, 300 MHz): ? (ppm) 9.60 (s, 1H), 7.43 (d, J=7.7 Hz, 2H)

3. Hz,

, White solid. 1 H NMR (CDCl 3 , 300 MHz): ? (ppm) 7.27 -7.42 (m, 4H)

, White solid. 1 H NMR (CDCl 3 , 300MHz): ? (ppm) 7.27 -7.42 (m, 4H), 6.97 -7.13 (m, 1H), vol.6

, Butyl cyclohexyl carbamate

, 300 MHz): ? (ppm) 6.95 (d, J = 7.3 Hz, 1H)

, World Medical Devices Market, 2007.

, Etude de marché sur dispositifs médicaux en France et l'international?, vol.12, pp.4-23

G. P. De-la-commission and A. , Management de la Q. et aspects généraux correspondants des D. M. A. et formation autour du marquage C. et des normes. Dispositifs médicaux: les chiffres en France. Qualitiso -Le Blog des Dispositifs Médicaux, 2015.

, Le marché français des dispositifs médicaux, 2016.

H. Park and K. Park, Pharm. Res, vol.13, issue.12, p.1770, 1996.

J. M. Anderson, A. Rodriguez, and D. T. Chang, Semin. Immunol, vol.20, issue.2, p.86, 2008.

N. Genetet and . Immunologie, , p.4, 2002.

J. M. Anderson, Annu. Rev. Mater. Res, vol.31, issue.1, p.81, 2001.

, Wikipedia, the free encyclopedia, 2016.

B. Kasemo and . Gold, J. Adv. Dent. Res, vol.13, 1999.

L. Tang, J. W. Eaton, and . Am, J. Clin. Pathol, vol.103, issue.4, p.466, 1995.

Y. Wu, F. I. Simonovsky, B. D. Ratner, and T. A. Horbett, Biomed. Mater. Res. A, vol.74, issue.4, p.722, 2005.

N. Kossovsky and C. J. Freiman, J. Biomater. Sci. Polym. Ed, vol.7, issue.2, p.101, 1996.

R. M. Cornelius, J. Macri, K. M. Cornelius, J. L. Brash, and . Langmuir, , p.12087, 2015.

R. M. Cornelius, J. Archambault, and J. L. Brash, Biomaterials, vol.23, issue.17, p.3583, 2002.

J. R. Keogh, M. F. Wolf, M. E. Overend, L. Tang, and J. W. Eaton, Biomaterials, vol.17, issue.20, 1987.

D. Cook, M. Crowther, M. Meade, C. Rabbat, L. Griffith et al., Crit. Care Med, vol.33, issue.7, p.1565, 2005.

M. Bonizzoli, S. Batacchi, G. Cianchi, G. Zagli, F. Lapi et al., Intensive Care Med, vol.37, issue.2, p.284, 2010.

M. B. Gorbet and M. V. Sefton, Biomaterials, vol.25, issue.26, p.5681, 2004.

M. Shea-hamilton, H. M. Lappin-scott, G. Cairns, and R. Ebrey, Microbial Biofilms

G. A. O'toole and M. Ghannoum, American Society of Microbiology, pp.294-313, 2004.

M. J. Richards, J. R. Edwards, D. H. Culver, and R. P. Gaynes, Crit. Care Med, vol.27, issue.5, p.887, 1999.

J. W. Costerton, B. Ellis, K. Lam, F. Johnson, and A. E. Khoury, Antimicrob. Agents Chemother, vol.38, issue.12, p.2803, 1994.

L. A. Grohskopf, V. T. Andriole, and . Yale, J. Biol. Med, vol.69, issue.6, p.505, 1996.

J. Curtin, M. Cormican, G. Fleming, J. Keelehan, and E. Colleran, Antimicrob. Agents Chemother, vol.47, issue.10, p.3145, 2003.

J. C. Nickel, J. W. Costerton, and . Can, J. Infect. Dis, vol.1992, issue.5, p.261

F. Moriarty, S. A. Zaat, and H. J. Busscher, Biomaterials Associated Infection: Immunological Aspects and Antimicrobial Strategies, 2012.

R. O. Darouiche, Clin. Infect. Dis, vol.33, issue.9, p.1567, 2001.

R. Gahlot, C. Nigam, V. Kumar, G. Yadav, and S. Anupurba, Int. J. Crit. Illn. Inj. Sci, vol.2014, issue.2, p.162

C. J. Crnich and D. G. Maki, Clin. Infect. Dis, vol.34, issue.9, p.1232, 2002.

D. G. Maki, D. M. Kluger, and C. J. Crnich, Mayo Clin. Proc, vol.81, issue.9, p.1159, 2006.

D. D. Solomon and R. J. Sherertz, J. Controlled Release, vol.6, issue.1, p.343, 1987.

A. L. Casey, L. A. Mermel, P. Nightingale, and T. S. Elliott, Lancet Infect. Dis, vol.8, issue.12, p.763, 2008.

I. Raad, W. Costerton, U. Sabharwal, M. Sacilowski, E. Anaissie et al., J. Infect. Dis, vol.168, issue.2, p.400, 1993.

, Oral Biofilm: Entry and Immune System Response | CDEWorld -Continuing Dental Education, 2016.

