首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Evaluation of magnesium alloys for use as an intraluminal tracheal for pediatric applications in a rat tracheal bypass model
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Evaluation of magnesium alloys for use as an intraluminal tracheal for pediatric applications in a rat tracheal bypass model

机译:镁合金用作大鼠气管旁路模型中儿科应用中的腔内气管的评价

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Tracheal stenting currently using non-degradable stents is commonplace for treatment of trauma, prolonged intubation related adult airway obstructions, and pediatric patientsassociated tracheal stenosis conditions. Degradable tracheal stent placement will avoid complications of stent removal and restenosis. Widespread reports exist on degradable magnesium alloys success for orthopedic and cardiovascular applications but none to date for intra tracheal use. This research explores the use of pure Mg, AZ31, and Mg-3Y alloys for degradable tracheal stent assessment. In vitro evaluation of magnesium, prototype stents in a bioreactor simulate the airway environment and corrosion. Micro-CT imaging and biocompatibility evaluation helped assess the 24-week degradation of intraluminal alloy stents following implantation in a rat tracheal in vivo bypass model. Histological analysis indicate tissue response of the harvested stented trachea segments after each time point. Corrosion studies for each alloy indicate significant differences between the simulated and control in vitro conditions. AZ31 exhibited the lowest volume loss of 6.8% in saline, while pure Mg displayed the lowest volume loss of 4.6% in simulated airway fluid (SAF), both at 1-week time points. Significant differences in percentage of total volume lost after 6 months were determined between the alloys over time. MgY alloy displayed the slowest corrosion losing only 15.1% volume after 24 weeks of immersion. Additionally, in vitro magnesium alloy corrosion was not significantly different from the percentage of total volume lost in vivo at 1-week time point. The study demonstrates promise of magnesium alloys for intraluminal tracheal stent application albeit viability of a clinically translatable model warrants further studies. (C) 2018 Wiley Periodicals, Inc.
机译:目前采用不可降解支架的气管支架是常见的,用于治疗创伤,长期插管相关成年气道障碍物和儿科患者的气管狭窄条件。可降解的气管支架放置将避免支架去除和再狭窄的并发症。存在于可降解的镁合金对整形外科和心血管应用的可降解的报告,但迄今为止内部气管使用无效。本研究探讨了纯Mg,AZ31和MG-3Y合金的使用,用于可降解气管支架评估。体外评估镁,生物反应器中的原型支架模拟气道环境和腐蚀。微型CT成像和生物相容性评价有助于评估在体内旁路模型中植入大鼠气管中植入后的腔内合金支架的24周降解。组织学分析表明每次点后收获的支架气管区段的组织响应。每个合金的腐蚀研究表明模拟和对照在体外情况之间的显着差异。 AZ31在纯盐水中表现出6.8%的最低体积损失,而在1周的时间点,纯MG在模拟气道液(SAF)中显示出4.6%的最低体积损失。随着时间的推移,在合金之间确定6个月后损失的总体积百分比显着差异。 MGY合金显示出最慢的腐蚀,在浸泡24周后仅减少15.1%的体积。另外,体外镁合金腐蚀与1周时间点的体内总体积的百分比显着不同。该研究表明镁型气管支架应用的镁合金的承诺虽然具有临床翻译模型的可行性认证进一步研究。 (c)2018 Wiley期刊,Inc。

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