Ion Pairing and Hydration in Polyelectrolyte Multilayer Films Containing Polysaccharides

被引:131
作者
Crouzier, Thomas [1 ]
Picart, Catherine [1 ]
机构
[1] Univ Montpellier 2, CNRS, UMR 5539, F-34095 Montpellier 5, France
关键词
FIBROBLAST-GROWTH-FACTOR; CHONDROITIN SULFATE; CELL-ADHESION; FLUORESCENCE RECOVERY; EXPONENTIAL-GROWTH; HEPARIN; CHITOSAN; BINDING; CHARGE; WATER;
D O I
10.1021/bm8012378
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Thin films constituted of poly(L-lysine) (PLL) as polycation and of the anionic polysaccharides hyaluronan (HA), chondroitin sulfate (CSA), and heparin (HEP) as polyanions with increasing sulfate contents have been investigated for their internal structure, including water content and ion pairing. Film buildup in physiological solutions was followed in situ by quartz crystal balance with dissipation monitoring (QCM-D) and attenuated total internal reflectance (ATR-FTIR), infrared spectroscopy (ATR-FTIR), which allows an unambiguous quantification of the groups (sulfate, carboxylate, ammonium) present on the side groups of the polyelectrolytes. HA- and CSA-based films were the most hydrated ones. The monomer ratio (disaccharide/lysine) was very similar for all the films, whatever the polyanion, and tended toward a plateau value at similar to 0.5, indicating that there are two lysine molecules per disaccharide monomer. Thanks to the possibility to selectively cross-link carboxylate and ammonium ions via carbodiimide chemistry, the COO-/NH3+ and SO3-/NH3+ ion pairing was determined. We found that 46% of NH3+ groups are impaired (i.e., extrinsically compensated by counterions) in HA-based films, 21% in CSA-based films and none in HEP ones, which is indeed in agreement with fluorescence recovery after photobleaching (FRAP) measurements of fluorescently labeled PLL diffusion in the films. In addition, the ratio of SO3- versus COO- pairing with NH3+ groups was close to the stoechiometry of these groups in the dissacharide monomeric unit, that is, 2:1 for HEP-based films and 1:1 for CSA based films. Thus, hydration, ion pairing, and PLL diffusion in the films are interconnected properties that arise from the specific structures of the biomacromolecules constituting the films.
引用
收藏
页码:433 / 442
页数:10
相关论文
共 81 条
[1]   Hyaluronan [J].
Almond, A. .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2007, 64 (13) :1591-1596
[2]  
[Anonymous], 2015, Oxidative Phosphorylation
[3]   Calculation of hydration effects in the binding of anionic ligands to basic proteins [J].
Asthagiri, D ;
Schure, MR ;
Lenhoff, AM .
JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (36) :8753-8761
[4]   Multilayered polypeptide films:: Secondary structures and effect of various stresses [J].
Boulmedais, F ;
Bozonnet, M ;
Schwinté, P ;
Voegel, JC ;
Schaaf, P .
LANGMUIR, 2003, 19 (23) :9873-9882
[5]   Controlled electrodissolution of polyelectrolyte multilayers:: A platform technology towards the surface-initiated delivery of drugs [J].
Boulmedais, F ;
Tang, CS ;
Keller, B ;
Vörös, J .
ADVANCED FUNCTIONAL MATERIALS, 2006, 16 (01) :63-70
[6]  
BRANT DA, 1965, J AM CHEM SOC, P87
[7]   Ions from the Hofmeister series and osmolytes: effects on proteins in solution and in the crystallization process [J].
Collins, KD .
METHODS, 2004, 34 (03) :300-311
[8]   Ion hydration: Implications for cellular function, polyelectrolytes, and protein crystallization [J].
Collins, KD .
BIOPHYSICAL CHEMISTRY, 2006, 119 (03) :271-281
[9]   Fuzzy nanoassemblies: Toward layered polymeric multicomposites [J].
Decher, G .
SCIENCE, 1997, 277 (5330) :1232-1237
[10]   Hydrogels for tissue engineering: scaffold design variables and applications [J].
Drury, JL ;
Mooney, DJ .
BIOMATERIALS, 2003, 24 (24) :4337-4351