弹性蛋白多肽与胶原类似物的复合:一种潜在的弹性假体材料。

D W Urry, R D Harris, M M Long
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引用次数: 12

摘要

多肽H- L。Val1-L。Pro2-Gly3-L。n-L Val4-Gly5)。Val-OMe是弹性纤维中最常见的重复序列,在辐照交联时具有弹性,但强度有限。辐照复合胶原类似物,如涤纶,应力应变研究表明,该产品的弹性模量大于纤维主动脉弹性蛋白,与主动脉壁相似。此外,复合产品具有所需的强度。在40,50和60 MRAD交联的聚五肽-涤纶产品中,大剂量的50和60 MRAD衍生的产品表现出更好的弹性体性能。用扫描电子显微镜对未拉伸和拉伸后的产物进行了表征,证明了织物组织具有均匀拉伸的重要性。一般来说,辐照交联的优点是能够产生大量的弹性体材料,复合成胶原类似物提供所需的强度。
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Compounding of elastin polypentapeptide to collagen analogue: a potential elastomeric prosthetic material.

The polypentapeptide, H-(L . Val1-L . Pro2-Gly3-L . Val4-Gly5)n-L . Val-OMe, which is the most common recurring sequence within the elastic fiber, is demonstrated to be elastomeric when irradiation cross-linked but to have limited strength. On irradiation compounding with a collagen analogue, such as Dacron, stress-strain studies show the product to have an elastic modulus greater than that of fibrous aortic elastin and similar to that of aortic wall. In addition, the compounded product has the requisite strength. Of the 40, 50 and 60 MRAD cross-linked polypentapeptide-Dacron products, those derived from the larger doses of 50 and 60 MRAD exhibited somewhat better elastomeric properties. The unstretched and stretched products were characterized by scanning electron microscopy which demonstrated the importance of a fabric weave with a uniform extension. In general irradiation cross-linking has the advantage of being able to produce larger quantities of elastomeric material and compounding to a collagen analogue provides the required strength.

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