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RANKL/RANK通路在破骨细胞活性调节及骨溶解中的作用 被引量:5

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摘要 人工关节置换术是二十世纪骨科领域的革命性进步之一。然而,随着关节置换病例数的增加和时间的延长,假体晚期松动问题日益突出。据统计,在假体置换15~20年后,10~15%的人工关节将发生假体失效。引起假体失效的最主要原因是假体松动,而磨损颗粒诱导的破骨细胞性骨溶解是导致假体松动的最重要因素。尽管随着假体材料的改进,假体磨损日渐减少,但由于假体组件间的相对运动和材料的电解及退变,
出处 《生物骨科材料与临床研究》 CAS 2007年第3期24-26,共3页 Orthopaedic Biomechanics Materials and Clinical Study
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  • 1[1]Looney RJ,Schwarz EM,Boyd A,et al.Periprosthetic osteolysis:an immunologist's update[J].Curr Opin Rheumatol,2006,18 (1):80-87.
  • 2[2]Lynch CC,Hikosaka A,AeuffHB,et al.MMP-7 promotes prostate cancer-induced osteolysis via the solubilization of RANKL[J].Cancer Cell,2005,7 (5):485-496.
  • 3[3]Kostenuik PJ.Osteoprotegerin and RANKL regulate bone resorption,density,geometry and strength[J].Curr Opin Pharmacol,2005,5 (6):618-625.
  • 4[4]Fukumoto S,Iwamoto T,Sakai E,et al.Current topics in pharmacological research on bone metabolism:osteoclast differentiation regulated by glycosphingolipids[J].J Pharmacol Sci,2006,100(3):195-200.
  • 5[5]Wada T,Nakashima T,Hiroshi N,et al.RANKL-RANK signaling in osteoclastogenesis and bone disease[J].Trends Mol Med,2006,12 (1):17-25.
  • 6[6]Wada T,Nakashima T,Oliveira-dos-Santos AJ,et al.The molecular scaffold Gab2 is a crucial component of RANK signaling and osteoclastogenesis[J].Nat Med,2005,11 (4):394-399.
  • 7[7]Liu W,Xu D,Yang H,et al.Functional identification of three receptor activator of NF-kappa B cytoplasmic motifs mediating osteoclast differentiation and function[J].J Biol Chem,2004,279 (52):54759-54769.
  • 8[8]Ikeda F,Nishimura R,Matsubara T,et al.Critical roles of c-Jun signaling in regulation of NFAT family and RANKL-regulated osteoclast differentiation[J].J Clin Invest,2004,114 (4):475-484.
  • 9[9]Seales EC,Micoli K J,McDonald JM.Calmodulin is a critical regulator of osteoclastic differentiation,function,and survival[J].J Cell Biochem,2006,97 (1):45-55.
  • 10[10]Yip KH,Zheng MH,Steer JH,et al.Thapsigargin modulates osteoclastogenesis through the regulation of RANKL-induced signaling pathways and reactive oxygen species production[J].J Bone Miner Res,2005,20 (8):1462-1471.

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