Myers P O, Kalangos A
Cardiovascular Surgery, Geneva University Hospitals and School of Medicine, Geneva, Switzerland.
Heart Lung Vessel. 2013;5(4):213-8.
Annulus remodeling and stabilization with a ring is a necessary step in mitral and tricuspid valve repair to maintain effective leaflet coaptation and improve long-term results. Although conventional rings meet the basic needs of adults, they do not preserve the changes in shape and size occurring during the cardiac cycle, and do not allow growth of the native annulus in children. The bioring annuloplasty ring was developed to allow for annular stabilization, while remaining biodegradable and allowing for growth. It is a curved "C" segment of poly-1,4-dioxanone polymer located on a non-degradable polyvinyl monofilament suture equipped with a stainless steel needle at each extremity. This ring is inserted subendocardially directly into the mitral or tricuspid annulus, away from blood contact. Animal model experiments have shown that it degrades within 12 months of implantation and is replaced by fibrous tissue, which stabilizes the annulus durably, while allowing for annular growth in children. We review the published data, from bench to bedside, as well as the early, mid and long-term clinical outcomes using the biodegradable ring, which shows that biodegradable rings remodel the annulus, reinforce the repair, restore the function of the atrioventricular valve and maintain the three dimensional dynamic motion and geometry of the mitral and tricuspid valves annulus. Growth potential is preserved in children. The mid- and long-term results showed that degradation of the device occurred without negative observable consequences.
使用环进行瓣环重塑和稳定是二尖瓣和三尖瓣修复中维持有效瓣叶对合及改善长期效果的必要步骤。尽管传统环满足成人的基本需求,但它们无法保留心动周期中发生的形状和大小变化,也不允许儿童天然瓣环生长。生物可降解环的开发旨在实现瓣环稳定,同时保持生物可降解性并允许生长。它是一段弯曲的聚-1,4-二氧六环酮聚合物“C”形片段,位于不可降解的聚乙烯单丝缝合线上,两端各配有一根不锈钢针。该环经心内膜下直接插入二尖瓣或三尖瓣环,远离血液接触。动物模型实验表明,它在植入后12个月内降解,并被纤维组织替代,从而持久稳定瓣环,同时允许儿童瓣环生长。我们回顾了从实验室到临床的已发表数据,以及使用生物可降解环的早期、中期和长期临床结果,结果表明生物可降解环可重塑瓣环、加强修复、恢复房室瓣功能并维持二尖瓣和三尖瓣环的三维动态运动及几何形状。儿童的生长潜力得以保留。中期和长期结果表明,该装置的降解未产生明显不良后果。