J. Guespin-michel, Les bactéries, leur monde et nous -Vers une biologie intégrative et dynamique: Vers une biologie intégrative et dynamique. Dunod, 2011.

L. M. Sherwood, J. M. Willey, C. J. Woolverton, and M. , , 2010.

H. J. Klasen, Historical review of the use of silver in the treatment of burns. I. Early uses, Burns, vol.26, issue.2, pp.117-130, 2000.

H. J. Klasen, A historical review of the use of silver in the treatment of burns. II. Renewed interest for silver, Burns, vol.26, issue.2, pp.131-138, 2000.

S. Silver, L. T. Phung, and G. Silver, Silver as biocides in burn and wound dressings and bacterial resistance to silver compounds, J. Ind. Microbiol. Biotechnol, vol.33, issue.7, pp.627-634, 2006.

Q. L. Feng, J. Wu, G. Q. Chen, F. Z. Cui, T. N. Kim et al., A mechanistic study of the antibacterial effect of silver ions on Escherichia coli and Staphylococcus aureus

, J. Biomed. Mater. Res, vol.52, issue.4, pp.662-668, 2000.

W. K. Jung, H. C. Koo, K. W. Kim, S. Shin, S. H. Kim et al., Antibacterial Activity and Mechanism of Action of the Silver Ion in Staphylococcus aureus and Escherichia coli, Appl. Environ. Microbiol, vol.74, issue.7, pp.2171-2178, 2008.

S. Pal, Y. K. Tak, and J. M. Song, Does the Antibacterial Activity of Silver Nanoparticles Depend on the Shape of the Nanoparticle? A Study of the Gram-Negative Bacterium Escherichia coli, Appl. Environ. Microbiol, vol.73, issue.6, pp.1712-1720, 2007.

I. Sondi and B. Salopek-sondi, Silver nanoparticles as antimicrobial agent: a case study on E. coli as a model for Gram-negative bacteria, J. Colloid Interface Sci, vol.275, issue.1, pp.177-182, 2004.

S. Y. Liau, D. C. Read, W. J. Pugh, J. R. Furr, and A. D. Russell, Interaction of silver nitrate with readily identifiable groups: relationship to the antibacterialaction of silver ions

, Lett. Appl. Microbiol, vol.25, issue.4, pp.279-283, 1997.

P. Bragg and D. Rainnie, Effect of Silver Ions on Respiratory-Chain of Escherichia-Coli, Can. J. Microbiol, vol.20, issue.6, pp.883-889, 1974.

G. Mcdonnell and A. D. Russell, Antiseptics and Disinfectants: Activity, Action, and Resistance, Clin. Microbiol. Rev, vol.12, issue.1, pp.147-179, 1999.

M. Rai, A. Yadav, and A. Gade, Silver nanoparticles as a new generation of antimicrobials, Biotechnol. Adv, vol.27, issue.1, pp.76-83, 2009.

C. Carlson, S. M. Hussain, A. M. Schrand, L. K. Braydich-stolle, K. L. Hess et al.,

J. J. Jones and . Schlager, Unique Cellular Interaction of Silver Nanoparticles: Size-Dependent Generation of Reactive Oxygen Species, J. Phys. Chem. B, vol.112, issue.43, pp.13608-13619, 2008.

X. Yang, A. P. Gondikas, S. M. Marinakos, M. Auffan, J. Liu et al.,

. Meyer, Mechanism of Silver Nanoparticle Toxicity Is Dependent on Dissolved Silver and Surface Coating in Caenorhabditis elegans, Environ. Sci. Technol, vol.46, issue.2, pp.1119-1127, 2012.
URL : https://hal.archives-ouvertes.fr/hal-01426192

C. Marambio-jones and E. M. Hoek, A review of the antibacterial effects of silver nanomaterials and potential implications for human health and the environment, J. Nanoparticle Res, vol.12, issue.5, pp.1531-1551, 2010.

T. V. Duncan, Applications of nanotechnology in food packaging and food safety: Barrier materials, antimicrobials and sensors, J. Colloid Interface Sci, vol.363, issue.1, pp.1-24, 2011.

P. Appendini and J. H. Hotchkiss, Review of antimicrobial food packaging

, Food Sci. Emerg. Technol, vol.3, issue.2, pp.113-126, 2002.

M. Heydarpour, M. R. Zargar, and . Mozafari, Complete removal of pathogenic bacteria from drinking water using nano silver-coated cylindrical polypropylene filters, Clean Technol

, Environ. Policy, vol.13, issue.3, pp.499-507, 2010.

N. Maréchal, E. Quesnel, and Y. Pauleau, Silver thin films deposited by magnetron sputtering, Thin Solid Films, vol.241, issue.1-2, pp.34-38, 1994.

N. Radic, B. M. Obradovic, M. Kostic, B. Dojcinovic, M. M. Kuraica et al., Deposition of silver ions onto DBD and DCSBD plasma treated nonwoven polypropylene, Surf. Coat. Technol, vol.206, issue.23, pp.5006-5011, 2012.

V. Kumar, C. Jolivalt, J. Pulpytel, R. Jafari, and F. Arefi-khonsari, Development of silver nanoparticle loaded antibacterial polymer mesh using plasma polymerization process

, J. Biomed. Mater. Res. A, vol.101, issue.4, pp.1121-1132, 2013.

S. Saxena, A. R. Ray, A. Kapil, G. Pavon-djavid, D. Letourneur et al.,

. Meddahi-pellé, Development of a New Polypropylene-Based Suture: Plasma Grafting, Surface Treatment, Characterization, and Biocompatibility Studies, vol.11, pp.373-382, 2011.

