiation. Secretion of RANKL and OPG by mouse neonatal osteoblasts stimulated with IL-6 and treated with RvE1 was measured by ELISA. IL-6 stimulation did not impact RANKL levels but decreased OPG production, thereby changing the RANKL/OPG to favor osteoclast activation and bone resorption. RvE1 blocked OPG changes, however, maintaining a RANKL/OPG more favorable to bone formation.;In conclusion, RvE1 has anabolic actions in a mouse model of bone healing mediated through RANKL/OPG. RvE1 signals the receptor ChemR23 on the osteoblast surface through the mTOR pathway and phosphorylation of rpS6. Functionally, RvE1 shifts the balance between OPG and RANKL to favor bone formation. Mediators of innate immunity thus also directly regulate bone cells.
机译:Resolvins是衍生自omega-3脂肪酸的内源性抗炎/促分解脂质介质。 Resolvin El(RvE1)可逆转牙周炎并促进体内牙槽骨的再生。该项目的目标是确定RvE1影响骨骼形成的机制。相对于骨愈合的小鼠颅骨切开术模型中的媒介物对照,RvE1显着增强了骨形成。由于据报道RvE1通过先天免疫系统细胞表达的受体起作用,因此测试的最初假设是RvE1的作用是通过骨巨噬细胞介导的。该假说被拒绝了,因为RvE1对巨噬细胞介导的骨形成没有影响。另一种假设是RvE1直接作用于成骨细胞。使用小鼠新生成骨细胞,证实了成骨细胞培养物的钙化。成骨细胞在mRNA和蛋白质水平上表达RvE1受体ChemR23。 RvE1对细胞内信号转导的检查表明,通过AKT-mTOR途径增加了rpS6的磷酸化。通过ChemR23特异性阻断抗体消除了rpS6的磷酸化,证明了通过ChemR23传递RvE1信号的特异性。雷帕霉素是mTOR的抑制剂,也能阻断rpS6磷酸化。为了检查RvE1处理的成骨细胞增强骨形成的机制,以促炎刺激(IL-6)后的成骨细胞对骨特异性蛋白的分泌进行了研究,重点研究了骨保护素(OPG)和NF-κB配体(RANKL)轴的受体激活剂,它调节破骨细胞的分化。通过ELISA测量了用IL-6刺激并用RvE1处理的小鼠新生成骨细胞的RANKL和OPG的分泌。 IL-6刺激不会影响RANKL的水平,但会降低OPG的产生,从而改变RANKL / OPG来促进破骨细胞的活化和骨吸收。 RvE1阻止了OPG的改变,但是,维持了RANKL / OPG更有利于骨形成。;总之,RvE1在通过RANKL / OPG介导的骨愈合的小鼠模型中具有同化作用。 RvE1通过mTOR途径和rpS6的磷酸化向成骨细胞表面的受体ChemR23发出信号。在功能上,RvE1改变OPG和RANKL之间的平衡以促进骨骼形成。因此,先天免疫的调解人也直接调节骨细胞。

著录项

  • 作者

    Faibish, Dan.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Health Sciences Immunology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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