Protein Adsorption at Charged Surfaces: The Role of Electrostatic Interactions and Interfacial Charge Regulation

被引:201
作者
Hartvig, Rune A. [1 ]
van de Weert, Marco [1 ]
Ostergaard, Jesper [1 ]
Jorgensen, Lene [1 ]
Jensen, Henrik [1 ]
机构
[1] Univ Copenhagen, Fac Pharmaceut Sci, Dept Pharmaceut & Analyt Chem, DK-2100 Copenhagen, Denmark
关键词
DER-WAALS CONTRIBUTIONS; BAR-LIQUID INTERFACES; ION-EXCHANGE; EQUILIBRIUM-CONSTANTS; MOLECULAR SIMULATION; LYSOZYME ADSORPTION; ALBUMIN ADSORPTION; POLYMER SURFACES; ADSORBED PROTEIN; CYTOCHROME-C;
D O I
10.1021/la104720n
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The understanding of protein adsorption at charged surfaces is important for a wide range of scientific disciplines including surface engineering, separation sciences and pharmaceutical sciences. Compared to chemical entities having a permanent charge, the adsorption of small ampholytes and proteins is more complicated as the pH near a charged surface can be significantly different from the value in bulk solution. In this work, we have developed a phenomenological adsorption model which takes into account the combined role of interfacial ion distribution, interfacial charge regulation of amino acids in the proximity of the surface, electroneutrality, and mass balance. The model is straightforward to apply to a given set of experimental conditions as most model parameters are obtained from bulk properties and therefore easy to estimate or are directly measurable. The model provides a detailed understanding of the importance of surface charge on adsorption and in particular of how changes in surface charge, concentration, and surface area may affect adsorption behavior. The model is successfully used to explain the experimental adsorption behavior of the two model proteins lysozyme and alpha-lactalbumin. It is demonstrated that it is possible to predict the pH and surface charge dependent adsorption behavior from experimental or theoretical estimates of a preferred orientation of a protein at a solid charged interface.
引用
收藏
页码:2634 / 2643
页数:10
相关论文
共 54 条
[1]   Adsorption of human lysozyme onto hydroxyapatite - Identification of its adsorbing site using site-directed mutagenesis [J].
Aizawa, T ;
Koganesawa, N ;
Kamakura, A ;
Masaki, K ;
Matsuura, A ;
Nagadome, H ;
Terada, Y ;
Kawano, K ;
Nitta, K .
FEBS LETTERS, 1998, 422 (02) :175-178
[2]  
[Anonymous], 2004, Analytical and Physical Electrochemistry
[3]   THE BEHAVIOR OF SOME MODEL PROTEINS AT SOLID LIQUID INTERFACES .1. ADSORPTION FROM SINGLE PROTEIN SOLUTIONS [J].
ARAI, T ;
NORDE, W .
COLLOIDS AND SURFACES, 1990, 51 :1-15
[4]  
Bard AllenJ., 2001, Fundamentals and applications, V2nd
[5]   A modified Poisson-Boltzmann model including charge regulation for the adsorption of ionizable polyelectrolytes to charged interfaces, applied to lysozyme adsorption on silica [J].
Biesheuvel, PM ;
van der Veen, M ;
Norde, W .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (09) :4172-4180
[6]  
Bos M.A., 1994, COLLOID SURFACE B, V3, P91
[7]   DETERMINATION OF THE ORIENTATION DISTRIBUTION OF ADSORBED FLUOROPHORES USING TIRF .2. MEASUREMENTS ON PORPHYRIN AND CYTOCHROME-C [J].
BOS, MA ;
KLEIJN, JM .
BIOPHYSICAL JOURNAL, 1995, 68 (06) :2573-2579
[8]   Predicting equilibrium constants for ion exchange of proteins - a colloid science approach [J].
Bowen, WR ;
Pan, LC ;
Sharif, AO .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 1998, 143 (01) :117-131
[9]   Charged nanoparticles as protein delivery systems: A feasibility study using lysozyme as model protein [J].
Cal, Cuifang ;
Bakowsky, Udo ;
Rytting, Erik ;
Schaper, Andreas K. ;
Kissel, Thomas .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2008, 69 (01) :31-42
[10]   Lysozyme adsorption to charged surfaces. A Monte Carlo study [J].
Carlsson, F ;
Hyltner, E ;
Arnebrant, T ;
Malmsten, M ;
Linse, P .
JOURNAL OF PHYSICAL CHEMISTRY B, 2004, 108 (28) :9871-9881