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首页> 外文期刊>Bio-medical materials and engineering >The influence of physical and chemical agents on photooxidation of porcine pericardial collagen.
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The influence of physical and chemical agents on photooxidation of porcine pericardial collagen.

机译:理化剂对猪心包胶原蛋白光氧化的影响。

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摘要

Photooxidation is a method of tissue fixation resulting in protein crosslinking due to illumination in the presence of a dye. The aim of the study was to evaluate the impact of dyes, photooxidation time and the type of applied light on the porcine pericardial collagen crosslinking. The collagen modifications were evaluated on the basis of pericardial sensitivity to pepsin digestion. The hydrolysate components were evaluated qualitatively and quantitatively. All hydrolysates contained collagen alpha chains, their aggregates and degradation products. Methylene blue and methylene green-mediated 4 h photooxidation in the presence of visible light caused similar decrease in pericardium sensitivity to pepsin. However, both fixation types generated remarkable amounts of alpha chain degradation products. The prolongation of photooxidation time to 8 h did not increase the pericardial sample resistance to pepsin. Moreover, these sample hydrolysates revealed an elevated alpha chain content. Violet light mediated photooxidation did not alter pericardial sensitivity to pepsin when compared with fixation under visible light. Nevertheless, violet light fixed tissues displayed a decrease in collagen degradation products. The application of violet light in photooxidation of porcine pericardium will probably allow to obtain enzyme resistant bioprostheses with better mechanical properties compared with those obtained after visible light mediated process.
机译:光氧化是一种组织固定的方法,由于在染料存在下的照射,其导致蛋白质交联。该研究的目的是评估染料,光氧化时间和施加的光类型对猪心包胶原交联的影响。基于心包对胃蛋白酶消化的敏感性来评估胶原蛋白的修饰。对水解产物组分进行定性和定量评估。所有水解产物均包含胶原α链,其聚集体和降解产物。在可见光存在下,亚甲基蓝和亚甲基绿介导的4 h光氧化引起心包对胃蛋白酶的敏感性降低。但是,两种固定类型均产生大量的α链降解产物。将光氧化时间延长至8小时并没有增加心包样品对胃蛋白酶的抵抗力。而且,这些样品水解产物显示出升高的α链含量。与可见光下固定相比,紫光介导的光氧化作用不会改变心包对胃蛋白酶的敏感性。然而,紫光固定的组织显示出胶原降解产物的减少。紫光在猪心包的光氧化中的应用将可能使获得的酶抗性生物假体与可见光介导的过程相比具有更好的机械性能。

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