A. Kumar, P. K. Vemula, P. M. Ajayan, and G. John, Silver-nanoparticle-embedded antimicrobial paints based on vegetable oil, Nat. Mater, vol.7, issue.3, pp.236-241, 2008.

Z. Iyigündo?du, S. Demirci, N. Baç, and F. ?ahin, Development of durable antimicrobial surfaces containing silver-and zinc-ion-exchanged zeolites, Turk. J. Biol, vol.38, pp.420-427, 2014.

C. Sarantopoulos, Photocatalyseurs à base de TIO2 préparés par infiltration chimique en phase vapeur (CVI) sur supports microfibreux, 2007.

A. Fujishima, T. N. Rao, and D. A. Tryk, Titanium dioxide photocatalysis, J. Photochem. Photobiol. C Photochem. Rev, vol.1, issue.1, pp.1-21, 2000.

K. Sunada, T. Watanabe, and K. Hashimoto, Studies on photokilling of bacteria on TiO2 thin film, J. Photochem. Photobiol. Chem, vol.156, issue.1-3, pp.227-233, 2003.

E. Kenawy, S. D. Worley, and R. Broughton, The Chemistry and Applications of

, Antimicrobial Polymers: A State-of-the-Art Review, Biomacromolecules, vol.8, issue.5, pp.1359-1384, 2007.

A. Munoz-bonilla and M. Fernandez-garcia, Polymeric materials with antimicrobial activity, Prog. Polym. Sci, vol.37, issue.2, pp.281-339, 2012.

H. B. Kocer, I. Cerkez, S. D. Worley, R. M. Broughton, and T. S. Huang, Polymeric Antimicrobial N-Halamine Epoxides, ACS Appl. Mater. Interfaces, vol.3, issue.8, pp.2845-2850, 2011.

V. P. Dhende, S. Samanta, D. M. Jones, I. R. Hardin, and J. Locklin, One-Step Photochemical Synthesis of Permanent, Nonleaching, Ultrathin Antimicrobial Coatings for Textiles and Plastics, ACS Appl. Mater. Interfaces, vol.3, issue.8, pp.2830-2837, 2012.

T. Ganz and R. I. Lehrer, Defensins, Pharmacol. Ther, vol.66, issue.2, pp.191-205, 1995.
URL : https://hal.archives-ouvertes.fr/hal-02458786

T. Ganz, Defensins: antimicrobial peptides of innate immunity, Nat. Rev. Immunol, vol.3, issue.9, pp.710-720, 2003.

A. Bahar and D. Ren, Antimicrobial Peptides, Pharmaceuticals, vol.6, issue.12, pp.1543-1575, 2013.

X. Zhao, H. Wu, H. Lu, G. Li, and Q. Huang, LAMP: A Database Linking Antimicrobial Peptides, PLoS ONE, vol.8, issue.6, 2013.

H. Jenssen, P. Hamill, and R. E. Hancock, Peptide Antimicrobial Agents, Clin

, Microbiol. Rev, vol.19, issue.3, pp.491-511, 2006.

J. B. Peravali, S. R. Kotra, K. Sobha, R. Nelson, K. V. Rajesh et al., Antimicrobial peptides, an effective alternative for antibiotic therapy

, Pharmacol. Rev, vol.2, issue.2, pp.27-55, 2003.

R. M. Epand and H. J. Vogel, Diversity of antimicrobial peptides and their mechanisms of action, Biochim. Biophys. Acta BBA-Biomembr, vol.1462, issue.1, pp.11-28, 1999.

J. S. Powers and R. E. ,

. Hancock, The relationship between peptide structure and antibacterial activity, vol.24, pp.1681-1691, 2003.

Y. Shai, Mode of action of membrane active antimicrobial peptides, Pept. Sci, vol.66, issue.4, pp.236-248, 2002.

K. A. Brogden, Antimicrobial peptides: Pore formers or metabolic inhibitors in bacteria ?, Nat. Rev. Microbiol, vol.3, pp.238-250, 2005.

K. Glinel, P. Thebault, V. Humblot, C. M. Pradier, and T. Jouenne, Antibacterial surfaces developed from bio-inspired approaches, Acta Biomater, issue.0, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00689996

H. Ulvatne, S. Karoliussen, T. Stiberg, Ø. Rekdal, and J. S. Svendsen, Short antibacterial peptides and erythromycin act synergically against Escherichia coli

, Antimicrob. Chemother, vol.48, issue.2, pp.203-208, 2001.

M. N. Melo, R. Ferre, and M. A. Castanho, Antimicrobial peptides: linking partition, activity and high membrane-bound concentrations, Nat. Rev. Microbiol, vol.7, issue.3, pp.245-250, 2009.

N. B. Russi, C. Bantar, and L. F. Calvinho, Antimicrobial susceptibility of Staphylococcus aureus causing bovine mastitis in Argentine dairy herds, Rev. Argent. Microbiol, vol.40, issue.2, pp.116-119, 2008.

E. Breukink and B. De-kruijff, The lantibiotic nisin, a special case or not?

, Biophys. Acta BBA-Biomembr, vol.1462, issue.1, pp.223-234, 1999.

R. A. Demel, T. Peelen, R. J. Siezen, B. Kruijff, and O. P. Kuipers, Nisin Z, mutant nisin Z and lacticin 481 interactions with anionic lipids correlate with antimicrobial activity, Eur. J. Biochem, vol.235, issue.1-2, pp.267-274, 1996.

E. A. Davies and J. Delves-broughton, Nisin, pp.191-198, 1999.

J. Delves-broughton, Nisin as a food preservative, Food Australia, vol.57, issue.12, pp.525-527, 2005.

J. Cleveland, T. J. Montville, I. F. Nes, and M. L. Chikindas, Bacteriocins: safe, natural antimicrobials for food preservation, Int. J. Food Microbiol, vol.71, pp.1-20, 2001.

