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Wear Particles Derived from Metal Hip Implants Induce the Generation of Multinucleated Giant Cells in a 3-Dimensional Peripheral Tissue-Equivalent Model

机译:金属髋关节植入物产生的磨损颗粒在三维外围组织等效模型中诱导多核巨细胞的生成

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摘要

Multinucleate giant cells (MGCs) are formed by the fusion of 5 to 15 monocytes or macrophages. MGCs can be generated by hip implants at the site where the metal surface of the device is in close contact with tissue. MGCs play a critical role in the inflammatory processes associated with adverse events such as aseptic loosening of the prosthetic joints and bone degeneration process called osteolysis. Upon interaction with metal wear particles, endothelial cells upregulate pro-inflammatory cytokines and other factors that enhance a localized immune response. However, the role of endothelial cells in the generation of MGCs has not been completely investigated. We developed a three-dimensional peripheral tissue-equivalent model (PTE) consisting of collagen gel, supporting a monolayer of endothelial cells and human peripheral blood mononuclear cells (PBMCs) on top, which mimics peripheral tissue under normal physiological conditions. The cultures were incubated for 14 days with Cobalt chromium alloy (CoCr ASTM F75, 1–5 micron) wear particles. PBMC were allowed to transit the endothelium and harvested cells were analyzed for MGC generation via flow cytometry. An increase in forward scatter (cell size) and in the propidium iodide (PI) uptake (DNA intercalating dye) was used to identify MGCs. Our results show that endothelial cells induce the generation of MGCs to a level 4 fold higher in 3-dimentional PTE system as compared to traditional 2-dimensional culture plates. Further characterization of MGCs showed upregulated expression of tartrate resistant alkaline phosphatase (TRAP) and dendritic cell specific transmembrane protein, (DC-STAMP), which are markers of bone degrading cells called osteoclasts. In sum, we have established a robust and relevant model to examine MGC and osteoclast formation in a tissue like environment using flow cytometry and RT-PCR. With endothelial cells help, we observed a consistent generation of metal wear particle- induced MGCs, which heralds metal on metal hip failures.
机译:多核巨细胞(MGC)由5至15个单核细胞或巨噬细胞融合而成。 MGC可以通过髋部植入物在设备的金属表面与组织紧密接触的位置生成。 MGC在与不良事件(例如,假体关节的无菌性松动和称为骨溶解的骨骼退化过程)相关的炎症过程中起关键作用。与金属磨损颗粒相互作用后,内皮细胞上调促炎性细胞因子和其他增强局部免疫应答的因子。然而,尚未完全研究内皮细胞在MGCs的产生中的作用。我们开发了由胶原蛋白凝胶组成的三维外围组织等效模型(PTE),顶部支持内皮细胞和人外周血单个核细胞(PBMC)的单层,在正常的生理条件下模拟了外围组织。将培养物与钴铬合金(CoCr ASTM F75,1-5微米)磨损颗粒孵育14天。允许PBMC通过内皮,并通过流式细胞术分析收获的细胞的MGC生成。前向散射(细胞大小)和碘化丙啶(PI)摄取(DNA嵌入染料)的增加被用于鉴定MGC。我们的结果表明,与传统的二维培养板相比,内皮细胞在3维PTE系统中诱导MGC生成的水平高4倍。 MGC的进一步表征表明,酒石酸抗性碱性磷酸酶(TRAP)和树突状细胞特异性跨膜蛋白(DC-STAMP)的表达上调,这是称为骨破骨细胞的骨降解细胞的标志。总而言之,我们已经建立了一个健壮且相关的模型,以使用流式细胞仪和RT-PCR在类似组织的环境中检查MGC和破骨细胞的形成。在内皮细胞的帮助下,我们观察到一致产生的金属磨损颗粒诱导的MGC,这预示着金属可导致金属髋关节衰竭。

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