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A novel anti-calcification method for bioprosthetic heart valves using dopamine-modified alginate

机译:使用多巴胺改性的藻酸盐的生物假体心脏瓣膜的一种新型抗钙化方法

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摘要

Calcification is one of the main causes for bioprosthetic heart valves (BHVs)' failure. Reported strategies to improve BHVs' anti-calcification properties only target some of risk factors for calcification. In the current study, we demonstrated dopamine-modified alginate coating served as a protected layer for BHVs' anti-calcification. Alginate coating was characterized by infrared spectroscopic analysis, ultraviolet spectrophotometer, and water contact angle test. By both high-calcium and high-phosphorus in vitro calcification model and rat subdermal implant in vivo calcification model, our results showed alginate-coated BHVs' have greatly improved BHVs' anti-calcification performance due to constant ionic exchange of calcium and sodium. Besides, alginate-coated BHVs did not change BHVs' mechanical strength and tissue's shrink temperature. This was the first proof-of-concept study to verify that alginate coating would be a novel method for BHVs' anti-calcification.
机译:钙化是生物假体心脏瓣膜(BHVS)失败的主要原因之一。 报告改善BHVS抗钙化属性的策略仅针对钙化的一些风险因素。 在目前的研究中,我们证明了多巴胺改性的藻酸盐涂层作为BHVS抗钙化的保护层。 通过红外光谱分析,紫外分光光度计和水接触角试验表征了藻酸盐涂层。 通过高钙和高磷在体外钙化模型和大鼠钙化模型中的体内钙化模型中,我们的结果表明,由于恒定的离子交换钙和钠,含藻酸盐涂层的BHVS具有大大提高的BHVS抗钙化性能。 此外,藻酸盐涂层的BHVs没有改变BHVS的机械强度和组织的收缩温度。 这是第一个验证藻酸盐涂层的概念证明研究,该研究将是BHVS抗钙化的一种新方法。

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