S. Quintavalla and L. Vicini, staphylococcal effectiveness of nisaplin in refrigerated pizza doughs, Braz. Arch. Biol. Technol, vol.62, issue.3, pp.595-599, 2002.

D. M. Chipman and N. Sharon, Mechanism of Lysozyme Action, Science, vol.165, issue.3892, pp.454-465, 1969.

D. Nakimbugwe, B. Masschalck, M. Atanassova, A. Zewdiebosuner, and C. Michiels, Comparison of bactericidal activity of six lysozymes at atmospheric pressure and under high hydrostatic pressure, Int. J. Food Microbiol, 2006.

S. Yuan, D. Wan, B. Liang, S. O. Pehkonen, Y. P. Ting et al., Lysozyme-Coupled Poly(poly(ethylene glycol) methacrylate)?Stainless Steel Hybrids and Their Antifouling and Antibacterial Surfaces, Langmuir, vol.27, issue.6, pp.2761-2774, 2011.

J. N. Talbert and J. M. Goddard, Enzymes on material surfaces, Colloids Surf. B Biointerfaces, vol.93, issue.0, pp.8-19, 2012.

B. Kasemo and J. Gold, Implant Surfaces and Interface Processes, Adv. Dent. Res, vol.13, issue.1, pp.8-20, 1999.

F. Carlsson, E. Hyltner, T. Arnebrant, M. Malmsten, and P. Linse, Lysozyme Adsorption to Charged Surfaces. A Monte Carlo Study, J. Phys. Chem. B, vol.108, issue.28, pp.9871-9881, 2004.

R. E. Canfield, The Amino Acid Sequence of Egg White Lysozyme, J. Biol. Chem, vol.238, issue.8, pp.2698-2707, 1963.

L. J. Smith, M. J. Sutcliffe, C. Redfield, and C. M. Dobson, Structure of Hen Lysozyme in Solution, J. Mol. Biol, vol.229, issue.4, pp.930-944, 1993.

F. J. Van-de-ven and G. Jung, Structures of lantibiotics studied by NMR

, Antonie Van Leeuwenhoek Int. J. Gen. Mol. Microbiol, vol.69, issue.2, pp.99-107, 1996.

K. L. Prime and G. M. Whitesides, Self-Assembled Organic Monolayers: Model Systems for Studying Adsorption of Proteins at Surfaces, Science, vol.252, issue.5009, pp.1164-1167, 1991.

V. Humblot, J. Yala, P. Thebault, K. Boukerma, A. Héquet et al.,

M. Pradier, The antibacterial activity of Magainin I immobilized onto mixed thiols Self-Assembled Monolayers, Biomaterials, vol.30, issue.21, pp.3503-3512, 2009.

K. Glinel, A. M. Jonas, T. Jouenne, J. Leprince, L. Galas et al., Grafting of Lysozyme and/or Poly(ethylene glycol) to Prevent Biofilm Growth on Stainless Steel Surfaces, Bioconjug. Chem, vol.20, issue.1, pp.2101-2109, 2009.

A. Héquet, V. Humblot, J. Berjeaud, and C. Pradier, Optimized grafting of antimicrobial peptides on stainless steel surface and biofilm resistance tests, Colloids Surf. B Biointerfaces, vol.84, issue.2, pp.301-309, 2011.

N. Hadjesfandiari, K. Yu, Y. Mei, and J. N. Kizhakkedathu, Polymer brush-based approaches for the development of infection-resistant surfaces, J. Mater. Chem. B, vol.2, issue.31, p.4968, 2014.

D. Avnir, S. Braun, O. Lev, and M. Ottolenghi, Enzymes and other proteins entrapped in sol-gel materials, Chem. Mater, vol.6, issue.10, pp.1605-1614, 1994.

C. Zhou, P. Li, X. Qi, A. R. Sharif, Y. F. Poon et al.,

M. B. Leong and . Chan-park, A photopolymerized antimicrobial hydrogel coating derived from epsilon-poly-l-lysine, Biomaterials, vol.32, issue.11, pp.2704-2712, 2011.

C. Tendero, C. Tixier, P. Tristant, J. Desmaison, and P. Leprince, Atmospheric pressure plasmas: A review, Spectrochim. Acta Part B At. Spectrosc, vol.61, issue.1, pp.2-30, 2006.

F. Poncin-epaillard, J. Brosse, and T. Falher, Reactivity of surface groups formed onto a plasma treated poly(propylene) film, Macromol. Chem. Phys, vol.200, issue.5, pp.989-996, 1999.

N. V. Bhat and D. J. Upadhyay, Plasma-induced surface modification and adhesion enhancement of polypropylene surface, J. Appl. Polym. Sci, vol.86, issue.4, pp.925-936, 2002.

S. Bhatt, J. Pulpytel, G. Ceccone, P. Lisboa, F. Rossi et al., Nanostructure Protein Repellant Amphiphilic Copolymer Coatings with Optimized Surface Energy by Inductively Excited Low Pressure Plasma, vol.27, pp.14570-14580, 2011.

S. Bhatt, J. Pulpytel, M. Mirshahi, and F. Arefi-khonsari, Nano thick poly(?caprolactone)-poly(ethylene glycol) coatings developed by catalyst-free plasma assisted copolymerization process for biomedical applications, RSC Adv, vol.2, issue.24, pp.9114-9123, 2012.

T. O. Kääriäinen, S. Lehti, M. L. Kääriäinen, and D. C. Cameron, Surface modification of polymers by plasma-assisted atomic layer deposition, Surf. Coat. Technol, vol.205, issue.0, pp.475-479, 2011.

