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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Adsorption and interaction of fibronectin and human serum albumin at the liquid-liquid interface
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Adsorption and interaction of fibronectin and human serum albumin at the liquid-liquid interface

机译:纤连蛋白与人血清白蛋白在液-液界面的吸附和相互作用

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The goal of this work was to investigate the dynamics of human plasma fibronectin (HFN) at the oil-water interface and to characterize its interactions with human serum albumin (HSA) by total internal reflection fluorescence microscopy (TIRFM). Among key results, we observed that fibronectin adsorption at the oil-water interface is rapid and essentially irreversible, even over short time scales. This may be due to the highly flexible nature of the protein, which allows its various domains to quickly attain energetically favorable conformations. On the other hand, HSA adsorption at the oil-water interface is relatively reversible at short times, and the protein is readily displaced by fibronectin even after HSA has been adsorbed at the interface for as long as 2 h. At longer adsorption times, HSA is able to more effectively resist complete displacement by fibronectin, although we observed significant fibronectin adsorption even under those conditions. Displacement of adsorbed fibronectin by HSA was negligible under all conditions. Fibronectin also adsorbs preferentially from a mixture of HFN and HSA, even when the concentration of HSA is substantially higher. This study is relevant to such emerging research thrusts as the development of biomimetic interfaces for a variety of applications, where there is a clear need for better understanding of the effects of interfacial competition, adsorption time scales, and extent of adsorption irreversibility on interfacial dynamics.
机译:这项工作的目的是研究人血浆纤连蛋白(HFN)在油水界面的动力学,并通过全内反射荧光显微镜(TIRFM)表征其与人血清白蛋白(HSA)的相互作用。在关键结果中,我们观察到纤连蛋白在油水界面的吸附是快速的,并且即使在很短的时间范围内也基本上不可逆。这可能是由于蛋白质的高度柔韧性,使蛋白质的各个结构域都能快速获得在能量上有利的构象。另一方面,HSA在油-水界面上的吸附在短时间内相对可逆,即使HSA在界面上吸附长达2小时之后,蛋白也容易被纤连蛋白置换。在更长的吸附时间下,HSA能够更有效地抵抗纤连蛋白的完全置换,尽管即使在那些条件下我们也观察到了纤连蛋白的显着吸附。在所有条件下,HSA对吸附的纤连蛋白的置换作用都可以忽略不计。纤连蛋白也优先从HFN和HSA的混合物中吸附,即使HSA的浓度高得多。这项研究与诸如各种用途的仿生界面的开发等新兴研究方向相关,显然需要更好地了解界面竞争,吸附时间尺度和吸附不可逆性对界面动力学程度的影响。

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