, Szycher's Handbook of Polyurethanes, Jun, vol.10, 2016.

, Global Market Study on Urinary Catheters: Intermittent Catheters Segment to Witness Highest Growth by 2021, 2015.

S. Touche and O. Bajolet, , p.52, 2010.

C. R. Uk and . Intravenous, , 2016.

V. Chopra,

S. A. Flanders, S. Saint, and . Jama, , vol.308, p.1527, 2012.

C. Bouzad, S. Duron, A. Bousquet, F. Arnaud, L. Valbousquet et al., 385. (41) Bard access systems, J. Cardiovasc. Intervent. Radiol, vol.39, issue.3, 2015.

J. Lapalu, M. Losser, O. Albert, H. Levert, S. Villiers et al., J. Vasc. Access, vol.11, issue.1, p.46, 2010.

M. A. Hollyoak, T. H. Ong, and J. F. Leditschke, Pediatr. Surg. Int, vol.12, issue.2-3, p.177, 1997.

M. Wildgruber, C. Lueg, S. Borgmeyer, I. Karimov, U. Braun et al., Eur. J. Cancer, p.113, 2016.

A. L. Crowley, G. E. Peterson, D. K. Benjamin, S. H. Rimmer, C. Todd et al., Crit. Care Med, vol.36, issue.2, p.385, 2008.

P. Didisheim, D. B. Olsen, D. J. Farrar, P. M. Portner, B. P. Griffith et al., ASAIO Trans. Am. Soc. Artif. Intern. Organs, vol.35, issue.1, p.54, 1989.

S. F. Mohammad, N. S. Topham, G. L. Burns, and D. B. Olsen, ASAIO Trans. Am. Soc. Artif. Intern. Organs, vol.34, issue.3, p.573, 1988.

J. N. Baumgartner and S. L. Cooper, Biomed. Mater. Res, vol.40, issue.4, p.660, 1998.

Y. Lurton, Dispositifs médicaux de l'abord veineux er risque infectieux: à l'épreuve des données cliniques.pdf, 2010.

N. P. O'grady, M. Alexander, L. A. Burns, E. P. Dellinger, J. Garland et al., Clin. Infect. Dis, vol.52, issue.9, p.162, 2011.

L. Slobbe, J. K. Doorduijn, P. J. Lugtenburg, A. Barzouhi, E. Boersma et al., PLoS ONE, vol.2010, issue.5, p.5

P. W. Wales, C. Kosar, M. Carricato, N. De-silva, K. Lang et al., J. Pediatr. Surg, vol.46, issue.5, p.951, 2011.

C. Dannenberg, U. Bierbach, A. Rothe, J. Beer, and D. Korholz, J. Pediatr. Hematol, vol.25, issue.8, p.616, 2003.

A. M. Frey and G. J. Schears, J. Infus. Nurs. Off. Publ. Infus. Nurses Soc, vol.29, issue.1, p.34, 2006.

D. Halpin, P. Obyrne, G. Mcentee, T. Hennessy, and R. Stephens, Nutrition, vol.7, issue.1, p.33, 1991.

A. Simon, R. A. Ammann, G. Wiszniewsky, U. Bode, G. Fleischhack et al., BMC Infect. Dis, vol.8, p.102, 2008.

, OMéDIT région centre. Verrou antibiotique et infection d'une chambre implantable, 2012.

D. Yahav, B. Rozen-zvi, A. Gafter-gvili, L. Leibovici, U. Gafter et al., Clin. Infect. Dis, vol.47, issue.1, p.83, 2008.

A. Y. Wang, J. N. Ivany, V. Perkovic, M. P. Gallagher, and M. Jardine, J. Nephrol. Dial. Transplant. Off. Publ. Eur. Dial. Transpl. Assoc. -Eur. Ren. Assoc, vol.28, issue.11, p.2875, 2013.

A. S. Yevzlin, R. J. Sanchez, J. G. Hiatt, M. H. Washington, M. Wakeen et al., 351. (61) Catheter Materials: An Overview -180 Medical, vol.20, 2007.

X. Liu, L. Yuan, D. Li, Z. Tang, Y. Wang et al., J. Mater. Chem. B, vol.2014, issue.35, p.5718

C. S. Kwok, C. X. Wan, S. Hendricks, J. D. Bryers, T. A. Horbett et al., J. Controlled Release, vol.62, issue.3, p.289, 1999.