E. Jafari, F. Sutter, and . Arefi-khonsari, Control of the visible and UV light water splitting and photocatalysis of nitrogen doped TiO2 thin films deposited by reactive magnetron sputtering, Appl. Catal. B Environ, vol.144, pp.12-21, 2014.
URL : https://hal.archives-ouvertes.fr/hal-00863281

F. Arefi-khonsari, J. Kurdi, M. Tatoulian, and J. Amouroux, On plasma processing of polymers and the stability of the surface properties for enhanced adhesion to metals, Surf. Coat. Technol, vol.142, pp.437-448, 2001.

H. Drnovská, L. Lap?ík, V. Bur?íková, J. Zemek, and A. Barros-timmons, Surface properties of polyethylene after low-temperature plasma treatment, Colloid Polym. Sci, vol.281, issue.11, pp.1025-1033, 2003.

S. Veprek, Plasma-induced and plasma-assisted chemical vapour deposition, Thin Solid Films, vol.130, issue.1â?, pp.135-154, 1985.

U. Kogelschatz, Dielectric-Barrier Discharges: Their History, Discharge Physics, and Industrial Applications, vol.23, pp.1-46, 2003.

M. C. Bouzidi, Etude d'une Décharge à Barrière Diélectrique (DBD) homogène dans l'azote à pression atmosphérique : Effet mémoire et Optimisation du transfert de Puissance, Engineering Science, 2013.

E. Lecoq, Traitement préventif antifongique du pin maritime par post-décharge DBD à la pression atmosphérique et étude de l'action directe des post-décharges sur les champignons de bleuissement du bois, 2009.

M. Laroussi and T. Akan, Arc-Free Atmospheric Pressure Cold Plasma Jets: A Review, Plasma Process. Polym, vol.4, issue.9, pp.777-788, 2007.

S. Bhatt, J. Pulpytel, S. Mori, M. Mirshahi, and F. Arefi-khonsari, Cell Repellent Coatings Developed by an Open Air Atmospheric Pressure Non-Equilibrium Argon Plasma Jet for Biomedical Applications, vol.11, pp.24-36, 2014.

J. L. Walsh and M. G. Kong, Contrasting characteristics of linear-field and crossfield atmospheric plasma jets, Appl. Phys. Lett, vol.93, issue.11, p.111501, 2008.

D. B. Salem, J. Pulpytel, F. Pillier, A. Pailleret, and F. Arefi-khonsari, Amorphization and Polymorphism Modification of Polyamide-6 Films via Open-Air Non-Equilibrium Atmospheric Pressure Plasma Jet Treatment, Plasma Process. Polym, vol.11, issue.10, pp.961-973, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01084065

D. P. Dowling, F. T. O'neill, V. Milosavljevic, and V. J. Law, DC Pulsed Atmospheric-Pressure Plasma Jet Image Information, IEEE Trans. Plasma Sci, vol.39, issue.11, pp.2326-2327, 2011.

R. Dorai and M. J. Kushner, A model for plasma modification of polypropylene using atmospheric pressure discharges, J. Phys. Appl. Phys, vol.36, issue.6, p.666, 2003.

N. Encinas, B. Dãaz-benito, J. Abenojar, and M. A. Martãnez, Extreme durability of wettability changes on polyolefin surfaces by atmospheric pressure plasma torch, Surf. Coat. Technol, vol.205, issue.2, pp.396-402, 2010.

N. Encinas, J. Abenojar, and M. A. Martãnez, Development of improved polypropylene adhesive bonding by abrasion and atmospheric plasma surface modifications, Int. J. Adhes. Adhes, vol.33, issue.0, pp.1-6, 2011.

N. Cui and N. M. Brown, Modification of the surface properties of a polypropylene (PP) film using an air dielectric barrier discharge plasma, Appl. Surf. Sci, vol.189, issue.1, pp.31-38, 2002.

Y. Akishev, M. Grushin, N. Dyatko, I. Kochetov, A. Napartovich et al.,

S. Duc and . Descours, Studies on cold plasma-polymer surface interaction by example of PP-and PET-films, J. Phys. Appl. Phys, vol.41, issue.23, p.235203, 2008.

A. Sarani, A. Y. Nikiforov, N. De, R. Geyter, C. Morent et al., Surface modification of polypropylene with an atmospheric pressure plasma jet sustained in argon and an argon/water vapour mixture, Appl. Surf. Sci, vol.257, issue.20, pp.8737-8741, 2011.

V. Fombuena, J. Balart, T. Boronat, L. Sánchez-nácher, and D. Garcia-sanoguera, Improving mechanical performance of thermoplastic adhesion joints by atmospheric plasma, Mater. Des, vol.47, pp.49-56, 2013.

F. Poncin-epaillard, J. C. Brosse, and T. Falher, Cold plasma treatment: Surface or bulk modification of polymer films?, Macromolecules, vol.30, issue.15, pp.4415-4420, 1997.

O. Carton, D. B. Salem, S. Bhatt, J. Pulpytel, and F. Arefi-khonsari, Plasma Polymerization of Acrylic Acid by Atmospheric Pressure Nitrogen Plasma Jet for Biomedical Applications, vol.9, pp.984-993, 2012.

Z. Liu, S. Tingry, C. Innocent, J. Durand, Z. Xu et al., Modification of microfiltration polypropylene membranes by allylamine plasma treatment: Influence of the attachment route on peroxidase immobilization and enzyme efficiency, Enzyme Microb

, Technol, vol.39, issue.4, pp.868-876, 2006.

G. T. Hermanson, Bioconjugate Techniques, 2013.

B. Johnsson, S. Löfas, and G. Lindquist, Immobilization of Proteins to a Carboxymethyldextran-Modified Gold Surface for Biospecific Interaction Analysis in Surface Plasmon Resonance Sensors, Anal. Biochem, issue.198, pp.268-277, 1991.

