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首页> 外文期刊>Journal of biomedical materials research, Part A >Evaluation of magnesium-yttrium alloy as an extraluminal tracheal stent
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Evaluation of magnesium-yttrium alloy as an extraluminal tracheal stent

机译:镁钇合金作为腔内气管支架的评价

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摘要

Tracheomalacia is a relatively rare problem, but can be challenging to treat, particularly in pediatric patients. Due to the presence of mechanically deficient cartilage, the trachea is unable to resist collapse under physiologic pressures of respiration, which can lead to acute death if left untreated. However, if treated, the outcome for patients with congenital tracheomalacia is quite good because the cartilage tends to spontaneously mature over a period of 12 to 18 months. The present study investigated the potential for the use of degradable magnesium-3% yttrium alloy (W3) to serve as an extraluminal tracheal stent in a canine model. The host response to the scaffold included the formation of a thin, vascularized capsule consisting of collagenous tissue and primarily mononuclear cells. The adjacent cartilage structure was not adversely affected as observed by bronchoscopic, gross, histologic, and mechanical analysis. The W3 stents showed reproducible spatial and temporal fracture patterns, but otherwise tended to corrode quite slowly, with a mix of Ca and P rich corrosion product formed on the surface and observed focal regions of pitting. The study showed that the approach to use degradable magnesium alloys as an extraluminal tracheal stent is promising, although further development of the alloys is required to improve the resistance to stress corrosion cracking and improve the ductility.
机译:气管软化是一个相对罕见的问题,但可能难以治疗,尤其是在儿科患者中。由于存在机械缺陷的软骨,气管在呼吸的生理压力下无法抵抗塌陷,如果不及时治疗,可能导致急性死亡。但是,如果进行治疗,先天性气管软化症患者的结局相当好,因为软骨倾向于在12到18个月的时间内自发成熟。本研究调查了使用可降解的3%镁镁合金(W3)作为犬模型中的腔外气管支架的潜力。宿主对支架的反应包括形成一个薄的,血管化的囊,该囊由胶原组织和主要是单核细胞组成。如通过支气管镜,肉眼,组织学和力学分析所观察到的,相邻的软骨结构没有受到不利影响。 W3支架显示出可再现的空间和时间断裂模式,但在其他情况下倾向于腐蚀得很慢,在表面形成了富含Ca和P的腐蚀产物,并观察到了蚀斑的焦点区域。研究表明,将可降解镁合金用作腔外气管支架的方法是有前途的,尽管需要进一步开发合金以提高抗应力腐蚀开裂性和延展性。

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