P. Basak, B. Adhikari, I. Banerjee, and T. K. Maiti, J. Mater. Sci.-Mater. Med, p.213, 1920.

J. Schierholz, B. Jansen, L. Jaenicke, and G. Pulverer, Biomaterials, vol.15, issue.12, p.996, 1994.

J. M. Schierholz, H. Steinhauser, A. F. Rump, R. Berkels, and G. Pulverer, Biomaterials, vol.18, issue.12, p.839, 1997.

H. Wang, K. Schultz, K. Elias, M. Stachowski, and C. Loose, J. Orthop. Trauma, vol.28, p.28, 2014.

D. G. Maki, S. M. Stolz, S. Wheeler, and L. A. Mermel, Ann. Intern. Med, vol.127, issue.4, p.257, 1997.

G. Chaiban, H. Hanna, T. Dvorak, and I. Raad, J. Antimicrob. Chemother, vol.55, issue.1, p.51, 2005.

Y. W. Cho, J. H. Park, S. H. Kim, Y. H. Cho, J. M. Choi et al., J. Biomater. Sci.-Polym. Ed, vol.14, issue.9, p.963, 2003.

H. Hanna, R. Benjamin, I. Chatzinikolaou, B. Alakech, D. Richardson et al., J. Clin. Oncol, vol.22, issue.15, p.3163, 2004.

T. A. Gaonkar, L. A. Sampath, and S. M. Modak, Infect. Control Hosp. Epidemiol, vol.24, issue.7, p.506, 2003.

A. D. Politano, K. T. Campbell, L. H. Rosenberger, and R. G. Sawyer, Surg. Infect, vol.14, issue.1, 2013.

R. Nirmala, D. Kalpana, R. Navamathavan, Y. S. Lee, and H. Y. Kim, J. Nanosci. Nanotechnol, vol.13, issue.7, p.4686, 2013.

V. Acharya, C. R. Prabha, and C. Narayanamurthy, Biomaterials, vol.25, issue.19, p.4555, 2004.

J. P. Guggenbichler, M. Boswald, S. Lugauer, and T. Krall, Infection, vol.27, p.16, 1999.

M. Lajcak, V. Heidecke, K. H. Haude, and N. G. Rainov, Acta Neurochir. (Wien), vol.2013, issue.5, p.875

H. Loertzer, J. Soukup, A. Hamza, A. Wicht, O. Rettkowski et al., P. Transplant. Proc, vol.38, issue.3, p.707, 2006.

Y. Chen, A. Dai, Y. Shi, Z. Liu, M. Gong et al., Int. J. Infect. Dis, vol.29, p.279, 2014.

P. A. Tran and T. J. Webster, Nanotechnology, vol.2013, issue.15, p.24

V. C. Kalia, Biotechnol. Adv, vol.31, issue.2, p.224, 2013.

A. Giacometti, O. Cirioni, Y. Gov, R. Ghiselli, M. S. Del-prete et al., Antimicrob. Agents Chemother, vol.47, issue.6, 1979.

H. Zhu, A. Kumar, J. Ozkan, R. Bandara, A. Ding et al., Optom. Vis. Sci, vol.85, issue.5, p.292, 2008.

K. K. Ho, N. Cole, R. Chen, M. D. Willcox, S. A. Rice et al., Antimicrob. Agents Chemother, vol.56, issue.2, p.1138, 2012.

