首页> 美国卫生研究院文献>Journal of Cellular and Molecular Medicine >Local delivery of simvastatin maintains tooth anchorage during mechanical tooth moving via anti‐inflammation property and AMPK/MAPK/NF‐kB inhibition
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Local delivery of simvastatin maintains tooth anchorage during mechanical tooth moving via anti‐inflammation property and AMPK/MAPK/NF‐kB inhibition

机译:夏伐他汀的局部递送在机械齿期间通过抗炎性能和AMPK / MAPK / NF-KB抑制保持牙齿锚定

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摘要

Simvastatin (SMV) could increase tooth anchorage during orthodontic tooth movement (OTM). However, previous studies on its bone‐specific anabolic and anti‐inflammation properties were based on static in vitro and in vivo conditions. AMPK is a stress‐activated kinase that protects tissue against serious damage from overloading inflammation. Rat periodontal ligament cells (PDLCs) were subjected to a serial of SMV concentrations to investigate the optimization that promoted osteogenic differentiation. The PDLCs in static and/or tensile culturing conditions then received the proper concentration SMV. Related factors expression was measured by the protein array, real‐time PCR and Western blot. The 0.05UM SMV triggered osteogenic differentiation of PDLCs. The inhibition of AMPK activation through a pharmacological approach (Compound C) caused dramatic decrease in osteogenic/angiogenic gene expression and significant increase in inflammatory NF‐κB phosphorylation. In contrast, pharmacological activation of AMPK by AICAR significantly inhibited inflammatory factors expression and activated ERK1/2, P38 MAPK phosphorylation. Moreover, AMPK activation induced by SMV delivery significantly attenuated the osteoclastogenesis and decreased the expression of pro‐inflammatory TNF‐α and NF‐κB in a rodent model of OTM. The current studies suggested that SMV could intrigue intrinsic activation of AMPK in PDLCs that promote attenuate the inflammation which occurred under tensile irritation through AMPK/MAPK/NF‐kB Inhibition.
机译:辛伐他汀(SMV)可以在正畸牙齿运动(OTM)期间增加牙齿锚地。然而,以前的研究其骨特异性代谢性和抗炎性质基于静态体外和体内条件。 AMPK是一种应激激活的激酶,可保护组织免受过载炎症的严重损伤。对大鼠牙周韧带细胞(PDLC)进行序列的SMV浓度,以研究促进骨质发生分化的优化。静态和/或拉伸培养条件中的PDLCS接受适当的浓度SMV。相关因子表达通过蛋白质阵列,实时PCR和Western印迹测量。 0.05UM的SMV触发PDLC的骨质发生分化。通过药理方法(化合物C)抑制AMPK活化(化合物C)引起骨质发生/血管生成基因表达的显着降低,炎症性NF-κB磷酸化显着增加。相比之下,AICAR的AMPK药理活化显着抑制炎症因子表达和活化ERK1 / 2,P38 MAPK磷酸化。此外,SMV递送诱导的AMPK活化显着衰减了骨质细胞发生,并且在OTM的啮齿动物模型中降低了促炎TNF-α和NF-κB的表达。目前的研究表明,SMV可以在PDLC中引起AMPK的内在活化,促进通过AMPK / MAPK / NF-KB抑制抑制拉伸刺激下发生的炎症。

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