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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Corrosion of machined titanium dental implants under inflammatory conditions.
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Corrosion of machined titanium dental implants under inflammatory conditions.

机译:机加工钛牙科植入物在炎性条件下的腐蚀。

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The effects of hyperglycemia, altered cell function, or inflammatory mediators on implant corrosion are not well studied; yet, these effects are critical to implant biocompatibility and osseointegration. Because implant placement is burgeoning, patients with medically compromising systemic conditions such as diabetes are increasingly receiving implants, and the role of other inflammatory diseases on implant corrosion also needs investigation. In the current study, the corrosion properties of commercially available, machined titanium implants were studied in blood, cultures of monocytic cells, and solutions containing elevated dextrose concentrations. Implant corrosion was estimated by open circuit potentials, linear polarization resistance, and electrical impedance spectroscopy (EIS) for 26 h. In selected samples, THP1 monocytic cells were activated for 2 h with Lipopolysaccharide prior to implant exposure, and IL-1beta secretion was measured to assess the affect of the implants on monocyte activation.Implants under conditions of inflammatory stress exhibited more negative E(corr) values, suggesting an increased potential for corrosion. Linear polarization measurements detected increased corrosion rates in the presence of elevated dextrose conditions over PBS conditions. EIS measurements suggested that implants underwent surface passivation reactions that may have limited corrosion over the short term of this test. This result was supported by cyclic polarization tests. IL-1beta secretion was not altered under conditions of corrosion or implant exposure. The results suggest that inflammatory stress and hyperglycemia may increase the corrosion of dental endosseous titanium-based implants, but that longer, more aggressive electrochemical conditions may be necessary to fully assess these effects.
机译:高血糖,细胞功能改变或炎症介质对植入物腐蚀的影响尚未得到很好的研究。然而,这些效应对于植入物的生物相容性和骨整合至关重要。由于植入物的植入正在迅速发展,因此在医学上危及全身性疾病(例如糖尿病)的患者越来越多地接受植入物,其他炎症性疾病对植入物腐蚀的作用也需要进行研究。在当前的研究中,对血液,单核细胞培养物和葡萄糖浓度升高的溶液中的市售机加工钛植入物的腐蚀性能进行了研究。通过开路电位,线性极化电阻和电阻抗光谱法(EIS)评估26小时的植入物腐蚀。在选定的样本中,在植入物暴露之前,先用脂多糖将THP1单核细胞活化2小时,并测量IL-1β分泌以评估植入物对单核细胞活化的影响。在炎性应激条件下的扩增子表现出更多的负E(corr)值,表明腐蚀的可能性增加。线性极化测量在葡萄糖条件比PBS条件更高的情况下检测到腐蚀速率增加。 EIS测量表明,植入物经历了表面钝化反应,在此测试的短期内,其腐蚀可能有限。循环极化测试支持了该结果。在腐蚀或植入物暴露的条件下,IL-1β的分泌不会改变。结果表明,炎性应激和高血糖症可能会增加牙科骨质钛基植入物的腐蚀,但可能需要更长,更具侵略性的电化学条件才能充分评估这些效果。

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