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首页> 外文期刊>Acta biomaterialia >Valve proteoglycan content and glycosaminoglycan fine structure are unique to microstructure, mechanical load and age: Relevance to an age-specific tissue-engineered heart valve.
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Valve proteoglycan content and glycosaminoglycan fine structure are unique to microstructure, mechanical load and age: Relevance to an age-specific tissue-engineered heart valve.

机译:瓣膜蛋白聚糖含量和糖胺聚糖的精细结构是微结构,机械负荷和年龄所独有的:与特定年龄的组织工程化心脏瓣膜有关。

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This study characterized valve proteoglycan and glycosaminoglycan composition during development and aging. This knowledge is important for the development of age-specific tissue-engineered heart valves as well as treatments for age-specific valvulopathies. Aortic valves and mitral valves from first-third trimester, 6-week, 6-month and 6-year-old pigs were examined using immunohistochemistry for versican, biglycan, decorin and hyaluronan, as well as elastin and fibrillin. The fine structure of glycosaminoglycans was examined by fluorophore-assisted carbohydrate electrophoresis. Decorin expression was strongest in the 6-year-old valves, particularly in the aortic valve spongiosa. The quantity of iduronate was also highest in the 6-year-old valves. The central tensile-loading region of the anterior mitral leaflet demonstrated reduced glycosaminoglycan content, chain length and hydration and a larger fraction of 4-sulfated iduronate and lower fraction of 6-sulfation. With age, the anterior leaflet center showed a further increase in 4-sulfated iduronate and decrease in 6-sulfation. In contrast, the anterior leaflet free edge showed decreased iduronate and 4-sulfated glucuronate content with age. The young aortic valve was similar to the mitral valve free edge with a higher concentration of glycosaminoglycans and 6-rather than 4-sulfation, but aged to resemble the mitral anterior leaflet center, with an increase in 4-sulfated iduronate content and a decrease in the 6-sulfation fraction. Elastin and fibrillin often co-localized with the proteoglycans studied, but elastin co-localized most specifically with versican. In conclusion, composition and fine structure changes in valve proteoglycans and glycosaminoglycans with age are complex and distinct within valve type, histological layers and regions of different mechanical loading.
机译:这项研究的特点是在发育和衰老过程中瓣膜蛋白聚糖和糖胺聚糖的组成。这些知识对于特定年龄的组织工程性心脏瓣膜的开发以及特定年龄的瓣膜病的治疗非常重要。使用免疫组织化学方法对凡赛果,双链聚糖,除蛋白和透明质酸以及弹性蛋白和纤维蛋白的免疫组化检查了三个月,三个月,六个月,六个月和六个月大的猪的主动脉瓣和二尖瓣。糖胺聚糖的精细结构通过荧光团辅助的碳水化合物电泳来检查。 Decorin表达在6岁的瓣膜中最强,尤其是在主动脉瓣海绵体内。在6岁的瓣膜中,杜鹃酸盐的含量也最高。二尖瓣前小叶的中央拉伸负荷区显示出糖胺聚糖含量,链长和水合作用减少,并且4-硫酸化的异氰酸酯含量较大,而6-硫酸化的含量较低。随着年龄的增长,前小叶中心显示4-硫酸化的异氰酸酯进一步增加而6-硫酸化的减少。相反,随着年龄的增长,前小叶的自由边缘显示出降低的艾杜糖醛酸和4-硫酸化的葡萄糖醛酸脂含量。年轻的主动脉瓣类似于二尖瓣自由边缘,具有更高的糖胺聚糖浓度和6-而不是4-硫酸化作用,但衰老类似于二尖瓣前小叶中心,其中4-硫酸化的异氰酸酯含量增加,而4-二硫键减少。 6-硫酸化分数。弹性蛋白和原纤维蛋白通常与所研究的蛋白聚糖共定位,而弹性蛋白最特别与凡尔赛蛋白共定位。总之,瓣膜蛋白聚糖和糖胺聚糖的组成和精细结构随年龄的变化在瓣膜类型,组织学层和不同机械负荷的区域内是复杂且明显的。

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