首页> 外文期刊>Journal of biomaterials applications >A feasibility study of biodegradable magnesium-aluminum-zinc-calcium-manganese (AZXM) alloys for tracheal stent application
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A feasibility study of biodegradable magnesium-aluminum-zinc-calcium-manganese (AZXM) alloys for tracheal stent application

机译:生物降解镁 - 铝 - 锌 - 钙 - 锰(AZXM)合金用于气管支架应用的可行性研究

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摘要

Airway obstruction conditions are relatively rarely observed in clinical settings but nevertheless, extremely challenging to handle, especially when observed in pediatric patients. Several surgical procedures, including tracheal resection, end-to-end tracheal anastomosis, and tracheoplasty, have been developed and practised of late, to treat airway obstruction. However, the clinical outcome is typically not satisfactory due to airway restenosis conditions that develop following surgery. Various types of stents are currently available for airway stenting ranging from non-degradable silicone tubes and bio-inert metallic stents (bare or coated with polymer matrix) to hybrid silicone tubes strengthened by metallic cores, but none of the stents provides the satisfactory long-term effectiveness. Therefore, there is a significant clinical need for a biodegradable airway stent that would maintain airway patency and totally degrade over time after meeting the desired objectives. The present study aims to investigate biodegradable magnesium-aluminum-zinc-calcium-manganese (AZXM) alloy as a potential tracheal stent. The new AZXM alloy was fabricated by partially replacing aliminum in commercial AZ31 alloy with calcium. The present study demonstrates that calcium preferentially segregates along the grain boundaries as intermetallic phases (Mg2Ca) and is homogeneously distributed in the magnesium matrix. The extruded AZXM alloy showed less pitting, higher corrosion resistance in Hank's Balanced Salt Solution (HBSS) compared to the as-cast and solution-treated AZXM alloys and exhibited optimized mechanical properties. In vitro cytotoxicity evaluation using human trachea epithelial cells demonstrated excellent cyto-compatibility of AZXM alloys compared to pure Mg and commercial AZ31 validated by a very preliminary rabbit in vivo tracheal model study. Preliminary results show that the approach to use biodegradable AZXM alloys as a tracheal stent is indeed promising, although further alloy processing is required to improve the ductility needed followed by a more exhaustive in vivo study to demonstrate full viability for stent applications.
机译:在临床环境中相对较少观察到气道阻塞条件,但仍极具挑战性,尤其是在儿科患者中观察到。几种外科手术,包括气管切除切除,端到端气管吻合和气喘成形术,已经开发和实践了晚期,以治疗气道阻塞。然而,由于手术后开发的气道再狭窄条件,临床结果通常不会令人满意。目前可用于各种类型的支架,用于从不可降解的硅芯管和生物惰性金属支架(裸露或涂覆的聚合物基质)到由金属芯强化的杂种硅树脂管,但是一块支架都没有提供令人满意的长 - 术语有效性。因此,在满足所需目标之后,存在将维持气道通畅的可生物降解的气道支架具有重要的临床需求。本研究旨在研究可生物降解的镁 - 铝 - 锌 - 锰(AZXM)合金作为潜在的气管支架。通过在商业AZ31合金中用钙部分替代aliminum来制造新的AZXM合金。本研究表明,钙优先沿晶界作为金属间相(Mg2Ca)分离,并在镁基质中均匀分布。与浇铸和溶液处理的AZXM合金相比,挤出的AZXM合金显示出较少的蚀,汉克平衡盐溶液(HBSS)耐腐蚀性较高,并表现出优化的机械性能。使用人气管上皮细胞的体外细胞毒性评估表明,与在体内气管模型研究中的非常初步的兔子验证的纯Mg和商业AZ31相比,AZXM合金的优异细胞相容性。初步结果表明,使用可生物降解的AZXM合金作为气管支架的方法确实有希望,尽管需要进一步的合金加工来改善所需的延展性,然后在体内研究中更详细地展示支架应用的全部活力。

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