4.4 Article

Characterization of protein adsorption onto silica nanoparticles: influence of pH and ionic strength

期刊

COLLOID AND POLYMER SCIENCE
卷 293, 期 11, 页码 3381-3391

出版社

SPRINGER
DOI: 10.1007/s00396-015-3754-x

关键词

Adsorption; Protein; Nanoparticles; Lysozyme; beta-lactoglobulin; Silica; Electrostatic interactions

资金

  1. German Research Foundation (DFG) [IRTG 1524]
  2. NSF-MRSEC Grant [DMR-1121107]

向作者/读者索取更多资源

The adsorption of lysozyme and -lactoglobulin onto silica nanoparticles (diameter 21 nm) was studied in the pH range 2-11 at three different ionic strengths. Since the two proteins have a widely different isoelectric point (pI), electrostatic interactions with the negative silica surface lead to a different dependence of adsorption on pH. For lysozyme (pI a parts per thousand 11), the adsorption level increases with pH and reaches a value corresponding to about two close-packed monolayers at pH = pI. In the multilayer adsorption region near pI, added electrolyte causes a decrease in adsorption, which is attributed to the screening of attractive interactions between protein molecules in the first and second adsorbed layer. For -lactoglobulin (pI a parts per thousand 5), a pronounced maximum of the adsorbed amount is found at pH 4 in the absence of salt. It is attributed to the adsorption of oligomers of the protein that exist in the solution at this pH. An inversion in the influence of salt on the adsorbed amount occurs at pH > pI, where the protein and the surface are both negatively charged. This inversion is attributed to the screening of the repulsive protein-surface and protein-protein interactions. The adsorption isotherms were analyzed with the Guggenheim-Anderson-De Boer (GAB) model, which allows for two adsorption states (strongly and weakly bound protein).

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