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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Human Fibrinogen Adsorption on Positively Charged Latex Particles
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Human Fibrinogen Adsorption on Positively Charged Latex Particles

机译:人纤维蛋白原在带正电的乳胶颗粒上的吸附

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摘要

Fibrinogen (Fb) adsorption on positively charged latex particles (average diameter of 800 nm) was studied using the microelectrophoretic and the concentration depletion methods based on AFM imaging. Monolayers on latex were adsorbed from diluted bulk solutions at pH 7.4 and an ionic strength in the range of 10~(-3) to 0.15 M where fibrinogen molecules exhibited an average negative charge. The electrophoretic mobility of the latex after controlled fibrinogen adsorption was systematically measured. A monotonic decrease in the electrophoretic mobility of fibrinogen-covered latex was observed for all ionic strengths. The results of these experiments were interpreted according to the three-dimensional electrokinetic model. It was also determined using the concentration depletion method that fibrinogen adsorption was irreversible and the maximum coverage was equal to 0.6 mg m~(-2) for ionic strength 10~(-3) M and 1.3 mg m~(-2) for ionic strength 0.15 M. The increase of the maximum coverage was confirmed by theoretical modeling based on the random sequential adsorption approach. Paradoxically, the maximum coverage of fibrinogen on positively charged latex particles was more than two times lower than the maximum coverage obtained for negative latex particles (3.2 mg m~(-2)) at pH 7.4 and ionic strength of 0.15 M. This was interpreted as a result of the side-on adsorption of fibrinogen molecules with their negatively charged core attached to the positively charged latex surface. The stability and acid base properties of fibrinogen monolayers on latex were also determined in pH cycling experiments where it was observed that there were no irreversible conformational changes in the fibrinogen monolayers. Additionally, the zeta potential of monolayers was more positive than the zeta potential of fibrinogen in the bulk, which proves a heterogeneous charge distribution. These experimental data reveal a new, side-on adsorption mechanism of fibrinogen on positively charged surfaces and confirmed the decisive role of electrostatic interactions in this process.
机译:使用微电泳和基于原子力显微镜成像的浓度耗尽方法研究了纤维蛋白原(Fb)在带正电的乳胶颗粒(平均直径800 nm)上的吸附。胶乳上的单分子层是在pH 7.4的稀释本体溶液中吸附的,离子强度在10〜(-3)至0.15 M的范围内,其中纤维蛋白原分子表现出平均负电荷。系统地测量了受控的纤维蛋白原吸附后乳胶的电泳迁移率。对于所有离子强度,均观察到纤维蛋白原覆盖的胶乳的电泳迁移率单调下降。这些实验的结果根据三维电动模型进行解释。还通过浓度消耗法确定纤维蛋白原吸附是不可逆的,离子强度为10〜(-3)M时最大覆盖率等于0.6 mg m〜(-2),离子强度为1.3 mg m〜(-2)强度为0.15M。通过基于随机顺序吸附方法的理论模型证实了最大覆盖率的增加。矛盾的是,在pH 7.4和离子强度为0.15 M的情况下,带正电的乳胶颗粒上的纤维蛋白原的最大覆盖率比阴性乳胶颗粒(3.2 mg m〜(-2))的最大覆盖率低两倍以上。由于纤维蛋白原分子的侧面吸附,其带负电的核心附着在带正电的乳胶表面上。在pH循环实验中还确定了纤维蛋白原单层在胶乳上的稳定性和酸碱性质,其中观察到,纤维蛋白原单层没有不可逆的构象变化。另外,单层的ζ电势比大部分纤维蛋白原的ζ电势更正,这证明了电荷分布不均。这些实验数据揭示了纤维蛋白原在带正电的表面上的新的侧吸附机理,并证实了静电相互作用在该过程中的决定性作用。

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