S. Sam, L. Touahir, J. S. Andresa, P. Allongue, J. N. Chazalviel et al., Semiquantitative study of the EDC/NHS activation of acid terminal groups at modified porous silicon surfaces, Langmuir, vol.26, issue.2, pp.809-814, 2009.

Y. Yamamoto, Y. Nagasaki, M. Kato, and K. Kataoka, Surface charge modulation of poly(ethylene glycol)-poly(d,l-lactide) block copolymer micelles: conjugation of charged peptides, Colloids Surf. B Biointerfaces, vol.16, issue.1-4, pp.135-146, 1999.

M. Bagheri, M. Beyermann, and M. Dathe, Immobilization Reduces the Activity of Surface-Bound Cationic Antimicrobial Peptides with No Influence upon the Activity Spectrum, Antimicrob. Agents Chemother, vol.53, issue.3, pp.1132-1141, 2009.

A. Abbas, D. Vercaigne-marko, P. Supiot, B. Bocquet, C. Vivien et al., Covalent attachment of trypsin on plasma polymerized allylamine, Colloids Surf. B Biointerfaces, vol.73, issue.2, pp.315-324, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00471813

C. Vreuls, G. Zocchi, B. Thierry, G. Garitte, S. S. Griesser et al.,

J. Weerdt, H. Martial, and . Griesser, Prevention of bacterial biofilms by covalent immobilization of peptides onto plasma polymer functionalized substrates, J. Mater. Chem, vol.20, issue.37, pp.8092-8098, 2010.

D. Duday, C. Vreuls, M. Moreno, G. Frache, N. D. Boscher et al.,

C. Archambeau, J. Van-de-weerdt, P. Martial, and . Choquet, Atmospheric pressure plasma modified surfaces for immobilization of antimicrobial nisin peptides, Surf. Coat. Technol, vol.218, pp.152-161, 2013.

, on the approximation of the laws of the Member States relating to cosmetic products -Amended on 01, Official Journal of the European Communities, 1976.

H. C. Neu, The Crisis in Antibiotic Resistance, Science, vol.257, issue.5073, pp.1064-1073, 1992.

P. S. Stewart and J. William-costerton, Antibiotic resistance of bacteria in biofilms, The Lancet, vol.358, issue.9276, pp.135-138, 2001.

S. P. Yazdankhah, A. A. Scheie, E. A. Høiby, B. Lunestad, E. Heir et al., Triclosan and Antimicrobial Resistance in Bacteria: An Overview, Microb. Drug Resist, vol.12, issue.2, pp.83-90, 2006.

S. Degoutin, M. Jimenez, M. Casetta, S. Bellayer, F. Chai et al., Anticoagulant and antimicrobial finishing of nonwoven polypropylene textiles, Biomed. Mater, vol.7, issue.3, p.35001, 2012.

D. Nithyakalyani, T. Ramachandran, R. Rajendran, M. Mahalakshmi, and R. ,

D. P. Dowling, F. T. O'neill, V. Milosavljevic, and V. J. Law, DC Pulsed Atmospheric-Pressure Plasma Jet Image Information, IEEE Trans. Plasma Sci, vol.39, issue.11, pp.2326-2327, 2011.

B. Twomey, A. Nindrayog, K. Niemi, W. G. Graham, and D. P. Dowling, Correlation Between the Electrical and Optical Properties of an Atmospheric Pressure Plasma During Siloxane Coating Deposition, Plasma Chem. Plasma Process, vol.31, issue.1, pp.139-156, 2011.

D. B. Salem, J. Pulpytel, F. Pillier, A. Pailleret, and F. Arefi-khonsari, Amorphization and Polymorphism Modification of Polyamide-6 Films via Open-Air Non-Equilibrium Atmospheric Pressure Plasma Jet Treatment, Plasma Process. Polym, vol.11, issue.10, pp.961-973, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01084065

J. Pulpytel, V. Kumar, P. Peng, V. Micheli, N. Laidani et al., Deposition of Organosilicon Coatings by a Non-Equilibrium Atmospheric Pressure Plasma Jet: Design, Analysis and Macroscopic Scaling Law of the Process, vol.8, pp.664-675, 2011.

S. Bhatt, J. Pulpytel, S. Mori, M. Mirshahi, and F. Arefi-khonsari, Cell Repellent Coatings Developed by an Open Air Atmospheric Pressure Non-Equilibrium Argon Plasma Jet for Biomedical Applications, vol.11, pp.24-36, 2014.

L. Brancaleon, M. P. Bamberg, T. Sakamaki, and N. Kollias, Attenuated Total Reflection-Fourier Transform Infrared Spectroscopy as a Possible Method to Investigate Biophysical Parameters of Stratum Corneum In Vivo, J. Invest. Dermatol, vol.116, issue.3, pp.380-386, 2001.

J. P. Luongo, Infrared study of polypropylene, J. Appl. Polym. Sci, vol.3, issue.9, pp.302-309, 1960.

N. V. Bhat and D. J. Upadhyay, Plasma-induced surface modification and adhesion enhancement of polypropylene surface, J. Appl. Polym. Sci, vol.86, issue.4, pp.925-936, 2002.

G. Dana, Constantes des spectres infrarouges, Techniques de l'ingénieur, p.1010, 1999.

N. Encinas, J. Abenojar, and M. A. Martãnez, Development of improved polypropylene adhesive bonding by abrasion and atmospheric plasma surface modifications, Int. J. Adhes. Adhes, vol.33, issue.0, pp.1-6, 2011.

