V. Tolstoguzov, Food science technologies, pp.171-198, 1997.

J. Doublier, C. Garnier, D. Renard, and C. Sanchez, Protein???polysaccharide interactions, Current Opinion in Colloid & Interface Science, vol.5, issue.3-4, pp.202-214, 2000.
DOI : 10.1016/S1359-0294(00)00054-6

C. Tribet, Surfactant science series, 2001.

C. Cooper, P. Dubin, A. Kayitmazer, and S. Turksen, Polyelectrolyte???protein complexes, Current Opinion in Colloid & Interface Science, vol.10, issue.1-2, pp.52-78, 2005.
DOI : 10.1016/j.cocis.2005.05.007

H. Morawetz and W. Hugues, The Interaction of Proteins with Synthetic Polyelectrolytes. I. Complexing of Bovine Serum Albumin, The Journal of Physical Chemistry, vol.56, issue.1, pp.64-69, 1952.
DOI : 10.1021/j150493a014

H. Morawetz and H. Sage, Advanced Drug Delivery, Arch. Biochem. Biophys, vol.5656, issue.31, pp.103-109, 1955.

T. Gibson, B. Pierce, J. Hulbert, and S. Gillespie, Improvements in the stability characteristics of biosensors using protein-polyelectrolyte complexes, Sensors and Actuators B: Chemical, vol.33, issue.1-3, pp.13-18, 1996.
DOI : 10.1016/0925-4005(96)01904-1

1. De and . Fig, 3 ? Courbes DNPA en fonction du rapport de charge introduit pour pH= 7 ainsi que leurs ajustementsàajustementsà petits q. (a) : courbes de diffusion de la protéine

L. Huizhou, Y. Weijing, and C. Jiayong, Effects of surfactants on emulsification and secondary structure of lysozyme in aqueous solutions, Biochemical Engineering Journal, vol.2, issue.3, pp.187-196, 1998.
DOI : 10.1016/S1369-703X(98)00031-X

P. G. Vekilov, L. A. Monaco, B. R. Thomas, V. Stojanoff, F. Rosenberger et al., Acta Crystallographica Section D- Biological Crystallography INITIALÉ echantillons ontétéontété mesuré immédiatement après mélange pour ce suivi cinétique. Il y a eu environ une minute de temps mort entre la réalisation de l'´ echantillon et le début du comptage du premier spectre, pp.785-798, 1996.

. Fig, 11 ? Courbes DNPA en fonction du temps pour courbes de diffusion de la protéine (en encart : schéma de l'´ evolution de l'´ echantillon)

D. La, D. De, . Des, . Sur-d-´, and . Fig, En effet pour la protéine on retrouve un signal de facteur de forme de protéinè a grands q et une diffusion en q ?2.5 ` a plus petits q. Pour le polyélectrolyte, on retrouve le pic de corrélation du réseau puiségalement puiségalement une légère diffusionàdiffusionà petits q duè a des hétérogénéités. L'obtention de cette structure s'explique par la concentrationélévéeconcentrationélévée en PSS (0.2 M) qui fait que nous sommes dans le régime semi-dilué bien que les cha??nescha??nes soient courtes (N = 40) On observe cependant le présence d'un léger picàpicà 0.2 ? A ?1 dans le signal de la protéinè a t = 0 ainsi que sur le 8.4, Les caractéristiques initiales des signaux de diffusion pour la protéine et le polyélectrolyte montrent que la strcuture initialement formée est le gel réticulé) : courbes de diffusion de la protéine pour les quatre pH pour un rapport

M. De and P. , (b) : courbes de diffusion du polyélectrolyte pour les quatre pH pour un rapport 0.1 M de PSS et 40 g/L de lysozyme décalées d'un facteur 10. (c) : courbes de diffusion de la protéine pour les quatre pH pour un rapport 0.3 M de PSS et 20 g/L de lysozyme décalées d'un facteur 10. (d) : courbes de diffusion du polyélectrolyte pour les quatre pH pour un rapport 0.3 M de PSS et 20 g

