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A single intraperitoneal injection of bovine fetuin-A attenuates bone resorption in a murine calvarial model of particle-induced osteolysis

机译:一单腹腔注射牛胎素-A衰减粒子诱导骨解的鼠颅骨模型中的骨吸收

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摘要

Abstract Particle-induced osteolysis, which by definition is an aseptic inflammatory reaction to implant-derived wear debris eventually leading to local bone destruction, remains the major reason for long-term failure of orthopedic endoprostheses. Fetuin-A, a 66kDa glycoprotein with diverse functions, is found to be enriched in bone. Besides being an important inhibitor of ectopic calcification, it has been described to influence the production of mediators of inflammation. Furthermore, a regulatory role in bone metabolism has been assigned. In the present study, the influence of a single dose of bovine fetuin-A, intraperitoneally injected in mice subjected to particle-induced osteolysis of the calvaria, was analyzed. Twenty-eight male C57BL/6 mice, twelve weeks of age, were randomly divided into four groups. Groups 2 and 4 were subjected to ultra-high molecular weight polyethylene (UHMWPE) particles placed on their calvariae while groups 1 and 3 were sham-operated. Furthermore, groups 3 and 4 received a single intraperitoneal injection of 20mg bovine fetuin-A while groups 1 and 2 were treated with physiologic saline. After 14days calvarial bone was qualitatively and quantitatively assessed using microcomputed tomography (μCT) and histomorphometrical approaches. Application of fetuin-A led to a reduction of particle-induced osteolysis in terms of visible osteolytic lesions and eroded bone surface. The reduction of bone thickness and bone volume, as elicited by UHMWPE, was alleviated by fetuin-A. In conclusion, fetuin-A was found to exert an anti-resorptive effect on particle-induced osteolysis in-vivo . Thus, fetuin-A could play a potentially osteoprotective role in the treatment of bone metabolic disorders. Graphical abstract Display Omitted Highlights ? A single dose of bovine fetuin-A reverses the effects of UHMWPE particles on mouse calvarial bone. ? Fetuin-A reduces the amount and size of particle-induced osteolytic lesions. ? Fetuin-A promotes the preservation of bone and attenuates particle-induced resorption.
机译:摘要粒子诱导的骨溶解,其根据定义是对植入磨损碎片的无菌炎症反应最终导致局部骨破坏,仍然是整形前述内保护剂长期失效的主要原因。 Fetuin-A,具有不同功能的66kda糖蛋白,发现富含骨骼。除了作为异位钙化的重要抑制剂,还描述了影响炎症介质的产生。此外,已经分配了骨代谢中的调节作用。在本研究中,分析了对粒子诱导的钙诱导的钙骨溶解的小鼠中单剂量的牛Fetuin-a的影响。二十八个男性C57BL / 6小鼠,12周龄,随机分为四组。将基团2和4进行超高分子量聚乙烯(UHMWPE)颗粒,其在其Calvariae上,而第1组和3组是假手动的。此外,基团3和4接受单个腹膜内注射20mg牛胎儿-a,同时用生理盐水处理1和2。在14天后,使用微型断层扫描(μCT)和组织素线方法定性和定量评估14天的颅骨。蕨类素-A的应用在可见骨解性病变和侵蚀骨表面方面减少粒子诱导的骨解。由UHMWPE引发的骨厚度和骨体积的减少被氟金-A缓解。总之,发现胎儿-A对体内粒子诱导的骨解施加抗复苏作用。因此,Fetuin-A可以在治疗骨代谢障碍方面发挥潜在的骨破坏作用。图形抽象显示省略了亮点?单剂量的牛Fetuin-A反转UHMWPE颗粒对小鼠颅骨骨的影响。还Fetuin-A降低了颗粒诱导的骨解病变的量和大小。还Fetuin-A促进骨骼的保存并衰减粒子诱导的吸收。

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