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首页> 外文期刊>International journal of molecular medicine >Impact of vitamin E-blended UHMWPE wear particles on the osseous microenvironment in polyethylene particle-induced osteolysis
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Impact of vitamin E-blended UHMWPE wear particles on the osseous microenvironment in polyethylene particle-induced osteolysis

机译:掺有维生素E的UHMWPE磨损颗粒对聚乙烯颗粒诱导的骨溶解中骨微环境的影响

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Aseptic loosening mediated by wear particle induced osteolysis (PIO) remains the major cause of implant loosening in endoprosthetic surgery. The development of new vitamin E (alpha-tocopherol)-blended ultra-high molecular weight polyethylene (VE-UHMWPE) with increased oxidation resistance and improved mechanical properties has raised hopes. Furthermore, regenerative approaches may be opened, as vitamin E supplementation has shown neuroprotective characteristics mediated via calcitonin gene-related peptide (CGRP), which is known to affect bone remodeling in PIO. Therefore, the present study aimed to further clarify the impact of VE-UHMWPE wear particles on the osseous micro environment and to identify the potential modulatory pathways involved. Using an established murine calvaria model, mice were subjected to sham operation (SHAM group), or treated with UHMWPE or VE-UHMWPE particles for different experimental durations (7, 14 and 28 days; n=6/group). Morphometric analysis by micro-computed tomography detected significant (p<0.01) and comparable signs of PIO in all particle-treated groups, whereas markers of inflammation [tumor necrosis factor (TNF)-alpha/tartrate resistant acid phosphatase (TRAP) staining] and bone remodeling [Dickkopf-related protein 1 (DKK-1)/osteoprotegerin (OPG)] were most affected in the early stages following surgery. Taking the present data into account, VE-UHMWPE appears to have a promising biocompatibility and increased ageing resistance. According to the alpha-CGRP serum levels and immunohistochemistry, the impact of vitamin E on neuropeptidergic signaling and its chance for regenerative approaches requires further investigation.
机译:磨损颗粒诱导的骨溶解(PIO)介导的无菌性松动仍然是假体植入术中植入物松动的主要原因。新型维生素E(α-生育酚)共混超高分子量聚乙烯(VE-UHMWPE)的开发具有更高的抗氧化性和改善的机械性能,这引起了人们的希望。此外,由于维生素E补充剂已显示出通过降钙素基因相关肽(CGRP)介导的神经保护特性,因此可以开辟再生途径,众所周知,降钙素基因相关肽会影响PIO的骨骼重塑。因此,本研究旨在进一步阐明VE-UHMWPE磨损颗粒对骨微环境的影响,并确定所涉及的潜在调节途径。使用建立的鼠颅盖模型,对小鼠进行假手术(SHAM组),或用UHMWPE或VE-UHMWPE颗粒治疗不同的实验持续时间(7、14和28天; n = 6 /组)。通过显微计算机断层扫描进行形态分析,在所有颗粒治疗组中均检测到显着(p <0.01)和可比的PIO征象,而炎症标志物[肿瘤坏死因子(TNF)-α/酒石酸抗性酸性磷酸酶(TRAP)染色]和骨重塑[Dickkopf相关蛋白1(DKK-1)/ osteoprotegerin(OPG)]在手术后的早期阶段受影响最大。考虑到目前的数据,VE-UHMWPE似乎具有良好的生物相容性和更高的抗老化性。根据α-CGRP血清水平和免疫组织化学,维生素E对神经肽能信号传导的影响及其再生方法的机会需要进一步研究。

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