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The effects of cross-link density and chemistry on the calcification potential of diamine-extended glutaraldehyde-fixed bioprosthetic heart-valve materials

机译:交联密度和化学性质对二胺扩展戊二醛固定的生物人工心脏瓣膜材料钙化潜力的影响

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Despite indications that GA (glutaraldehyde)-cross-linked tissues remain prone to long-term degradation and calcification, it is still the reagent of choice in the fixation of bioprosthetic heart valves. We have shown previously that increased GA concentrations and diamine extension of cross-links with lysine incorporation lead to mitigated in vivo calcification, mainly of porcine aortic-wall tissue. The present study was performed to assess the correlation between the cross-link density of all three commonly used tissue types [PW (porcine aortic wall), PL (porcine aortic leaflet) and BP (bovine pericardium)] and tissue calcification in the subcutaneous rat model after GA treatment with or without lysine. The effect of lysine enhancement, and increased GA concentration in the presence of lysine, resulted in significant increases in tissue cross-linking in all three tissue types. Although increased GA concentration on its own resulted in decreased calcification without an increase in cross-link density, overall positive correlations were found between denaturation temperature and RPD (resistance towards protease degradation) [correlation coefficient (rho) values: rho(PW)=0.922, rho(PL)=0.783 and rho(BP)=0.955], whereas negative correlations existed between RPD and calcification (rho(PW)=-0.836, rho(PL)=-0.929 and rho(BP)=-0379). The combination of lysine enhancement and an increase in GA concentration from 0.2 to 3% resulted in 79, 44 and 56% decreases in calcification in PW, PIL and BR In the case of BP, a decrease in calcification of 81% could be achieved merely by adding lysine extension to low-concentration (0.2%) GA cross-linking. Thus it is concluded that the increase in cross-link density achieved by lysine incorporation, and by increased GA concentration in the presence of lysine, results in significant and marked decreases in calcification of all three types of tissues commonly used in bioprosthetic heart valves.
机译:尽管有迹象表明,GA(戊二醛)交联的组织仍然易于长期降解和钙化,但它仍然是固定生物假体心脏瓣膜的首选试剂。以前我们已经表明,增加的GA浓度和赖氨酸掺入增加了交联的二胺延伸导致体内钙化的减轻,主要是猪主动脉壁组织的钙化。本研究旨在评估皮下大鼠三种常用组织类型[PW(猪主动脉壁),PL(猪主动脉小叶)和BP(牛心包)]的交联密度与组织钙化之间的相关性。含或不含赖氨酸的GA处理后的模型。赖氨酸增强的影响以及在赖氨酸存在下GA浓度增加导致所有三种组织类型的组织交联显着增加。尽管增加GA浓度本身会导致钙化降低而不增加交联密度,但在变性温度和RPD(对蛋白酶降解的抵抗力)之间发现了总体正相关[相关系数(rho)值:rho(PW)= 0.922 ,rho(PL)= 0.783和rho(BP)= 0.955],而RPD与钙化之间存在负相关关系(rho(PW)=-0.836,rho(PL)=-0.929和rho(BP)=-0379)。赖氨酸增强和GA浓度从0.2%增至3%的结合导致PW,PIL和BR的钙化降低79%,44%和56%。在BP的情况下,仅能实现81%的钙化降低通过在低浓度(0.2%)GA交联中添加赖氨酸延伸。因此得出结论,通过赖氨酸掺入和在赖氨酸存在下通过GA浓度的增加实现的交联密度的增加导致生物人工心脏瓣膜中常用的所有三种类型的组织的钙化显着且显着降低。

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