O. Carton, D. B. Salem, S. Bhatt, J. Pulpytel, and F. Arefi-khonsari, Plasma Polymerization of Acrylic Acid by Atmospheric Pressure Nitrogen Plasma Jet for Biomedical Applications, vol.9, pp.984-993, 2012.

K. Wang, W. Wang, D. Yang, Y. Huo, and D. Wang, Surface modification of polypropylene non-woven fabric using atmospheric nitrogen dielectric barrier discharge plasma, Appl. Surf. Sci, vol.256, issue.22, pp.6859-6864, 2010.

F. Arefi-khonsari, M. Tatoulian, -. Wiley, R. Weinheim, P. D'agostino et al., Plasma Processing of Polymers by a Low-Frequency Discharge with Asymmetrical Configuration of Electrodes, Advanced Plasma Technology

R. Dorai and M. J. Kushner, A model for plasma modification of polypropylene using atmospheric pressure discharges, J. Phys. Appl. Phys, vol.36, issue.6, p.666, 2003.

P. J. Morris, Polymer Pioneers: A Popular History of the Science and Technology of Large Molecules, Chemical Heritage Foundation, 2005.

F. Poncin-epaillard, J. C. Brosse, and T. Falher, Cold plasma treatment: Surface or bulk modification of polymer films?, Macromolecules, vol.30, issue.15, pp.4415-4420, 1997.

H. Miyata, S. Konishi, T. Ohno, and F. Hatayama, FTIR studies of adsorption of NO, NO2 and N2O on layered V2O5/ZrO2, J Chem Soc Faraday Trans, vol.91, issue.10, pp.1557-1562, 1995.

J. Baltrusaitis, Experimental and Theoretical Studies of the Adsorption of Atmospherically Relevant Gases on Metal Oxide and Carbonate Surfaces. ProQuest, 2007.

D. Briggs and G. Beamson, Primary and secondary oxygen-induced C1s binding energy shifts in x-ray photoelectron spectroscopy of polymers, Anal. Chem, vol.64, issue.15, pp.1729-1736, 1992.

Y. Lei, K. Ng, L. Weng, C. Chan, and L. Li, XPS C 1s binding energies for fluorocarbon-hydrocarbon microblock copolymers, Surf. Interface Anal, vol.35, issue.10, pp.852-855, 2003.

C. D. Wagner, A. V. Naumkin, A. Kraut-vass, W. Allison, C. J. Powell et al., The NIST X-Ray Photoelectron Spectroscopy (XPS) Database

E. P. Ivanova, J. P. Wright, D. K. Pham, N. Brack, P. Pigram et al.,

D. V. Demyashev and . Nicolau, A comparative study between the adsorption and covalent binding of human immunoglobulin and lysozyme on surface-modified poly(tert-butyl methacrylate), Biomed. Mater, vol.1, issue.1, p.24, 2006.

M. Ghasemi, Immobilisation de la trypsine sur un support de polyéthylène fonctionnalisé par voie plasma, 2007.

A. Caro, V. Humblot, C. Méthivier, M. Minier, M. Salmain et al., Grafting of Lysozyme and/or Poly(ethylene glycol) to Prevent Biofilm Growth on Stainless Steel Surfaces, J. Phys. Chem. B, vol.113, issue.7, pp.2101-2109, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00376076

D. Duday, C. Vreuls, M. Moreno, G. Frache, N. D. Boscher et al.,

C. Archambeau, J. Van-de-weerdt, P. Martial, and . Choquet, Atmospheric pressure plasma modified surfaces for immobilization of antimicrobial nisin peptides, Surf. Coat. Technol, vol.218, pp.152-161, 2013.

J. Baltrusaitis, P. M. Jayaweera, and V. H. Grassian, XPS study of nitrogen dioxide adsorption on metal oxide particle surfaces under different environmental conditions

, Chem. Chem. Phys, vol.11, issue.37, pp.8295-8305, 2009.

D. Briggs and G. Beamson, XPS studies of the oxygen 1s and 2s levels in a wide range of functional polymers, Anal. Chem, vol.65, issue.11, pp.1517-1523, 1993.

H. J. Kim, I. Bae, S. Cho, J. Boo, B. Lee et al., Synthesis and characteristics of NH2-functionalized polymer films to align and immobilize DNA molecules, Nanoscale Res. Lett, vol.7, issue.1, p.30, 2012.

G. T. Hermanson, Bioconjugate Techniques, 2013.

T. P. King, S. W. Zhao, and T. Lam, Preparation of protein conjugates via intermolecular hydrazone linkage, Biochemistry (Mosc.), vol.25, issue.19, pp.5774-5779, 1986.

S. Raddatz, J. Mueller-ibeler, J. Kluge, L. Wäß, G. Burdinski et al.,

D. Onofrey, M. Wang, and . Schweitzer, Hydrazide oligonucleotides: new chemical modification for chip array attachment and conjugation, Nucleic Acids Res, vol.30, issue.21, pp.4793-4802, 2002.

J. Heldt, N. Fischer-durand, M. Salmain, A. Vessières, and G. Jaouen, The Use of Glycidol to Introduce Aldehyde Functions Into Proteins -Application to the Fluorescent Labelling of Bovine Serum Albumin and Avidin, Eur. J. Org. Chem, vol.2007, issue.32, pp.5429-5433, 2007.
URL : https://hal.archives-ouvertes.fr/hal-02860497

L. E. Pimentel-real, A. M. Ferraria, A. M. Botelho, and . Rego, The influence of weathering conditions on the properties of poly(vinyl chloride) for outdoor applications. An analytical study using surface analysis techniques, Polym. Test, vol.26, issue.1, pp.77-87, 2007.

