pH-dependent immobilization of proteins on surfaces functionalized by plasma-enhanced chemical vapor deposition of poly(acrylic acid)- and poly(ethylene oxide)-like films

被引:49
作者
Belegrinou, Serena [1 ]
Mannelli, Ilaria [1 ]
Lisboa, Patricia [1 ]
Bretagnol, Frederic [1 ]
Valsesia, Andrea [1 ]
Ceccone, Giacomo [1 ]
Colpo, Pascal [1 ]
Rauscher, Hubert [1 ]
Rossi, Francois [1 ]
机构
[1] Commiss European Communities, Joint Res Ctr, Inst Hlth & Consumer Protect, I-21027 Ispra, Italy
关键词
D O I
10.1021/la8003454
中图分类号
O6 [化学];
学科分类号
0703 [化学];
摘要
The interaction of the proteins bovine serum albumin (BSA), lysozyme (Lys), lactoferrin (Lf), and fibronectin (Fn) with surfaces of protein-resistant poly(ethylene oxide) (PEO) and protein-adsorbing poly(acrylic acid) (PAA) fabricated by plasma-enhanced chemical vapor deposition has been studied with quartz crystal microbalance with dissipation monitoring (QCM-D). We focus on several parameters which are crucial for protein adsorption, i.e., the isoelectric point (pI) of the proteins, the pH of the solution, and the charge density of the sorbent surfaces, with the zeta-potential as a measure for the latter. The measurements reveal adsorption stages characterized by different segments in the plots of the dissipation vs frequency change. PEO remains protein-repellent for BSA, Lys, and Lf at pH 4-8.5, while weak adsorption of Fn was observed. On PAA, different stages of protein adsorption processes could be distinguished under most experimental conditions. BSA, Lys, Lf, and Fn generally exhibit a rapid initial adsorption phase on PAA, often followed by slower processes. The evaluation of the adsorption kinetics also reveals different adsorption stages, whereas the number of these stages does not always correspond to the structurally different phases as revealed by the D-f plots. The results presented here, together with information obtained in previous studies by other groups on the properties of these proteins and their interaction with surfaces, allow us to develop an adsorption scenario for each of these proteins, which takes into account electrostatic protein-surface and protein-protein interaction, but also the pH-dependent properties of the proteins, such as shape and exposure of specific domains.
引用
收藏
页码:7251 / 7261
页数:11
相关论文
共 63 条
[1]
EFFECTS OF PLASMA-PROTEIN ADSORPTION ON PROTEIN CONFORMATION AND ACTIVITY [J].
ANDRADE, JD ;
HLADY, VL ;
VANWAGENEN, RA .
PURE AND APPLIED CHEMISTRY, 1984, 56 (10) :1345-1350
[2]
ANDRADE JD, 1985, SURFACE INTERFACIAL, V2
[3]
Structural changes of fibronectin adsorbed to model surfaces probed by fluorescence resonance energy transfer [J].
Baugh, L ;
Vogel, V .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2004, 69A (03) :525-534
[4]
Formation of viscoelastic protein droplets on a chemically functionalized surface [J].
Belegrinou, S. ;
Mannelli, I. ;
Sirghi, L. ;
Bretagnol, F. ;
Valsesia, A. ;
Rauscher, H. ;
Rossi, F. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2007, 111 (30) :8713-8716
[5]
ATTRACTIVE AND REPULSIVE INTERACTIONS BETWEEN AND WITHIN ADSORBED RIBONUCLEASE-A LAYERS [J].
BELFORT, G ;
LEE, CS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (20) :9146-9150
[6]
Evaluation of surface modification by electrokinetic measurements [J].
Bellmann, C ;
Klinger, C ;
Opfermann, A ;
Böhme, F ;
Adler, HJP .
PROGRESS IN ORGANIC COATINGS, 2002, 44 (02) :93-98
[7]
IONIC-STRENGTH-DEPENDENT AND PH-DEPENDENT CONFORMATIONAL STATES OF HUMAN PLASMA FIBRONECTIN [J].
BENECKY, MJ ;
WINE, RW ;
KOLVENBACH, CG ;
MOSESSON, MW .
BIOCHEMISTRY, 1991, 30 (17) :4298-4306
[8]
Surface-dependent conformations of human plasma fibronectin adsorbed to silica, mica, and hydrophobic surfaces, studied with use of Atomic Force Microscopy [J].
Bergkvist, M ;
Carlsson, J ;
Oscarsson, S .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2003, 64A (02) :349-356
[9]
Characterization of several polymer surfaces by streaming potential and wetting measurements: Some reflections on acid-base interactions [J].
Bismarck, A ;
Kumru, ME ;
Springer, J .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1999, 217 (02) :377-387
[10]
Fouling and non-fouling surfaces produced by plasma polymerization of ethylene oxide monomer [J].
Brétagnol, F ;
Lejeune, M ;
Papadopoulou-Bouraoui, A ;
Hasiwa, M ;
Rauscher, H ;
Ceccone, G ;
Colpo, P ;
Rossi, F .
ACTA BIOMATERIALIA, 2006, 2 (02) :165-172