K. Nishida, K. Kaji, and T. Kanaya, Charge Density Dependence of Correlation Length Due to Electrostatic Repulsion in Polyelectrolyte Solutions, Macromolecules, vol.28, issue.7, pp.2472-2475, 1995.
DOI : 10.1021/ma00111a047

W. Essafi, F. Lafuma, and C. E. Williams, Structural evidence of charge renormalization in semi-dilute solutions of highly charged polyelectrolytes, The European Physical Journal B, vol.9, issue.2, pp.261-266, 1999.
DOI : 10.1007/s100510050765

A. R. Khokhlov, On the collapse of weakly charged polyelectrolytes, Journal of Physics A: Mathematical and General, vol.13, issue.3, pp.979-987, 1980.
DOI : 10.1088/0305-4470/13/3/030

A. Dobrynin, R. H. Colby, and M. Rubinstein, Scaling theory of polyelectrolyte solutions . macromolecules, pp.1859-1871, 1995.

P. Pfeuty, CONFORMATION DES POLY??LECTROLYTES ORDRE DANS LES SOLUTIONS DE POLY??LECTROLYTES, Le Journal de Physique Colloques, vol.39, issue.C2, p.149, 1978.
DOI : 10.1051/jphyscol:1978227

P. G. Degennes, P. Pincus, R. M. Velasco, and F. Brochard, Remarks on polyelectrolyte conformation, J. Phys, vol.51, p.503, 1976.

T. Odijk, Polyelectrolytes near the rod limit, Journal of Polymer Science: Polymer Physics Edition, vol.15, issue.3, pp.477-483, 1977.
DOI : 10.1002/pol.1977.180150307

J. Skolnick and M. Fixman, Electrostatic Persistence Length of a Wormlike Polyelectrolyte, Macromolecules, vol.10, issue.5, pp.944-948, 1977.
DOI : 10.1021/ma60059a011

J. Barrat and J. Joanny, Persistence Length of Polyelectrolyte Chains, Europhysics Letters (EPL), vol.24, issue.5, p.333, 1993.
DOI : 10.1209/0295-5075/24/5/003

D. Baigl, T. A. Seery, and C. E. Williams, Preparation and Characterization of Hydrosoluble, Partially Charged Poly(styrenesulfonate)s of Various Controlled Charge Fractions and Chain Lengths, Macromolecules, vol.35, issue.6, pp.2318-2326, 2001.
DOI : 10.1021/ma011707o

H. Vink, A new convenient method for the synthesis of poly(styrenesulfonic acid)

A. J. Sophianopoulos and K. E. Vanholde, Physical studies of muramidase (lysozyme). ii : ph dependent dimerization, J. Bio. Chem, vol.239, p.2516, 1964.

O. Vidal, Cristallogénèse d'un lysozyme en gel d'agarose et en gel de silice, Thèse de doctorat, 1996.

J. L. Xia and P. L. Dubin, Protein-Polyelectrolyte Complexes, Macromolecular Complexes in Chemistry and Biology, 1994.
DOI : 10.1007/978-3-642-78469-9_15

V. B. Tolstoguzov, Protein-polysaccharide interactions. Food science technologies, pp.171-198, 1997.

J. L. Doublier, C. Garnier, D. Renard, and C. Sanchez, Protein???polysaccharide interactions, Current Opinion in Colloid & Interface Science, vol.5, issue.3-4, pp.202-214, 2000.
DOI : 10.1016/S1359-0294(00)00054-6

C. Tribet, Complexation between amphiphilic polyelectrolytes and proteins : from necklaces to gels, 2001.

C. L. Cooper, P. L. Dubin, A. B. Kayitmazer, and S. Turksen, Polyelectrolyte???protein complexes, Current Opinion in Colloid & Interface Science, vol.10, issue.1-2, pp.52-78, 2005.
DOI : 10.1016/j.cocis.2005.05.007