D. J. Balazs, K. Triandafillu, Y. Chevolot, B. Aronsson, H. Harms et al.,

M. Dash, F. Chiellini, R. M. Ottenbrite, and E. Chiellini, Chitosan: A versatile semisynthetic polymer in biomedical applications, Prog. Polym. Sci, vol.36, issue.8, pp.981-1014, 2011.

S. Degoutin, M. Jimenez, F. Chai, T. Pinalie, S. Bellayer et al., Simultaneous immobilization of heparin and gentamicin on polypropylene textiles: A dual therapeutic activity, J. Biomed. Mater. Res. A, vol.102, issue.11, pp.3846-3854, 2014.

E. P. Ivanova, J. P. Wright, D. K. Pham, N. Brack, P. Pigram et al.,

D. V. Demyashev and . Nicolau, A comparative study between the adsorption and covalent binding of human immunoglobulin and lysozyme on surface-modified poly(tert-butyl methacrylate), Biomed. Mater, vol.1, issue.1, p.24, 2006.

M. Yoshinari, T. Kato, K. Matsuzaka, T. Hayakawa, T. Inoue et al.,

M. Shimono, Adsorption behavior of antimicrobial peptide histatin 5 on PMMA, J. Biomed

, Mater. Res. B Appl. Biomater, vol.77, issue.1, pp.47-54, 2006.

D. V. Vezenov, A. Noy, L. F. Rozsnyai, and C. M. Lieber, Force titrations and ionization state sensitive imaging of functional groups in aqueous solutions by chemical force microscopy, J. Am. Chem. Soc, vol.119, issue.8, 1997.

A. Baltazar-y-jimenez and A. Bismarck, Surface modification of lignocellulosic fibres in atmospheric air pressure plasma, Green Chem, vol.9, issue.10, pp.1057-1066, 2007.

M. García-vargas, C. González-chomón, B. Magariños, A. Concheiro, C. Alvarez et al.,

E. Lorenzo and . Bucio, Acrylic polymer-grafted polypropylene sutures for covalent immobilization or reversible adsorption of vancomycin, Int. J. Pharm, vol.461, issue.1-2, pp.286-295, 2014.

F. Carlsson, P. Linse, and M. Malmsten,

, Polyelectrolyte?Protein Complexation, J. Phys. Chem. B, vol.105, issue.38, pp.9040-9049, 2001.

N. Nakajima and Y. Ikada, Mechanism of amide formation by carbodiimide for bioconjugation in aqueous media, Bioconjug. Chem, vol.6, issue.1, pp.123-130, 1995.

F. Carlsson, E. Hyltner, T. Arnebrant, M. Malmsten, and P. Linse, Lysozyme Adsorption to Charged Surfaces. A Monte Carlo Study, J. Phys. Chem. B, vol.108, issue.28, pp.9871-9881, 2004.

S. Sam, L. Touahir, J. S. Andresa, P. Allongue, J. N. Chazalviel et al., Semiquantitative study of the EDC/NHS activation of acid terminal groups at modified porous silicon surfaces, Langmuir, vol.26, issue.2, pp.809-814, 2009.

M. Mizuguchi, M. Nara, Y. Ke, K. Kawano, T. Hiraoki et al., Fourier-Transform Infrared Spectroscopic Studies on the Coordination of the Side-Chain COO? Groups to Ca2+ in Equine Lysozyme, Eur. J. Biochem, vol.250, issue.1, pp.72-76, 1997.

D. Duday, C. Vreuls, M. Moreno, G. Frache, N. D. Boscher et al.,

C. Archambeau, J. Van-de-weerdt, P. Martial, and . Choquet, Atmospheric pressure plasma modified surfaces for immobilization of antimicrobial nisin peptides, Surf. Coat. Technol, vol.218, pp.152-161, 2013.

A. Caro, V. Humblot, C. Méthivier, M. Minier, M. Salmain et al., Grafting of Lysozyme and/or Poly(ethylene glycol) to Prevent Biofilm Growth on Stainless Steel Surfaces, J. Phys. Chem. B, vol.113, issue.7, pp.2101-2109, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00376076

M. Liang, L. Wang, X. Liu, W. Qi, R. Su et al., Cross-linked lysozyme crystal templated synthesis of Au nanoparticles as high-performance recyclable catalysts, Nanotechnology, vol.24, issue.24, p.245601, 2013.

M. Ghasemi, Immobilisation de la trypsine sur un support de polyéthylène fonctionnalisé par voie plasma, 2007.

B. Johnsson, S. Löfas, and G. Lindquist, Immobilization of Proteins to a Carboxymethyldextran-Modified Gold Surface for Biospecific Interaction Analysis in Surface Plasmon Resonance Sensors, Anal. Biochem, issue.198, pp.268-277, 1991.

L. Guo, C. Campagne, A. Perwuelz, and F. Leroux, Zeta Potential and Surface Physico-chemical Properties of Atmospheric Air-plasma-treated Polyester Fabrics, Text. Res. J, vol.79, issue.15, pp.1371-1377, 2009.

P. Slepi?ka, A. Vasina, Z. Kolská, T. Luxbacher, P. Malinský et al.,

. ?vor?ík, Argon plasma irradiation of polypropylene, Nucl. Instrum. Methods Phys. Res. Sect. B Beam Interact. Mater. At, vol.268, issue.11-12, pp.2111-2114, 2010.

A. ?ezní?ková, Z. Kolská, V. Hnatowicz, P. Stopka, and V. ?vor?ík, Comparison of glow argon plasma-induced surface changes of thermoplastic polymers, Nucl. Instrum

, Methods Phys. Res. Sect. B Beam Interact. Mater. At, vol.269, issue.2, pp.83-88, 2011.