K. K. Ho, R. Chen, M. D. Willcox, S. A. Rice, N. Cole et al., Biomaterials, vol.35, issue.7, p.2336, 2014.

R. D. Joerger, Poult. Sci, vol.82, issue.4, p.640, 2003.

J. Christopher, D. Nina, and P. Maria-auxiliadora, Andr?s, G. Front. Bioeng. Biotechnol, 2004.

N. Roohpour, A. Moshaverinia, J. M. Wasikiewicz, D. Paul, M. Wilks et al., Biomed. Mater, vol.2012, issue.1, p.15007

S. M. Jeon, H. J. Kim, K. B. Lee, J. W. Kim, and M. N. Kim, J. Microbiol. Biotechnol, vol.11, issue.2, p.259, 2001.

A. Todd, L. Lindsay, and . Terri, C. Front. Bioeng. Biotechnol, 2004.

M. Kazemzadeh-narbat, J. Kindrachuk, K. Duan, H. Jenssen, R. E. Hancock et al., Biomaterials, issue.36, p.9519, 2010.

M. Bagheri, M. Beyermann, and M. Dathe, Antimicrob. Agents Chemother, vol.53, issue.3, p.1132, 2009.

N. Kébir, I. Kriegel, M. Estève, and V. Semetey, Appl. Surf. Sci, vol.360, 2016.

J. Lin, J. C. Tiller, S. B. Lee, K. Lewis, and A. M. Klibanov, Biotechnol. Lett, vol.24, issue.10, p.801

R. G. Flemming, C. C. Capelli, S. L. Cooper, and R. A. Proctor, Biomaterials, vol.21, issue.3, p.273, 2000.

M. Kong, X. G. Chen, K. Xing, and H. J. Park, Int. J. Food Microbiol, vol.144, issue.1, p.51, 2010.

E. I. Rabea, M. E. Badawy, C. V. Stevens, G. Smagghe, and W. Steurbaut, Biomacromolecules, vol.4, issue.6, p.1457, 2003.

C. H. Kim, S. Y. Kim, and K. S. Choi, Polym. Adv. Technol, vol.8, issue.5, p.319, 1997.

L. Cobrado, A. Silva-dias, M. M. Azevedo, C. Pina-vaz, and A. G. Rodrigues, J. Antimicrob. Chemother, vol.68, issue.1, p.126, 2013.

L. Cobrado, M. M. Azevedo, A. Silva-dias, J. P. Ramos, C. Pina-vaz et al., J. Antimicrob. Chemother, vol.2012, issue.5, p.1159

A. Chonn, P. R. Cullis, and D. V. Devine, J. Immunol. Baltim. Md, vol.146, issue.12, p.4234, 19501991.

S. Alibeik, H. Sheardown, A. S. Rizkalla, and K. Mequanint, J. Biomater. Sci.-Polym. Ed, vol.18, issue.9, p.1195, 2007.

L. Poussard, F. Burel, J. P. Couvercelle, O. Lesouhaitier, Y. Merhi et al., J. Biomater. Sci.-Polym. Ed, vol.16, issue.3, p.335, 2005.

T. G. Grasel and S. L. Cooper, Biocompatible polyurethanes modified with lower alkyl sulfonate and lower alkyl carboxylate. US4880883 A, 1989.

I. S. Alferiev, J. M. Connolly, S. J. Stachelek, A. Ottey, L. Rauova et al., Biomacromolecules, vol.7, issue.1, p.317, 2006.

R. Barbucci, G. Casini, P. Ferruti, and F. Tempesti, Polymer, vol.26, p.1349, 1985.

H. Chen, Y. Chen, H. Sheardown, and M. A. Brook, Biomaterials, vol.26, issue.35, p.7418, 2005.

S. Chen, L. Li, C. Zhao, J. Zheng, and . Polymer, , p.5283, 2010.

A. Halperin and . Langmuir, , vol.15, p.2525, 1999.

N. Hadjesfandiari, K. Yu, Y. Mei, and J. N. Kizhakkedathu, J. Mater. Chem. B, vol.2014, issue.31, p.4968

N. P. Desai and J. A. Hubbell, Biomed. Mater. Res, vol.25, issue.7, p.829, 1991.

C. Gölander, S. Jönsson, T. Vladkova, P. Stenius, J. C. Eriksson et al., , p.149, 1986.

J. G. Archambault and J. L. Brash, Colloids Surf. B Biointerfaces, vol.39, issue.1-2, p.9, 2004.

S. I. Jeon, J. H. Lee, J. D. Andrade, and P. De-gennes, J. Colloid Interface Sci, vol.142, issue.1, p.149, 1991.

S. I. Jeon and J. D. Andrade, J. Colloid Interface Sci, vol.142, issue.1, p.159, 1991.

K. L. Prime and G. M. Whitesides, J. Am. Chem. Soc, vol.115, issue.23, p.10714, 1993.

R. E. Holmlin, X. Chen, R. G. Chapman, S. Takayama, G. M. Whitesides et al., , vol.17, p.2841, 2001.

K. Vacheethasanee and R. E. Marchant, Biomed. Mater. Res, vol.50, issue.3, p.302, 2000.

S. Sharma, R. W. Johnson, T. A. Desai, and . Langmuir, , vol.20, p.348, 2004.

Y. Ikeda, S. Kohjiya, S. Yamashita, H. Fukumura, S. Yoshikawa et al., , vol.20, p.273, 1988.

I. Hamad, A. C. Hunter, J. Szebeni, and S. M. Moghimi, Mol. Immunol, vol.46, issue.2, p.225, 2008.

A. D. Baldwin and K. L. Kiick, Pept. Sci, vol.2010, issue.1, p.128

M. Ombelli, L. Costello, C. Postle, V. Anantharaman, Q. C. Meng et al., Biofouling, vol.27, issue.5, p.505, 2011.

J. F. Keuren, S. J. Wielders, G. M. Willems, M. Morra, L. Cahalan et al., Biomaterials, vol.24, issue.11, 1917.

E. Osterberg, K. Bergstrom, K. Holmberg, J. A. Riggs, J. M. Vanalstine et al., J. M. Colloids Surf. -Physicochem. Eng. Asp, vol.77, issue.2, p.159, 1993.