H. Morawetz and W. L. Hugues, The Interaction of Proteins with Synthetic Polyelectrolytes. I. Complexing of Bovine Serum Albumin, The Journal of Physical Chemistry, vol.56, issue.1, pp.64-69, 1952.
DOI : 10.1021/j150493a014

H. Morawetz and H. Sage, The effect of poly(acrylic acid) on the tryptic digestion of hemoglobin, Archives of Biochemistry and Biophysics, vol.56, issue.1, pp.103-109, 1955.
DOI : 10.1016/0003-9861(55)90338-6

D. E. Parker, C. E. Glatz, C. F. Ford, S. M. Gendel, I. Suominen et al., Recovery of a charged-fusion protein from cell extracts by polyelectrolyte precipitation, Biotechnology and Bioengineering, vol.2, issue.5, pp.467-475, 1990.
DOI : 10.1002/bit.260360506

A. L. Margolin, S. F. Shertyuk, V. A. Izumrudov, A. B. Zezin, V. A. Kabanov et al., Enzymes in polyelectrolyte complexes, European Journal of Biopolymers, vol.146, pp.625-632, 1985.

K. Kassapidou, W. Jesse, M. E. Kuil, A. Lapp, S. Egelhaaf et al., Structure and Charge Distribution in DNA and Poly(styrenesulfonate) Aqueous Solutions, Macromolecules, vol.30, issue.9, pp.2671-2684, 1997.
DOI : 10.1021/ma9617126

E. Raspaud, M. Olvera-de-la-cruz, J. L. Sikorav, F. Livolant-matsuzawa, T. Kanbe et al., Precipitation of DNA by Polyamines: A Polyelectrolyte Behavior, Biophysical Journal, vol.74, issue.1, pp.381-393, 1998.
DOI : 10.1016/S0006-3495(98)77795-1

A. Eremenko, I. Kurochkin, S. Chernov, A. Barmin, A. Yaroslavov et al., Monomolecular enzyme films stabilized by amphiphilic polyelectrolytes for biosensor devices, Thin Solid Films, vol.260, issue.2, pp.212-216, 1995.
DOI : 10.1016/0040-6090(94)06403-2

S. Azegami, A. Tsuboi, T. Izumi, M. Hirata, P. L. Dubin et al., Formation of an Intrapolymer Complex from Human Serum Albumin and Poly(ethylene glycol), Langmuir, vol.15, issue.4, pp.940-947, 1999.
DOI : 10.1021/la9809269

T. Matsudo, K. Ogawa, and E. Kokufuta, Complex Formation of Protein with Different Water-Soluble Synthetic Polymers, Biomacromolecules, vol.4, issue.6, pp.1794-1799, 2003.
DOI : 10.1021/bm0341935

J. Y. Gao, P. L. Dubin, and B. B. Muhoberac, Capillary Electrophoresis and Dynamic Light Scattering Studies of Structure and Binding Characteristics of Protein???Polyelectrolyte Complexes, The Journal of Physical Chemistry B, vol.102, issue.28, pp.5529-5535, 1998.
DOI : 10.1021/jp980507k

A. Tsuboi, T. Izumi, M. Hirata, J. Xia, P. L. Dubin et al., Complexation of Proteins with a Strong Polyanion in an Aqueous Salt-free System, Langmuir, vol.12, issue.26, pp.6295-6303, 1996.
DOI : 10.1021/la960653m

E. Kokufuta, Complexation of Proteins with Polyelectrolytes in a Salt-Free System and Biochemical Characteristics of the Resulting Complexes, Macromolecular Complexes in Chemistry and Biology, pp.301-325, 1994.
DOI : 10.1007/978-3-642-78469-9_18

J. Xia, P. L. Dubin, Y. Kim, B. B. Muhoberac, and V. J. Klimkowski, Electrophoretic and quasi-elastic light scattering of soluble protein-polyelectrolyte complexes, The Journal of Physical Chemistry, vol.97, issue.17, pp.4528-4534, 1993.
DOI : 10.1021/j100119a046

