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Effect of iron oxide nanoparticles on the concentration-versus-sizes relation of proteins in the blood plasma and serum, and in model solutions

机译:氧化铁纳米颗粒对血浆和血清以及模型溶液中蛋白质的浓度与大小关系的影响

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The effect of iron (Ⅲ) oxide nanoparticles produced in acoustoplasma discharge with cavitation on the concentration and the sizes of particles in model protein solutions, human blood serum and plasma samples is studied. Dynamic and static light scattering data on size and concentration of particles show that the nanoparticles addition to fibrinogen-thrombin system affects the course of enzymatic reaction. Interaction of nanoparticles with fibrinogen solution (before thrombin addition) does not significantly change the distribution of scattered light intensity on particle sizes. Comparison of the relations of particle sizes and their concentration for fibrinogen solution with and without nanoparticles shows an increase of the slope of size-concentration relation in a log-log scale, which indicates an increase in the concentration of small particles and decrease of big ones. For model solution of fibrinogen with thrombin, initially incubated with iron oxide nanoparticles, the slopes of the size-concentration relation equals to k = -(4.62±0.33) and slightly differs from the slope of the relation for fibrinogen-thrombin system without nanoparticles k=-(4.23±0.28). We believe that changes in the size-concentration relation indicate the interaction of nanoparticles with proteins, which results in gelation rate change.
机译:研究了在空化条件下产生的声等离子放电产生的三氧化二铁纳米颗粒对模型蛋白溶液,人血清和血浆样品中颗粒浓度和大小的影响。关于颗粒大小和浓度的动态和静态光散射数据表明,将纳米颗粒添加到纤维蛋白原-凝血酶系统中会影响酶促反应的过程。纳米粒子与纤维蛋白原溶液的相互作用(在添加凝血酶之前)不会显着改变散射光强度在粒径上的分布。比较含和不含纳米颗粒的纤维蛋白原溶液的粒径及其浓度之间的关系,结果显示浓度-浓度关系的斜率以对数-对数的比例增加,这表明小颗粒的浓度增加而大颗粒的浓度减少。对于最初用氧化铁纳米颗粒孵育的纤维蛋白原与凝血酶的模型溶液,其尺寸-浓度关系的斜率等于k =-(4.62±0.33),与没有纳米颗粒k的纤维蛋白原-凝血酶系统的关系斜率略有不同=-(4.23±0.28)。我们相信大小-浓度关系的变化表明纳米颗粒与蛋白质的相互作用,这导致凝胶化速率的变化。

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