R. Marchant, S. Yuan, and G. Szakalasgratzl, J. Biomater. Sci.-Polym. Ed, vol.6, issue.6, p.549, 1994.

N. B. Holland, Y. Qiu, M. Ruegsegger, and R. E. Marchant, Nature, vol.392, issue.6678, p.799, 1998.

D. M. Eckmann, I. Y. Tsai, N. Tomczyk, J. W. Weisel, and R. J. Composto, Colloids Surf. B-Biointerfaces, vol.108, p.44, 2013.

W. Mussard, N. Kebir, I. Kriegel, M. Esteve, and V. Semetey, Angew. Chem.-Int. Ed, vol.50, issue.46, p.10871, 2011.

A. Chauhan, A. Bernardin, W. Mussard, I. Kriegel, M. Esteve et al., J. Infect. Dis, vol.210, issue.9, p.1347, 2014.

X. M. Li, S. F. Luan, H. C. Shi, H. W. Yang, L. J. Song et al., Colloids Surf. B-Biointerfaces, vol.102, p.210, 2013.

A. Ruiz, K. R. Rathnam, and K. S. Masters, J. Mater. Sci. Mater. Med, vol.25, issue.2, p.487, 2014.

S. P. Massia, J. Stark, and D. S. Letbetter, Biomaterials, vol.21, issue.22, p.2253, 2000.

E. Monchaux, P. Vermette, and . Langmuir, , vol.23, p.3290, 2007.

S. Singer and G. Nicolson, Science, vol.175, issue.4023, p.720, 1972.

K. Ishihara and K. Fukazawa, Polymer Chemistry Series

S. Monge and G. David, , pp.68-96, 2014.

J. B. Schlenoff and . Langmuir, , vol.30, p.9625, 2014.

K. Ishihara, T. Ueda, N. Nakabayashi, and . J. Polym, , vol.22, p.355, 1990.

A. L. Lewis, Colloids Surf. B-Biointerfaces, vol.18, issue.3-4, p.261, 2000.

K. Ishihara, H. Nomura, T. Mihara, K. Kurita, Y. Iwasaki et al., Biomed. Mater. Res, vol.39, issue.2, p.323, 1998.

K. Ishihara, H. Oshida, Y. Endo, T. Ueda, A. Watanabe et al., Biomed. Mater. Res, vol.26, issue.12, p.1543, 1992.

B. Gao, Y. K. Feng, J. Lu, L. Zhang, M. Zhao et al., Mater. Sci. Eng. C-Mater. Biol. Appl, vol.33, issue.5, p.2871, 2013.

A. Korematsu, Y. Takemoto, T. Nakaya, and H. Inoue, Biomaterials, vol.23, issue.1, p.263, 2002.

K. Sugiyama, M. Fukuchi, A. Kishida, M. Akashi, Y. K. Kadoma et al., , vol.53, p.48, 1996.

M. Kyomoto, T. Shobuike, T. Moro, S. Yamane, Y. Takatori et al., Acta Biomater, vol.24, p.24, 2015.

W. Feng, X. Gao, G. Mcclung, S. Zhu, K. Ishihara et al., Acta Biomater, vol.7, issue.10, p.3692, 2011.

J. J. Huang and W. L. Xu, J. Appl. Polym. Sci, vol.122, issue.2, p.1251, 2011.

J. J. Huang and W. L. Xu, Appl. Surf. Sci, vol.2010, issue.12, p.3921

J. Zhang, J. Yuan, Y. L. Yuan, X. P. Zang, J. Shen et al., Biomaterials, vol.24, issue.23, p.4223, 2003.

M. Sin, Y. Sun, and Y. Chang, ACS Appl. Mater. Interfaces, vol.6, issue.2, p.861, 2014.

Z. Zhang, J. Borenstein, L. Guiney, R. Miller, S. Sukavaneshvar et al., Lab. Chip, vol.13, issue.10, 1963.

Z. Zhang, M. Zhang, S. Chen, T. A. Horbett, B. D. Ratner et al., Biomaterials, vol.29, issue.32, p.4285, 2008.

L. Zhang, Z. Cao, T. Bai, L. Carr, J. Ella-menye et al., Nat. Biotechnol, issue.6, p.553, 2013.

J. Ladd, Z. Zhang, S. Chen, J. C. Hower, and S. Jiang, Biomacromolecules, vol.9, issue.5, p.1357, 2008.

K. J. Robinson, J. W. Coffey, D. A. Muller, P. R. Young, M. A. Kendall et al., Biointerphases, vol.10, issue.4, pp.4-305, 2015.