J. M. Park, B. B. Muhoberac, P. L. Dubin, and J. Xia, Effects of protein charge heterogeneity in protein-polyelectrolyte complexation, Macromolecules, vol.25, issue.1, pp.290-295, 1992.
DOI : 10.1021/ma00027a047

K. Kaibara, T. Okazaki, H. B. Bohidar, and P. L. Dubin, pH-Induced Coacervation in Complexes of Bovine Serum Albumin and Cationic Polyelectrolytes, Biomacromolecules, vol.1, issue.1, pp.100-107, 2000.
DOI : 10.1021/bm990006k

T. Perkins, D. Mak, T. Root, and E. Lightfoot, Protein retention in hydrophobic interaction chromatography: modeling variation with buffer ionic strength and column hydrophobicity, Journal of Chromatography A, vol.766, issue.1-2, pp.1-14, 1997.
DOI : 10.1016/S0021-9673(96)00978-8

T. Sato, K. W. Mattison, P. L. Dubin, M. Kamachi, and Y. Morishima, Effect of Protein Aggregation on the Binding of Lysozyme to Pyrene-Labeled Polyanions, Langmuir, vol.14, issue.19, pp.145430-5437, 1998.
DOI : 10.1021/la980366d

C. Tribet, I. Porcar, P. A. Bonnefont, and R. Audebert, Association between Hydrophobically Modified Polyanions and Negatively Charged Bovine Serum Albumin, The Journal of Physical Chemistry B, vol.102, issue.7, pp.1327-1333, 1998.
DOI : 10.1021/jp973022p

V. Ball, M. Winterhalter, P. Schwinte, . Ph, J. Lavalle et al., Complexation Mechanism of Bovine Serum Albumin and Poly(allylamine hydrochloride), The Journal of Physical Chemistry B, vol.106, issue.9, pp.2357-2364, 2002.
DOI : 10.1021/jp012522m

C. Le-bon, T. Nicolai, and D. Durand, Kinetics of Aggregation and Gelation of Globular Proteins after Heat-Induced Denaturation, Macromolecules, vol.32, issue.19, pp.6120-6127, 1999.
DOI : 10.1021/ma9905775

R. Borrega, C. Tribet, and R. Audebert, Reversible Gelation in Hydrophobic Polyelectrolyte/Protein Mixtures:?? An Example of Cross-Links between Soft and Hard Colloids, Macromolecules, vol.32, issue.23, pp.327798-7806, 1999.
DOI : 10.1021/ma981872c

P. L. Dubin, J. Gao, and K. Mattison, Protein-purification by selective phase-separation with polyelectrolytes. Separation and Purification Methods, pp.1-16, 1994.

C. K. Trinh and W. Schnabel, Ionic-strength dependence of the stability of polyelectrolyte complexes -its importance for the isolation of multiply-charged polymers, Angewandte Makromolekulare Chemie, vol.212, issue.1, pp.167-179, 1993.
DOI : 10.1002/apmc.1993.052120115

C. G. De-kruif, F. Weinbrecka, and R. De-vriesc, Complex coacervation of proteins and anionic polysaccharides, Current Opinion in Colloid & Interface Science, vol.9, issue.5, pp.340-349, 2004.
DOI : 10.1016/j.cocis.2004.09.006

P. Chodanowski and S. Stoll, Polyelectrolyte Adsorption on Charged Particles in the Debye???H??ckel Approximation. A Monte Carlo Approach, Macromolecules, vol.34, issue.7, pp.2320-2328, 2001.
DOI : 10.1021/ma000482z

S. Stoll and P. Chodanowski, Polyelectrolyte adsorption on an oppositely charged spherical particle. chain rigidity effects. macromolecules, pp.9556-9562, 2002.

