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The Potential Role of Phagocytic Capacity in the Osteolytic Process Induced by Polyethylene Wear Particles

机译:吞噬能力在聚乙烯磨损颗粒诱导的溶骨过程中的潜在作用

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Osteolysis induced by ultra-high molecular weight polyethylene wear particles is the major cause of long-term failure of artificial joints. We examined the effects of wear particles on bioactivity by analysing the biophysical aspects of particle phagocytosis. We estimated the maximum number of internalized particles (the phagocytic capacity) for particles of various sizes and shapes. We demonstrated that elongated particles had a smaller phagocytic capacity than spherical particles of the same volume. A review of the literature showed that the ratio of particle concentration (number of particlesumber of cells) to phagocytic capacity is critical for particle-induced biological responses. When this ratio was 1, limited changes in the biological response were observed. The saturation level of the phagocytic capacity for a particle population appears to reflect the degree of polyethylene particle-induced biological response.
机译:超高分子量聚乙烯磨损颗粒引起的骨溶解是人造关节长期失效的主要原因。我们通过分析颗粒吞噬作用的生物物理方面,研究了磨损颗粒对生物活性的影响。我们估算了各种尺寸和形状的颗粒的最大内在化颗粒数量(吞噬能力)。我们证明,与相同体积的球形颗粒相比,细长颗粒具有较小的吞噬能力。文献综述表明,颗粒浓度(颗粒数/细胞数)与吞噬能力之比对于颗粒诱导的生物学反应至关重要。当该比率为1时,观察到生物学反应的有限变化。颗粒种群的吞噬能力的饱和水平似乎反映了聚乙烯颗粒诱导的生物反应的程度。

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