S. Han, C. Kim, and D. Kwon, Polymer, vol.38, issue.2, p.317, 1997.

C. W. Mcgary, J. Polym. Sci, vol.46, issue.147, p.51, 1960.

M. Barz, R. Luxenhofer, R. Zentel, and M. J. Vicent, Polym. Chem, vol.2, issue.9, 1900.

X. Liu, Y. Xu, Z. Wu, and H. Chen, Macromol. Biosci, vol.13, issue.2, p.147, 2013.

D. Xiao, H. Zhang, and M. Wirth, Langmuir, vol.18, issue.25, p.9971, 2002.

D. Zhang, S. H. Lahasky, L. Guo, C. Lee, and M. Lavan, Macromolecules, vol.2012, issue.15, p.5833

K. H. Lau, C. Ren, T. S. Sileika, S. H. Park, I. Szleifer et al., Colloids, vol.2012, issue.46, p.16099

N. Zhang, T. Pompe, I. Amin, R. Luxenhofer, C. Werner et al., , vol.12, p.926, 2012.

T. Lehmann and J. Rühe, Macromol. Symp, vol.142, issue.1, p.1, 1999.

J. Ulbricht, R. Jordan, and R. Luxenhofer, Biomaterials, vol.35, issue.17, p.4848, 2014.

C. P. Stallard, K. A. Mcdonnell, O. D. Onayemi, J. P. Gara, and D. P. Dowling, Biointerphases, vol.2012, issue.1, p.31

C. Hsiao, C. Lin, C. Chou, C. Chung, and J. He, Appl. Surf. Sci, vol.346, p.50, 2015.

B. J. Privett, J. Youn, S. A. Hong, J. Lee, J. Han et al., , vol.27, p.9597, 2011.

D. C. Leslie, A. Waterhouse, J. B. Berthet, T. M. Valentin, A. L. Watters et al., Nat. Biotechnol, vol.32, issue.11, p.1134, 2014.

N. Vogel, R. A. Belisle, B. Hatton, T. Wong, and J. Aizenberg, Nat. Commun, p.4, 2013.

D. Han, S. Jeong, Y. Kim, and B. Min, J. Biomater. Sci.-Polym. Ed, vol.1992, issue.3, p.229

D. K. Han, S. Y. Jeong, Y. H. Kim, and B. G. Min, J. Appl. Polym. Sci, vol.47, issue.5, p.761, 1993.

X. Xie, R. Wang, J. Li, L. Luo, D. Wen et al., Biomed. Mater. Res. B Appl. Biomater, vol.89, issue.1, p.223, 2009.

R. Jia, A. Zong, X. He, J. Xu, M. F. Huang et al., , vol.16, p.231, 2015.

K. Chen and J. Kuo, J. Mater. Sci. Mater. Med, vol.13, issue.1, p.37, 2002.

Y. W. Tang, J. P. Santerre, R. S. Labow, and D. G. Taylor, J. Appl. Polym. Sci, vol.62, issue.8, p.1133, 1996.

T. M. Massa, M. L. Yang, J. Y. Ho, J. L. Brash, and J. P. Santerre, Biomaterials, vol.26, issue.35, p.7367, 2005.

M. J. Byrom, M. K. Ng, P. G. Bannon, and . Ann, Cardiothorac. Surg, vol.2013, issue.4, p.435

, Edwards Lifesciences Receives FDA Clearance To Market Its Vantex Central Venous Catheter, 2016.

, Multistar 3 + | Multistar 3 | 3 lumen catheters for Seldinger technique | Multilumen catheters for Seldinger technique | Vascular access -Infusion | Catalogue | Vygon | Value Life, 2016.

, ARROW PICC, vol.21, 2016.

. Medtronic, Trillium Biosurface for CPB Procedures /us, 2016.

, Hydromer Duality, 2016.

P. Bioflo and . Angiodynamics, , 2016.

R. S. Smith, Z. Zhang, M. Bouchard, J. Li, H. S. Lapp et al., 153ra132. (186) PHISIO coating, vol.2012, 2016.

A. Dwyer, . Semin, and . Dial, , vol.21, p.542, 2008.

S. J. Dancer, R. A. Barnes, S. P. Barrett, J. Bates, A. Berrington et al., The Official Journal of the Hospital Infection Society

N. P. O'grady, M. Alexander, P. Dellinger, J. L. Gerberding, S. O. Heard et al., Pediatrics, vol.110, issue.5, p.51, 2002.

A. B. Krautheim, T. H. Jermann, and A. J. Bircher, Contact Dermatitis, vol.50, issue.3, p.113, 2004.

A. B. Lansdown, Curr. Probl. Dermatol, vol.33, issue.192, p.17, 2006.

D. Reser, B. Seifert, M. Klein, T. Dreizler, P. Hasenclever et al., Perfusion, vol.2012, issue.6, p.530

A. Randolph, D. Cook, C. Gonzales, M. Andrew, and . Bmj, , vol.316, p.969, 19981998-03-28.

A. R. Jahangir, W. G. Mcclung, R. M. Cornelius, C. B. Mccloskey, J. L. Brash et al., J. P. J. Biomed. Mater. Res, vol.60, issue.1, p.135, 2002.

