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弹性蛋白相关微原纤维在猪主动脉弹性组织中的力学作用。

Mechanical role of elastin-associated microfibrils in pig aortic elastic tissue.

作者信息

Lillie M A, David G J, Gosline J M

机构信息

Department of Zoology, University of British Columbia, Vancouver, Canada.

出版信息

Connect Tissue Res. 1998;37(1-2):121-41. doi: 10.3109/03008209809028905.

DOI:10.3109/03008209809028905
PMID:9643652
Abstract

The contribution of microfibrils to the mechanical performance of the meshwork of elastic tissue in mature pig aorta was investigated by comparing the properties of autoclaved tissue containing elastin and microfibrils with autoclaved tissue that had been treated with dithiothreitol (DTT) or hot alkali to remove the microfibrils from the elastin. The uniaxial tensile stress-strain curve of the autoclaved tissue was linear to a strain of 0.6 or 0.7 and increased nonlinearly up to the breaking strain. The nonlinearity at high strains could not be accounted for by nonGaussian behavior and was attributed to the progressive alignment of the elastic fibers with strain. Removal of the microfibrils with DTT or treatment with calcium reduced the modulus at low strains by 12% and 4% respectively and increased the modulus at high strains, suggesting that the microfibrils have the capacity to change the orientation of the elastin fibers, possibly transmitting some of the load from one elastin fiber to another. Our findings suggest two possible roles for the microfibrils in vivo: distributing the load throughout the elastic fibers of the arterial wall and direct load bearing. The modulus and the breaking stress of the rings decreased linearly with the duration of alkali treatment starting immediately. By 45 min the modulus had dropped by 30% and the breaking stress by 50%, even though the amino acid content of the extract gave little evidence of elastin hydrolysis. Alkali treatment should not be used on autoclaved pig aortic tissue to be used for mechanical testing.

摘要

通过比较含有弹性蛋白和微原纤维的高压灭菌组织与经二硫苏糖醇(DTT)或热碱处理以从弹性蛋白中去除微原纤维的高压灭菌组织的特性,研究了微原纤维对成熟猪主动脉弹性组织网络机械性能的贡献。高压灭菌组织的单轴拉伸应力-应变曲线在应变达到0.6或0.7之前呈线性,然后直至断裂应变呈非线性增加。高应变下的非线性不能用非高斯行为来解释,而是归因于弹性纤维随应变逐渐排列。用DTT去除微原纤维或用钙处理分别使低应变下的模量降低了12%和4%,并提高了高应变下的模量,这表明微原纤维有能力改变弹性蛋白纤维的取向,可能将一些负荷从一根弹性蛋白纤维传递到另一根。我们的研究结果表明微原纤维在体内可能有两个作用:在动脉壁的弹性纤维中分布负荷和直接承受负荷。环的模量和断裂应力从碱处理开始后立即随处理时间呈线性下降。到45分钟时,模量下降了30%,断裂应力下降了50%,尽管提取物的氨基酸含量几乎没有弹性蛋白水解的迹象。用于机械测试的高压灭菌猪主动脉组织不应进行碱处理。

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