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首页> 外文期刊>Materials science & engineering >Vanadium ionic species from degradation of Ti-6Al-4V metallic implants: In vitro cytotoxicity and speciation evaluation
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Vanadium ionic species from degradation of Ti-6Al-4V metallic implants: In vitro cytotoxicity and speciation evaluation

机译:Ti-6Al-4V金属植入物降解产生的钒离子物种:体外细胞毒性和形态评价

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摘要

Among the metallic materials used in biomedical industry, the most common choice for orthopedics and dental implants is titanium (Ti) and its alloys, mainly due to their superior corrosion and tribocorrosion resistance and biocompatibility. Under different conditions in vivo, such as different pH levels, composition of body fluid and mechanical loads, metallic materials may suffer from degradation, resulting in the release of undesired wear particles and ions. In particular, the Ti-6Al-4V system represents almost half of the production of Ti as a biomaterial and many concerns have been raised about titanium, aluminum and vanadium ions releasing. This work evaluates the cytotoxic effects of vanadium ionic species generated from Ti-6Al-4V surfaces regarding mouse pre-osteoblasts and fibroblasts. In our cell viability tests, we noticed a significant decrease in the fibroblasts' cell viability with vanadium concentrations (23 mu M) close to those previously reported to be observed in vivo in patients with poor functioning of their medical devices based on Ti-6Al-4V (30 mu M). Speciation modelling was carried-out, for the first time, to this system. Results of the modelling reveal that vanadates(V), namely H2VO4- and HVO42-, are the main species present in cell culture media. Otherwise, in synovial fluids of individuals with poorly functioning implants, wherein the concentration of vanadium may go up to ca. 30 mu M, the tentative theoretical speciation data indicates a high occurrence probability for V-V- and V-IV-species bound to albumin and hyaluronic acid. In conclusion, even though relatively low concentrations of vanadium may be released from Ti-6Al-4V implants in vivo, the continuous contact with peri-implant cells for long periods of time may represent a potentially hazardous situation.
机译:在生物医学行业使用的金属材料中,整形外科和牙科植入物最常见的选择是钛(Ti)及其合金,这主要是由于其优异的耐腐蚀和耐摩擦腐蚀性能以及生物相容性。在不同的体内条件下,例如不同的pH值,体液成分和机械负荷,金属材料可能会降解,导致释放不希望的磨损颗粒和离子。特别是,Ti-6Al-4V系统几乎占生物材料Ti产量的一半,并且人们对释放钛,铝和钒离子提出了许多担忧。这项工作评估了从Ti-6Al-4V表面产生的钒离子物质对小鼠成骨细胞和成纤维细胞的细胞毒性作用。在我们的细胞生存力测试中,我们发现钒浓度(23μM)接近于以前报道的在体内基于Ti-6Al- 4V(30微米)首次对该系统进行了形态建模。建模结果表明,钒酸盐(V),即H2VO4-和HVO42-,是细胞培养基中存在的主要物种。否则,在植入物功能不佳的个体的滑液中,其中钒的浓度可能会升高到大约200。暂定理论形态数据为30μM,表明与白蛋白和透明质酸结合的V-V-和V-IV-物种的发生概率很高。总之,即使体内Ti-6Al-4V植入物可能释放出较低浓度的钒,但长时间与植入物周围的细胞持续接触也可能代表潜在的危险情况。

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  • 来源
    《Materials science & engineering》 |2019年第3期|730-739|共10页
  • 作者单位

    Sao Univ Estadual Paulista UNESP, Programa Posgrad Ciencia & Tecnol Mat POSMAT, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil|Inst Biomat Tribocorrosao & Nanomed IBTN Br, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil;

    Inst Biomat Tribocorrosao & Nanomed IBTN Br, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil|Univ Sao Paulo, Fac Odontol Bauru, Alameda Dr Otavio Pinheiro Brisolla 9-75, BR-17012901 Sao Paulo, Brazil;

    Inst Biomat Tribocorrosao & Nanomed IBTN Br, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil|Dept Fis, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil;

    Inst Biomat Tribocorrosao & Nanomed IBTN Br, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil|Univ Sao Paulo, Fac Odontol Bauru, Alameda Dr Otavio Pinheiro Brisolla 9-75, BR-17012901 Sao Paulo, Brazil;

    Inst Biomat Tribocorrosao & Nanomed IBTN Br, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil|Dept Fis, Av Engn Luiz Edmundo Carrijo Coube 14-01, BR-17033360 Bauru, SP, Brazil;

    Univ Lisbon, Inst Super Tecn, Ctr Quim Estrutural, Av Rovisco Pais, P-1049001 Lisbon, Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ti-6Al-4V; Tribocorrosion; Vanadate(V); Oxidovanadium(IV); Ionic speciation; Cytotoxicity;

    机译:Ti-6Al-4V;摩擦腐蚀;钒酸盐(V);氧钒(IV);离子形态;细胞毒性;

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