Mechanisms of Fibrinogen Adsorption on Latex Particles Determined by Zeta Potential and AFM Measurements

被引:44
作者
Adamczyk, Zbigniew [1 ]
Bratek-Skicki, Anna [1 ]
Dabrowska, Paulina [1 ]
Nattich-Rak, Malgorzata [1 ]
机构
[1] Polish Acad Sci, J Haber Inst Catalysis & Surface Chem, PL-30239 Krakow, Poland
关键词
IONIC-STRENGTH; ELECTROPHORETIC MOBILITY; COLLOID PARTICLES; SURFACES; IGG; MOLECULE; ALBUMIN; HSA;
D O I
10.1021/la2038119
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The adsorption of fibrinogen on polystyrene latex particles was studied using the concentration depletion method combined with the AFM detection of residual protein after adsorption. Measurements were carried out for a pH range of 3.5-11 and an ionic strength range of 10(-3)-0.15 M NaCl. First, the bulk physicochemical properties of fibrinogen and the latex particle suspension were characterized for this range of pH and ionic strength. The zeta potential and the number of uncompensated (electrokinetic) charges on the protein were determined from microelectrophoretic measurements. It was revealed that fibrinogen molecules exhibited amphoteric characteristics, being on average positively charged for pH <5.8 (isolectric point) and negative otherwise. However, the latex particles did not show any isoelectric point, remaining strongly negative for this pH range. Afterward, systematic measurements of the electrophoretic mobility of fibrinogen-covered latex were carried out as a function of the amount of adsorbed protein, expressed as the surface concentration. A monotonic increase in the electrophoretic mobility (zeta potential) of the latex was observed in all cases, indicating a significant adsorption of fibrinogen on latex for pH below 11. It was also proven that fibrinogen adsorption was irreversible, with the maximum surface concentration varying between 2.5 and 5 x 10(3) mu m(-2) (weight concentration of a bare molecule was 1.4 to 2.8 mg m(-2)). These measurements revealed two main adsorption mechanisms of fibrinogen: (i) the unoriented (random) mechanism prevailing for lower ionic strength, where adsorbing molecules significantly penetrate the fuzzy polymeric layer on the latex core and (ii) the side-on adsorption mechanism prevailing for pH > 5.8 and a higher ionic strength of 0.15 M. It was also shown that in the latter case, variations in the zeta potential with the protein coverage could be adequately described in terms of the electrokinetic model, previously formulated for planar substrate adsorption. On the basis of these experimental data, an efficient procedure of preparing fibrinogen-covered latex particles of controlled monolayer structure and coverage was envisaged.
引用
收藏
页码:474 / 485
页数:12
相关论文
共 39 条
  • [1] Colloid particle and protein deposition - Electrokinetic studies
    Adamczyk, Z.
    Nattich, M.
    Wasilewska, M.
    Zaucha, M.
    [J]. ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2011, 168 (1-2) : 3 - 28
  • [2] Streaming potential studies of colloid, polyelectrolyte and protein deposition
    Adamczyk, Z.
    Sadlej, K.
    Wajnryb, E.
    Nattich, M.
    Ekiel-Jezewska, M. L.
    Blawzdziewicz, J.
    [J]. ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2010, 153 (1-2) : 1 - 29
  • [3] Adamczyk Z, 1999, B POL ACAD SCI-CHEM, V47, P239
  • [4] Mechanisms of Fibrinogen Adsorption at Solid Substrates
    Adamczyk, Zbigniew
    Barbasz, Jakub
    Ciesla, Michal
    [J]. LANGMUIR, 2011, 27 (11) : 6868 - 6878
  • [5] Kinetics of Fibrinogen Adsorption on Hydrophilic Substrates
    Adamczyk, Zbigniew
    Barbasz, Jakub
    Ciesla, Michal
    [J]. LANGMUIR, 2010, 26 (14) : 11934 - 11945
  • [6] Zeta Potential of Mica Covered by Colloid Particles: A Streaming Potential Study
    Adamczyk, Zbigniew
    Zaucha, Maria
    Zembala, Maria
    [J]. LANGMUIR, 2010, 26 (12) : 9368 - 9377
  • [7] Atomic force microscope studies of fibrinogen adsorption
    Averett, Laurel E.
    Schoenfisch, Mark H.
    [J]. ANALYST, 2010, 135 (06) : 1201 - 1209
  • [8] Fibrinogen adsorption onto 316L stainless steel, Nitinol and titanium
    Bai, Zhijun
    Filiaggi, M. J.
    Dahn, J. R.
    [J]. SURFACE SCIENCE, 2009, 603 (06) : 839 - 846
  • [9] Electrokinetic behavior of polystyrene latexes with different surface groups: Effect of heat treatment
    BastosGonzalez, D
    Hidalgo-Alvarez, R
    delasNieves, FJ
    [J]. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1996, 177 (02) : 372 - 379
  • [10] Observation of the mobility maximum predicted by the standard electrokinetic model for highly charged amidine latex particles
    Borkovec, M
    Behrens, SH
    Semmler, M
    [J]. LANGMUIR, 2000, 16 (11) : 5209 - 5212