S. Ulrich, A. Laguecir, and S. Stoll, Complexation of a Weak Polyelectrolyte with a Charged Nanoparticle. Solution Properties and Polyelectrolyte Stiffness Influences, Macromolecules, vol.38, issue.21, pp.8939-8949, 2005.
DOI : 10.1021/ma051142m

R. R. Netz and J. F. Joanny, Adsorption of Semiflexible Polyelectrolytes on Charged Planar Surfaces:?? Charge Compensation, Charge Reversal, and Multilayer Formation, Macromolecules, vol.32, issue.26, pp.329013-9025, 1999.
DOI : 10.1021/ma990263h

M. Jonsson and P. Linse, Polyelectrolyte???macroion complexation. II. Effect of chain flexibility, The Journal of Chemical Physics, vol.115, issue.23, pp.10975-10985, 2001.
DOI : 10.1063/1.1417508

M. Skepo, P. Linse, F. Carlsson, M. Malmsten, and P. Linse, Complexation, Phase Separation, and Redissolution in Polyelectrolyte???Macroion Solutions, Macromolecules, vol.36, issue.2, pp.508-519, 2003.
DOI : 10.1021/ma020634l

N. A. Peppas and W. Leobandung, Stimuli-sensitive hydrogels: ideal carriers for chronobiology and chronotherapy, Journal of Biomaterials Science, Polymer Edition, vol.13, issue.2, pp.125-144, 2004.
DOI : 10.1163/156856204322793539

L. E. Bromberg and E. S. Ron, Temperature-responsive gels and thermogelling polymer matrices for protein and peptide delivery, Advanced Drug Delivery Reviews, vol.31, issue.3, pp.197-221, 1998.
DOI : 10.1016/S0169-409X(97)00121-X

T. D. Gibson, B. L. Pierce, J. N. Hulbert, and S. Gillespie, Improvements In The Stability Characteristics Of Biosensors Using Protein-polyelectrolyte Complexes, Proceedings of the International Solid-State Sensors and Actuators Conference, TRANSDUCERS '95, pp.13-18, 1996.
DOI : 10.1109/SENSOR.1995.717240

N. A. Chaniotakis, Enzyme stabilization strategies based on electrolytes and polyelectrolytes for biosensor applications, Analytical and Bioanalytical Chemistry, vol.378, issue.1, pp.89-95, 2004.
DOI : 10.1007/s00216-003-2188-3

A. Yu and F. Caruso, Thin Films of Polyelectrolyte-Encapsulated Catalase Microcrystals for Biosensing, Analytical Chemistry, vol.75, issue.13, pp.3031-3037, 2003.
DOI : 10.1021/ac0340049

F. Caruso, H. Fiedler, and K. Haage, Assembly of ??-glucosidase multilayers on spherical colloidal particles and their use as active catalysts, Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol.169, issue.1-3, pp.287-293, 2000.
DOI : 10.1016/S0927-7757(00)00443-X

V. A. Izumrudov, I. Y. Galaev, and B. Mattiasson, Polycomplexes-potential for bioseparation, Bioseparation, vol.7, issue.4/5, pp.207-220, 1998.
DOI : 10.1023/A:1008007818765

M. B. Dainiak, V. I. Muronetz, V. A. Izumrudov, I. Y. Galaev, and B. Mattiasson, Production of Fab Fragments of Monoclonal Antibodies Using Polyelectrolyte Complexes, Analytical Biochemistry, vol.277, issue.1, pp.58-66, 2000.
DOI : 10.1006/abio.1999.4367

P. Lindner, Neutron, x-ray and lignt scattering applied to soft condensed matter, p.23, 2002.

J. P. Cotton, Small-angle neutron scattering : Introduction and variations on contrast, Journal De Physique Iv, vol.9, issue.P1, pp.21-49, 1999.

J. Combet, F. Isel, M. Rawiso, and F. Boue, Scattering Functions of Flexible Polyelectrolytes in the Presence of Mixed Valence Counterions:?? Condensation and Scaling, Macromolecules, vol.38, issue.17, pp.387456-7469, 2005.
DOI : 10.1021/ma0479722

D. Russo, D. Durand, M. Desmadril, and P. Calmettes, Study of thermally and chemically unfolded conformations of a small ß-protein by means of small-angle neutron scattering, Physica B, pp.276-278520, 2000.