, Nylus PICC with Sustain technology K150109_Revised 510(k) Summary -K150109, 2016.

. Certofix_brochure, , 2016.

O. Bayer, . Angew, and . Chem, , vol.59, p.257, 1947.

G. Oertel, Polyurethane Handbook, 1994.

. Ademe, Panorama du marché du polyuréthane et état de l'art de ses techniques de recy...; Etude, Rapport, 2014.

A. L. Mazzu and C. P. Smith, J. Biomed. Mater. Res, vol.18, issue.8, p.961, 1984.

M. Szycher and A. A. Siciliano, J. Biomater. Appl, vol.5, issue.4, p.323, 1991.

C. Hepburn, Polyurethane elastomers, 1982.

G. Oertel and L. Abele, Polyurethane handbook: chemistry -raw materials -processingapplication -properties

G. Hanser and . Publications,

. Cincinnati, , 1993.

K. Stokes, R. Mcvenes, and J. M. Anderson, J. Biomater. Appl, vol.9, issue.4, p.321, 1995.

A. L. Silva and J. C. Bordado, Catal. Rev.-Sci. Eng, vol.46, issue.1, p.31, 2004.

E. Squiller, J. Rosthauser, . Abstr, and . Pap, Am. Chem. Soc, p.139, 1986.

W. J. Pangman, Compound prosthesis device. US2842775 A, 1958.

J. W. Boretos and W. S. Pierce, Science, vol.158, issue.3807, p.1481, 1967.

M. Szycher and W. J. Robinson, Synthetic Biomedical Polymers: Concepts and Applications, 1980.

, Biomedical Applications of Polyurethanes

P. Vermette, . Ed, . Eurekah, and . Com-inc, , 2001.

R. J. Zdrahala and I. J. Zdrahala, J. Biomater. Appl, vol.14, issue.1, p.67, 1999.

J. H. Chen and E. Ruckenstein, J. Colloid Interface Sci, vol.135, issue.2, p.496, 1990.

A. Takahara, K. Takahashi, and T. Kajiyama, J. Biomater. Sci.-Polym. Ed, vol.5, issue.3, p.183, 1993.

K. B. Lewis and B. D. Ratner, J. Colloid Interface Sci, vol.159, issue.1, p.77, 1993.

D. Zhang, R. S. Ward, Y. R. Shen, and G. A. Somorjai, J. Phys. Chem. B, issue.44, p.9060, 1997.

A. A. Plumb and G. Murphy, Br. J. Radiol, vol.84, issue.999, p.197, 2011.

C. J. Renner and . Vasc, Access Devices, vol.3, p.16, 1998.

B. D. Ratner, Biomaterials Science: An Introduction to Materials in Medicine, 2004.

R. J. Carson, A. Edwards, and M. Szycher, J. Biomater. Appl, vol.11, issue.2, p.121, 1996.

A. B. Mathur, T. O. Collier, W. J. Kao, M. Wiggins, M. A. Schubert et al., J. Biomed. Mater. Res, vol.36, issue.2, p.246, 1997.

Y. W. Tang, J. P. Santerre, R. S. Labow, and D. G. Taylor, Biomaterials, vol.18, issue.1, p.37, 1997.

D. Farrar, P. Litwak, J. Lawson, R. Ward, K. White et al., J. Thorac. Cardiovasc. Surg, vol.95, issue.2, p.191, 1988.

C. Wilhelm, A. Rivaton, and J. L. Gardette, Polymer, vol.39, issue.5, p.1223, 1998.

M. Szycher, V. L. Poirier, D. J. Dempsey, and . Plast, , vol.15, p.81, 1983.

M. D. Lelah, L. K. Lambrecht, B. R. Young, and S. L. Cooper, Biomed. Mater. Res, vol.17, issue.1, p.1, 1983.

E. Mitzner and T. Groth, J. Biomater. Sci.-Polym. Ed, vol.7, issue.12, p.1105, 1996.

A. Takahara, A. Z. Okkema, S. L. Cooper, and A. J. Coury, Biomaterials, vol.12, issue.3, p.324, 1991.

J. H. Park, K. D. Park, and Y. H. Bae, Biomaterials, vol.20, issue.10, p.943, 1999.

Y. J. Li, T. Yokawa, K. H. Matthews, T. M. Chen, Y. F. Wang et al., Biomaterials, vol.17, issue.22, p.2179, 1996.

C. Nojiri, T. Okano, H. A. Jacobs, K. D. Park, S. F. Mohammad et al., J. Biomed. Mater. Res, vol.24, issue.9, p.1151, 1990.

