首页> 外文学位 >Titanium particles induce chemokine expression in human osteoblasts by a NF-kappaB-mediated mechanism: Possible role for osteoblasts in periprosthetic inflammation.
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Titanium particles induce chemokine expression in human osteoblasts by a NF-kappaB-mediated mechanism: Possible role for osteoblasts in periprosthetic inflammation.

机译:钛颗粒通过NF-κB介导的机制诱导人成骨细胞中趋化因子的表达:成骨细胞在假体周围炎症中的可能作用。

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摘要

Particulate wear debris is generated continuously within the bone-prosthesis microenvironment by normal wear and corrosion of orthopedic implants. Particulates result in the persistent activation of a variety of cell types in the periprosthetic region, which leads to chronic inflammation and development of osteolysis. Particulate-induced osteolysis is the major contributing factor in premature implant failure in 10–20% of total joint arthroplasties. Osteoblasts are the bone cells responsible for bone formation, which is critical for the osseointegration of the implant. Osteoblasts are adjacent to prosthetic components and continually exposed to particulate species. Osteoblasts are also the primary and essential regulators of osteoclastogenesis, governing the activation of osteolcast bone resorption.; In elucidation of a potential mechanism by which inflammatory cells are recruited to the periprosthectic space by particulate wear debris generation, these studies examined the osteoblast chemokine response to titanium (Ti) particulates. Chemokines function in the chemotaxis of specific cell subpopulations to the site of inflammation. My studies demonstrate enhanced IL-8 and MCP-1 chemokine gene activation in bone marrow derived osteoblasts and MG-63 osteoblastic cells. The osteoblast response was selective for IL-8 and MCP-1, as other chemokine genes were not induced. Ti particle-induced chemokine activation was dependent on both time and concentration of particle exposure, and regulated at the level of gene transcription by the pro-inflammatory transcription factor NF-κB.; Investigation of the NF-κB signaling network demonstrated that Ti particles lead to increased osteoblast chemokine expression via IκBα degradation and a possible secondary pathway independent of IκBα proteolysis. NF-κB is a redox-regulated transcription factor induced by oxidant-mediated stimuli, and IL-8 and MCP-1 are redox-responsive genes. Reactive oxygen species (ROS) are complexed to implant materials in vivo. My studies demonstrate that oxidant signaling may be responsible for Ti particle induction of NF-κB activity and IL-8 chemokine expression. Additionally, MAPK signaling, identified in the upstream activation of NF-κB, is induced by Ti particles in MG-63 cells. Collectively, these studies show that osteoblasts, following particulate challenge, enhance pro-inflammatory chemokine secretion via activation of NF-κB-mediated gene expression. Osteoblasts may actively recruit inflammatory cells to the bone-implant interface aiding in the initiation or exacerbation of periprosthetic inflammation and osteolysis.
机译:由于整形外科植入物的正常磨损和腐蚀,在人工骨假体微环境中连续产生颗粒磨损碎片。颗粒导致假体周围区域各种细胞类型的持续活化,从而导致慢性炎症和骨溶解的发展。在全部关节置换术中,微粒引起的骨溶解是造成植入物过早失效的主要因素,占总关节置换的10%至20%。成骨细胞是负责骨形成的骨细胞,这对植入物的骨整合至关重要。成骨细胞与假体组件相邻,并不断暴露于颗粒物。成骨细胞也是破骨细胞形成的主要和必不可少的调节者,控制着骨铸骨吸收的激活。为了阐明通过微粒磨损碎片产生将炎症细胞募集到假体周围空间的潜在机制,这些研究检查了成骨细胞趋化因子对钛(Ti)微粒的反应。趋化因子在特定细胞亚群对炎症部位的趋化性中起作用。我的研究表明,在骨髓来源的成骨细胞和MG-63成骨细胞中,IL-8和MCP-1趋化因子基因的激活增强。成骨细胞对IL-8和MCP-1具有选择性,因为未诱导其他趋化因子基因。 Ti颗粒诱导的趋化因子活化取决于颗粒暴露的时间和浓度,并由促炎转录因子NF-κB调节基因转录水平。对NF-κB信号网络的研究表明,Ti颗粒通过IκBα降解以及可能独立于IκBα蛋白水解的次级途径导致成骨趋化因子表达增加。 NF-κB是由氧化剂介导的刺激诱导的氧化还原调节转录因子,而IL-8和MCP-1是氧化还原响应基因。活性氧(ROS)与体内植入物复合(体内)。我的研究表明,氧化剂信号传导可能是Ti颗粒诱导NF-κB活性和IL-8趋化因子表达的原因。此外,在MG-63细胞中的Ti颗粒诱导了在NF-κB上游激活中识别出的MAPK信号传导。这些研究共同表明,成骨细胞在受到微粒攻击后,会通过激活NF-κB介导的基因表达来增强促炎性趋化因子的分泌。成骨细胞可以积极地将炎症细胞募集到骨-植入物界面,以帮助假体周围炎症和骨溶解的开始或加剧。

著录项

  • 作者

    Fritz, Elizabeth Ann.;

  • 作者单位

    Rush University.;

  • 授予单位 Rush University.;
  • 学科 Health Sciences Immunology.; Health Sciences Medicine and Surgery.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 预防医学、卫生学;
  • 关键词

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