P. Calmettes, D. Durand, M. Desmadril, P. Minard, V. Receveur et al., How random is a highly denatured protein?, Biophysical Chemistry, vol.53, issue.1-2, pp.105-113, 1994.
DOI : 10.1016/0301-4622(94)00081-6

J. H. Hone, A. M. Howe, and T. Cosgrove, A Small-Angle Neutron Scattering Study of the Structure of Gelatin/Polyelectrolyte Complexes, Macromolecules, vol.33, issue.4, pp.1206-1212, 2000.
DOI : 10.1021/ma9911750

A. Stenstam, A. Khan, and H. Wennerström, The Lysozyme???Dodecyl Sulfate System. An Example of Protein???Surfactant Aggregation, Langmuir, vol.17, issue.24, pp.7513-7520, 2001.
DOI : 10.1021/la011096t

O. N. Ivinova, V. A. Izumrudov, V. I. Muronetz, I. Y. Galaev, and B. Mattiasson, Influence of Complexing Polyanions on the Thermostability of Basic Proteins, Macromolecular Bioscience, vol.3, issue.34, pp.3-4210, 2003.
DOI : 10.1002/mabi.200390024

M. N. Spiteri, F. Boué, A. Lapp, and J. P. Cotton, Persistence length for a pssna polyion in semidilute solution as a function of the ionic strength. Physical review letters, pp.775218-5220, 1996.

E. Dubois and F. Boue, Conformation of Poly(styrenesulfonate) Polyions in the Presence of Multivalent Ions:?? Small-Angle Neutron Scattering Experiments, Macromolecules, vol.34, issue.11, pp.3684-3697, 2001.
DOI : 10.1021/ma000956u

D. Stauffer, A. Coniglio, and M. Adam, Gelation and critical phenomena, Adv. Polymer Sci, vol.44, p.103, 1982.
DOI : 10.1007/3-540-11471-8_4

K. P. Wilson, B. A. Malcolmgll, and B. W. Matthews, Structural and thermodynamic analysis of compensating mutations within the core of chicken egg white lysozyme, J

O. Kratky and G. Porod, R??ntgenuntersuchung gel??ster Fadenmolek??le, Recueil des Travaux Chimiques des Pays-Bas, vol.26, issue.12, pp.1106-1123, 1949.
DOI : 10.1002/recl.19490681203

P. Sharp and V. A. Bloomfield, Light scattering from wormlike chains with excluded volume effects, Biopolymers, vol.18, issue.8, pp.1201-1211, 1968.
DOI : 10.1002/bip.1968.360060814

J. Cloizeaux, Form Factor of an Infinite Kratky-Porod Chain, Macromolecules, vol.6, issue.3, p.403, 1973.
DOI : 10.1021/ma60033a017

A. Brûlet, F. Boué, and J. P. Cotton, About the experimental determination of the persistence length of wormfike chains of polystyrene, J. Phys. II, vol.6, issue.6, pp.885-891, 1996.

M. Y. Lin, H. M. Lindsay, D. A. Weitz, R. C. Ball, R. Klein et al., Universal reaction-limited colloid aggregation, Physical Review A, vol.41, issue.4, pp.2005-2020, 1990.
DOI : 10.1103/PhysRevA.41.2005

M. Y. Lin, H. M. Lindsay, D. A. Weitz, R. Klein, R. C. Ball et al., Universal diffusion-limited colloid aggregation Polyelectrolyte solutions : Intrachain and interchain correlations observed by sans, J. Phys. : Condens. Matter Journal of Polymer Science : Polymer Letters Edition, vol.2, issue.176, pp.3093-3113379, 1979.

B. Cabane, Growth : a brief guide for the use of scattering techniques. Neutron, X-Ray and Light Scattering, p.247, 1991.

