Varied storage conditions on the cytotoxic potential of cobalt chrome nanoparticles when cultured with L929 fibroblasts

Q2 Agricultural and Biological Sciences
S. Collins
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引用次数: 4

Abstract

Association of ultra-high-molecular-weight polyethylene wear with osteolysis, leading to late aseptic loosening, has resulted in increased interest in alternative bearing prostheses. Alternative prostheses with cobalt-chrome bearing surfaces are now used more frequently, but research is needed to determine potential long-term biological effects of cobalt-chrome wear. The biological reactivity of cobalt-chrome particles may alter due to passivation and the storage of these particles in the laboratory; therefore, before any research can be carried out with these particles, an optimum storage protocol must be developed. This study aimed at determining any effects of the storage medium on the biological reactivity of cobalt-chrome wear. The viability of L929 cells was assessed following culture with clinically relevant cobalt-chrome particles stored in phosphatebuffered saline, in serum and dry at using condition the 3-[4, 5-Dimethylthiazol-2-yl]-2, 5-diphenyltetrazolium bromide assay. Storage of these cobalt-chrome nanoparticles (100 and 50 µm 3 cell −1 ) in serum resulted in a significantly greater reduction in cell viability compared with dry stored particles at the same dose, indicating that the storage of cobalt-chrome wear influ ences the biological reactivity of the particles. Therefore, it is suggested that studies investigating effects of cobalt-chrome wear particles should store them in serum prior to use in laboratory studies, these particles display the highest level of cytotoxicity and are how the particles are presented in vivo.
不同储存条件对钴铬纳米颗粒与L929成纤维细胞培养时细胞毒性的影响
超高分子量聚乙烯磨损与骨溶解相关,导致晚期无菌性松动,导致人们对替代轴承假体的兴趣增加。钴铬承载表面的替代假体现在使用更频繁,但需要研究确定钴铬磨损的潜在长期生物效应。钴铬颗粒的生物反应性可能因钝化和在实验室中的储存而改变;因此,在对这些粒子进行任何研究之前,必须开发出最佳的存储方案。本研究旨在确定储存介质对钴铬磨损生物反应性的影响。采用3-[4,5 -二甲基噻唑-2-酰基]- 2,5 -二苯基溴化四氮唑试验,将临床相关的钴铬颗粒保存在磷酸盐缓冲盐水、血清中并在使用条件下干燥,对L929细胞的活力进行了评估。在血清中储存这些钴铬纳米颗粒(100和50µm 3细胞−1),与在相同剂量下干燥储存的颗粒相比,细胞活力的下降幅度明显更大,这表明钴铬磨损的储存影响了颗粒的生物反应性。因此,建议研究钴铬磨损颗粒的影响应在实验室研究之前将其储存在血清中,这些颗粒显示出最高水平的细胞毒性,并且是颗粒在体内的表现方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioscience Horizons
Bioscience Horizons Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.50
自引率
0.00%
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