Adsorption of collagen on model hydrophobic surfaces.

Journal of bioengineering Pub Date : 1978-04-01
R D Bagnall
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Abstract

The change in interfacial tension with time for rat-tail tendon collagen adsorbing at the air, methylene iodide and isooctane interfaces has been followed by the pendant drop technique as a model for hydrophobic biomaterials. It is shown that the surface activity of tropocollagen at these three interfaces is less than that of albumin, gamma-globulin, serum of plasma, so that displacement of a preadsorbed plasma protein layer by tropocollagen molecules is energetically unfavourable and unlikely to occur. It is proposed that this may be one reason for the lack of interaction between hydrophobic soft tissue implants and their tissue capsules. It is then speculated that such interaction may require the development of biomaterials with a specific affinity for connective tissue components.

胶原蛋白在模型疏水表面的吸附。
大鼠尾腱胶原蛋白吸附在空气、亚甲基碘化物和异辛烷界面上的界面张力随时间的变化已经被垂坠滴技术作为疏水生物材料的模型。结果表明,在这三个界面上,原胶原蛋白的表面活性低于白蛋白、γ -球蛋白和血浆的血清,因此,原胶原蛋白分子对预吸附的血浆蛋白层的位移在能量上是不利的,不太可能发生。这可能是疏水软组织植入物与其组织胶囊之间缺乏相互作用的原因之一。据此推测,这种相互作用可能需要开发对结缔组织成分具有特定亲和力的生物材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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