G. S. Manning, Limiting Laws and Counterion Condensation in Polyelectrolyte Solutions I. Colligative Properties, The Journal of Chemical Physics, vol.51, issue.3, pp.924-938, 1969.
DOI : 10.1063/1.1672157

S. Rosenfeldt, A. Wittemann, M. Ballauff, E. Breininger, J. Bolze et al., Interaction of proteins with spherical polyelectrolyte brushes in solution as studied by small-angle x-ray scattering, Physical Review E, vol.70, issue.6, p.61403, 2004.
DOI : 10.1103/PhysRevE.70.061403

D. Fenistein, L. Barré, D. Broseta, D. Espinat, A. Livet et al., Viscosimetric and Neutron Scattering Study of Asphaltene Aggregates in Mixed Toluene/Heptane Solvents, Langmuir, vol.14, issue.5, pp.1013-1020, 1998.
DOI : 10.1021/la9709148

URL : https://hal.archives-ouvertes.fr/hal-00354700

M. Kallala, R. Jullien, and B. Cabane, Crossover from gelation to precipitation, Journal de Physique II, vol.2, issue.1, pp.7-25, 1992.
DOI : 10.1051/jp2:1992110

URL : https://hal.archives-ouvertes.fr/jpa-00247613

D. A. Weitz, J. S. Huang, M. Y. Lin, and J. Sung, Limits of the fractal dimension for irreversible kinetic aggregation of gold colloids. Physical review letters, pp.1416-1419, 1985.

D. Baigl, M. Sferrazza, and C. E. Williams, On the pearl size of hydrophobic polyelectrolytes, Europhysics Letters (EPL), vol.62, issue.1, pp.110-116, 2003.
DOI : 10.1209/epl/i2003-00369-6

URL : https://hal.archives-ouvertes.fr/hal-00012743

B. V. Derjaguin and L. Landau, Theory of the stability of strongly charged lyophobic sols and of the adhesion of strongly charged particles in solutions of electrolytes, Progress in Surface Science, vol.43, issue.1-4, pp.633-662, 1941.
DOI : 10.1016/0079-6816(93)90013-L

E. J. Verwey and J. T. Overbeek, Theory of the stability of lyophobic colloids, 1948.

J. Israelachvili, Intermolecular and surface forces. Academic press, 1992.

M. Ries-kautt and A. Ducruix, Relative effectiveness of various ions on the solubility and crystal growth of lysozyme, J. Biol. Chem, vol.264, issue.2, pp.745-748, 1989.

P. Schwinte, V. Ball, B. Szalontai, Y. Haikel, J. C. Voegel et al., Secondary Structure of Proteins Adsorbed onto or Embedded in Polyelectrolyte Multilayers, Biomacromolecules, vol.3, issue.6, pp.1135-1143, 2002.
DOI : 10.1021/bm025547f

L. Huizhou, Y. Weijing, and C. Jiayong, Effects of surfactants on emulsification and secondary structure of lysozyme in aqueous solutions, Biochemical Engineering Journal, vol.2, issue.3, pp.187-196, 1998.
DOI : 10.1016/S1369-703X(98)00031-X

M. D. Lad, V. M. Ledger, B. Briggs, R. J. Green, and R. A. Frazier, Analysis of the SDS???Lysozyme Binding Isotherm, Langmuir, vol.19, issue.12, pp.5098-5103, 2003.
DOI : 10.1021/la0269560

I. Schmidt, Structures et propriétés tensioactives des assemblages complexes protéines basiques / pectines, Thèse de doctorat Université Nantes, 2004.

P. G. Vekilov, L. A. Monaco, B. R. Thomas, V. Stojanoff, and F. Rosenberger, Repartitioning of NaCl and Protein Impurities in Lysozyme Crystallization, Acta Crystallographica Section D Biological Crystallography, vol.52, issue.4, pp.785-798, 1996.
DOI : 10.1107/S0907444996003265

W. Essafi, Structure des polyélectrolytes fortement chargés, Thèse de doctorat, 1996.