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聚合物分子量及硬脂酸钙添加量对MG63成骨样细胞对超高分子量聚乙烯颗粒反应的影响。

Effect of polymer molecular weight and addition of calcium stearate on response of MG63 osteoblast-like cells to UHMWPE particles.

作者信息

Dean D D, Lohmann C H, Sylvia V L, Köster G, Liu Y, Schwartz Z, Boyan B D

机构信息

Department of Orthopaedics, University of Texas Health Science Center at San Antonio, 78229-3900, USA.

出版信息

J Orthop Res. 2001 Mar;19(2):179-86. doi: 10.1016/S0736-0266(00)00030-9.

Abstract

Periprosthetic osteolysis and implant loosening is associated with the presence of ultrahigh molecular weight polyethylene (UHMWPE) wear debris particles. Osteoblast phenotypic expression in vitro is affected by UHMWPE particles, suggesting that bone formation may also be affected by wear debris. Here we tested the hypothesis that the response of osteoblasts to UHMWPE can be modified by changes in UHMWPE particle chemistry. We used four different commercially available preparations of GUR UHMWPE particles to determine if chemical composition (+/- Ca-stearate) or polymer molecular weight (3.1-4.2 million or 5.4-6.5 million g/mol) modulates osteoblast response. Particles were characterized by size distribution, morphology, and number of particles added to the culture medium. They had an average equivalent circle diameter ranging from 0.46-1.26 microm. MG63 cell response was assessed by measuring cell number, cellular and cell layer alkaline phosphatase, and prostaglandin E2 (PGE2) production. There were dose-dependent effects of the particles on cell response. Cell number and PGE, production were increased, while alkaline phosphatase specific activity was decreased. In addition, there was a marked difference between cultures treated with particles containing Ca-stearate and as a function of polymer molecular weight. Particles of higher molecular weight caused a greater stimulation of proliferation and inhibition of alkaline phosphatase than particles of lower molecular weight. The presence of Castearate exerted a more pronounced depression of osteoblast phenotype as well as a significantly greater increase in PGE2 release by the cells. The present study shows that chemical composition and polymer molecular weight of UHMWPE are capable of modulating osteoblast response to particles. The results suggest that osteoblast differentiation is inhibited by UHMWPE particles, whereas cell proliferation and PGE2 production are stimulated. This may have direct effects on osteoblasts and bone formation, but also paracrine effects on cells of the monocytic lineage inducing bone resorption and promoting inflammation which may lead to aseptic loosening. The present results suggest that the cellular events in aseptic loosening may be modulated or even accelerated by changes in the composition of the UHMWPE used to fabricate implants.

摘要

假体周围骨溶解和植入物松动与超高分子量聚乙烯(UHMWPE)磨损碎屑颗粒的存在有关。体外成骨细胞表型表达受UHMWPE颗粒影响,提示骨形成可能也受磨损碎屑影响。在此,我们检验了如下假设:成骨细胞对UHMWPE的反应可因UHMWPE颗粒化学性质的改变而改变。我们使用四种不同的市售GUR UHMWPE颗粒制剂,以确定化学成分(有无硬脂酸钙)或聚合物分子量(310 - 420万或540 - 650万g/mol)是否会调节成骨细胞反应。颗粒通过尺寸分布、形态以及添加到培养基中的颗粒数量进行表征。它们的平均等效圆直径范围为0.46 - 1.26微米。通过测量细胞数量、细胞和细胞层碱性磷酸酶以及前列腺素E2(PGE2)的产生来评估MG63细胞反应。颗粒对细胞反应有剂量依赖性影响。细胞数量和PGE2产生增加,而碱性磷酸酶比活性降低。此外,用含硬脂酸钙的颗粒处理的培养物之间以及作为聚合物分子量的函数存在显著差异。较高分子量的颗粒比较低分子量的颗粒对增殖的刺激作用更大,对碱性磷酸酶的抑制作用更强。硬脂酸钙的存在对成骨细胞表型的抑制作用更明显,并且细胞释放的PGE2增加得也更显著。本研究表明,UHMWPE的化学成分和聚合物分子量能够调节成骨细胞对颗粒的反应。结果提示,UHMWPE颗粒抑制成骨细胞分化,而刺激细胞增殖和PGE2产生。这可能对成骨细胞和骨形成有直接影响,而且对单核细胞系细胞有旁分泌作用,诱导骨吸收并促进炎症,这可能导致无菌性松动。目前的结果表明,用于制造植入物的UHMWPE成分变化可能会调节甚至加速无菌性松动中的细胞事件。

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