P. J. Blackshear, 12] Systems for polyacrylamide gel electrophoresis, Methods in Enzymology, vol.104, pp.237-255, 1984.

T. Radetic, Fundamentals of Scanning Electron Microscopy and Energy Dispersive X-ray Analysis in SEM and TEM, 2011.

J. Zhang, Q. Chi, S. Dong, and E. Wang, Ordered arrays of myoglobin adsorbed on the surfactant modified surface by scanning tunneling microscopy, Surf. Sci, vol.321, issue.3, pp.195-201, 1994.

A. Abbas, D. Vercaigne-marko, P. Supiot, B. Bocquet, C. Vivien et al., Covalent attachment of trypsin on plasma polymerized allylamine, Colloids Surf. B Biointerfaces, vol.73, issue.2, pp.315-324, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00471813

P. J. Potts, Electron probe microanalysis, A Handbook of Silicate Rock Analysis, pp.326-382, 1992.

A. Bera, S. Herbert, A. Jakob, W. Vollmer, and F. Götz, Why are pathogenic staphylococci so lysozyme resistant? The peptidoglycan O-acetyltransferase OatA is the major determinant for lysozyme resistance of Staphylococcus aureus, Mol. Microbiol, vol.55, issue.3, pp.778-787, 2005.

A. Bera, R. Biswas, S. Herbert, E. Kulauzovic, C. Weidenmaier et al.,

. Götz, Influence of Wall Teichoic Acid on Lysozyme Resistance in Staphylococcus aureus, J. Bacteriol, vol.189, issue.1, pp.280-283, 2007.

D. Nakimbugwe, B. Masschalck, M. Atanassova, A. Zewdiebosuner, and C. Michiels, Comparison of bactericidal activity of six lysozymes at atmospheric pressure and under high hydrostatic pressure, Int. J. Food Microbiol, 2006.

S. Yuan, D. Wan, B. Liang, S. O. Pehkonen, Y. P. Ting et al., Lysozyme-Coupled Poly(poly(ethylene glycol) methacrylate)?Stainless Steel Hybrids and Their Antifouling and Antibacterial Surfaces, Langmuir, vol.27, issue.6, pp.2761-2774, 2011.

, ? Vérification de l'hypothèse de la contamination de la surface : évaluer l'activité antibactérienne des échantillons vieillis, après les avoir lavés à l'éthanol par exemple ? Evaluation de l'activité des échantillons sur d'autres souches bactériennes ? Fonctionnalisation des échantillons avec d'autres (poly)peptides antibactériens ? Fonctionnalisation des échantillons avec des molécules

. Références,

V. K. Zaidel, Tables of Spectrum Lines, 1961.

R. W. Pearse and A. G. Gaydon, The identification of molecular spectra, 1963.

D. B. Salem, J. Pulpytel, F. Pillier, A. Pailleret, and F. Arefi-khonsari, Amorphization and Polymorphism Modification of Polyamide-6 Films via Open-Air Non-Equilibrium Atmospheric Pressure Plasma Jet Treatment, Plasma Process. Polym, vol.11, issue.10, pp.961-973, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01084065

U. Lommatzsch, D. Pasedag, A. Baalmann, G. Ellinghorst, and H. Wagner, Atmospheric Pressure Plasma Jet Treatment of Polyethylene Surfaces for Adhesion Improvement, Plasma Process. Polym, vol.4, issue.S1, pp.1041-1045, 2007.

D. K. Owens and R. C. Wendt, Estimation of the surface free energy of polymers

, Appl. Polym. Sci, vol.13, issue.8, pp.1741-1747, 1969.

B. Humbert, J. Mevellec, J. Grausem, M. Dossot, and C. Carteret, Spectrométrie d'absorption dans l'infrarouge, Techniques de l'ingénieur, p.2850, 2012.

O. Carton, D. B. Salem, S. Bhatt, J. Pulpytel, and F. Arefi-khonsari, Plasma Polymerization of Acrylic Acid by Atmospheric Pressure Nitrogen Plasma Jet for Biomedical Applications, vol.9, pp.984-993, 2012.

C. S. Fadley, Basic Concepts of X-ray Photoelectron Spectroscopy, Electron Spectroscopy: Theory, Techniques and Applications, vol.2, 1978.

D. Briggs, Surface analysis of polymers by XPS and static SIMS, 1998.

M. Ghasemi, M. J. Minier, M. Tatoulian, M. M. Chehimi, and F. Arefi-khonsari, Ammonia Plasma Treated Polyethylene Films for Adsorption or Covalent Immobilization of Trypsin: Quantitative Correlation between X-ray Photoelectron Spectroscopy Data and Enzyme Activity, J. Phys. Chem. B, vol.115, issue.34, pp.10228-10238, 2011.

P. Cadman, G. Gossedge, and J. D. Scott, The determination of the photoelectron escape depths in polymers and other materials, J. Electron Spectrosc. Relat. Phenom, vol.13, issue.1, pp.1-6, 1978.

, Handbook of Pharmaceutical Analysis by HPLC

N. Maréchal, E. Quesnel, and Y. Pauleau, Silver thin films deposited by magnetron sputtering, Thin Solid Films, vol.241, issue.1-2, pp.34-38, 1994.

H. Fakhouri, J. Pulpytel, W. Smith, A. Zolfaghari, H. R. Mortaheb et al.,

E. Jafari, F. Sutter, and . Arefi-khonsari, Control of the visible and UV light water splitting and photocatalysis of nitrogen doped TiO2 thin films deposited by reactive magnetron sputtering, Appl. Catal. B Environ, vol.144, pp.12-21, 2014.
URL : https://hal.archives-ouvertes.fr/hal-00863281

H. Fakhouri, Thin film deposition of pure and doped TiO2 by RF magnetron sputtering for visible light photocatalytic and optoelectronic applications, 2011.
URL : https://hal.archives-ouvertes.fr/tel-00825830