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首页> 外文期刊>The Journal of heart valve disease >Inhibition of cusp and aortic wall calcification in ethanol- and aluminum-treated bioprosthetic heart valves in sheep: background, mechanisms, and synergism.
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Inhibition of cusp and aortic wall calcification in ethanol- and aluminum-treated bioprosthetic heart valves in sheep: background, mechanisms, and synergism.

机译:乙醇和铝处理的人工心脏瓣膜对绵羊尖瓣和主动脉壁钙化的抑制作用:背景,机理和协同作用。

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BACKGROUND AND AIM OF THE STUDY: Calcification of bioprosthetic heart valves fabricated from glutaraldehyde (GA)-pretreated heterograft tissue is frequently responsible for the clinical failure of these devices. Stentless bioprostheses fabricated from GA-fixed porcine aortic valves pose an important challenge in this regard, as pathologic calcification can affect not only the bioprosthetic cusps, but also the aortic wall segment. METHODS: A synergistic approach was used to prevent bioprosthetic cusp and aortic wall calcification. Ethanol pretreatment of bioprosthetic heart valves was shown to inhibit cuspal calcification due to multiple mechanisms, including alterations of collagen structure and lipid extraction. AlCl3 pretreatment of bioprostheses to prevent calcification was also investigated; this alters elastin structure, inhibits alkaline phosphatase, and complexes with phosphoesters, thereby inhibiting aortic wall mineralization. RESULTS: Experimental data from rat subdermal implants and sheep mitral replacements showed successful synergism with co-pretreatment of porcine aortic valve bioprostheses with ethanol and AlCl3. Significant inhibition of both cusp and aortic wall calcification was achieved by differential pretreatments that restrict AlCl3 to only the aortic wall, and not the cusp, accompanied by ethanol cuspal exposure. Sequential exposure of bioprostheses, first to AlCl3 and then to ethanol, led to unexpectedly severe cuspal calcification. CONCLUSION: Differential pretreatment of stentless bioprostheses with ethanol and AlCl3 can effectively inhibit both cuspal and aortic wall calcification.
机译:研究的背景和目的:由戊二醛(GA)预处理的异种移植组织制成的生物人工心脏瓣膜的钙化通常是造成这些装置临床失败的原因。在这方面,用GA固定的猪主动脉瓣制成的无支架生物假体在这方面提出了重要的挑战,因为病理性钙化不仅会影响生物假体的尖端,还会影响主动脉壁节段。方法:采用协同方法预防生物假体的尖锐和主动脉壁钙化。由于多种机制,包括对胶原蛋白结构和脂质提取的改变,乙醇对生物人工心脏瓣膜的预处理显示抑制,骨钙化。还研究了用AlCl3预处理生物假体以防止钙化的现象。这会改变弹性蛋白的结构,抑制碱性磷酸酶,并与磷酸酯形成复合物,从而抑制主动脉壁矿化。结果:来自大鼠皮下植入物和绵羊二尖瓣置换物的实验数据显示,与乙醇和AlCl3共同预处理猪主动脉瓣生物假体具有成功的增效作用。通过不同的预处理将AlCl3仅限制在主动脉壁而不限制在主动脉壁上,并伴随乙醇ethanol骨的暴露,可以实现对尖瓣和主动脉壁钙化的显着抑制。顺序将生物假体先暴露在AlCl3中,然后再暴露在乙醇中,会导致意想不到的严重severe骨钙化。结论:乙醇和AlCl3差异预处理无支架生物假体可以有效抑制cus骨和主动脉壁钙化。

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