N. P. Desai and J. A. Hubbell, Biomaterials, vol.12, issue.2, p.144, 1991.

H. Planck, International Conference on Polyurethanes in Biomedical Engineering; International Conference on Polyurethanes in Biomedical Engineering. Polyurethanes in biomedical engineering II: proceedings of the 2nd International Conference on Polyurethanes in Biomedical Engineering, 1986.

M. L. Lopez-donaire and J. P. Santerre, J. Appl. Polym. Sci, vol.2014, issue.14, p.40328

R. Jones and . Biomedical, Development of biomedical technologies, 2010.

R. S. Ward and K. A. White, Surface-modifying endgroups for biomedical polymers, WO1995026993, vol.1, 1995.

Z. Chen, R. Ward, Y. Tian, F. Malizia, D. H. Gracias et al., J. Biomed. Mater. Res, vol.62, issue.2, p.254, 2002.

J. Chandra, J. D. Patel, J. Li, G. Zhou, P. K. Mukherjee et al., Appl. Environ. Microbiol, vol.71, issue.12, p.8795, 2005.

J. D. Patel, M. Ebert, K. Stokes, R. Ward, and J. M. Anderson, J. Biomater. Sci.-Polym. Ed, vol.14, issue.3, p.279, 2003.

F. Verbeke, U. Haug, A. Dhondt, W. Beck, A. Schnell et al., Nephrol. Dial. Transplant, vol.25, issue.4, p.1207, 2010.

Y. W. Tang, J. P. Santerre, R. S. Labow, and D. G. Taylor, Biomed. Mater. Res, vol.35, issue.3, p.371, 1997.

, Modificateurs de surface oligomeres fluores pour des polymeres et articles realises a partir de ceux-ci

, Surface modifying macromolecules with high degradation temperatures and uses thereof, 81786202.

, Catheters with fluoropolymer additives. US8784402, vol.1, 2013.

D. Rana, T. Matsuura, and R. M. Narbaitz, J. Membr. Sci, vol.282, issue.1-2, p.205, 2006.

J. H. Park and Y. H. Bae, J. Biomater. Sci.-Polym. Ed, vol.13, issue.5, p.527, 2002.

J. ;. Tan and . Brash, J. J. Appl. Polym. Sci, vol.108, issue.3, p.1617, 2008.

J. Tan, W. G. Mcclung, and J. L. Brash, Biomed. Mater. Res. A, vol.85, issue.4, p.873, 2008.

J. Tan and J. L. Brash, Biomed. Mater. Res. A, vol.90, issue.1, p.196, 2009.

J. H. Lee, Y. M. Ju, W. K. Lee, K. D. Park, and Y. H. Kim, J. Biomed. Mater. Res, vol.40, issue.2, p.314, 1998.

B. Wesslén, M. Kober, C. Freij-larsson, Å. Ljungh, and M. Paulsson, Biomaterials, vol.15, issue.4, p.278, 1994.

M. Kober and B. Wesslén, J. Polym. Sci. Part Polym. Chem, vol.30, issue.6, p.1061, 1992.

C. Freij-larsson, P. Jannasch, and B. Wesslén, Biomaterials, vol.21, issue.3, p.307, 2000.

C. Freij-larsson, M. Kober, B. Wesslén, E. Willquist, and P. Tengvall, J. Appl. Polym. Sci, vol.49, issue.5, p.815, 1993.

Q. Zhang, Y. Liu, K. C. Chen, G. Zhang, X. Shi et al., Colloids Surf. B Biointerfaces, vol.102, p.354, 2013.

D. Tan, Z. Li, X. Yao, C. Xiang, H. Tan et al., J. Mater. Chem. B, vol.2014, issue.10, p.1344

T. M. Chen, Y. F. Wang, Y. J. Li, M. Kitamura, and T. Nakaya, Macromol. Chem. Phys, vol.197, issue.5, p.1587, 1996.

E. Merrill, E. Salzman, S. Wan, N. Mahmud, L. Kushner et al., Trans. Am. Soc. Artif. Intern. Organs, vol.28, p.482, 1982.

S. Hunter, D. Gregonis, D. Coleman, B. Hanover, R. Stephen et al., Trans. Am. Soc. Artif. Intern. Organs, vol.29, p.250, 1983.

J. Huang and W. Xu, J. Appl. Polym. Sci, vol.122, issue.2, p.1251, 2011.

M. M. Reynolds, J. A. Hrabie, B. K. Oh, J. K. Politis, M. L. Citro et al., Biomacromolecules, vol.7, issue.3, p.987, 2006.

T. G. Grasel and S. L. Cooper, Biomed. Mater. Res, vol.23, issue.3, p.311, 1989.

I. S. Alferiev and I. Fishbein, Biomaterials, vol.23, issue.24, p.4753, 2002.

J. Fang, J. Zhang, J. Du, Y. Pan, J. Shi et al., ACS Appl. Mater. Interfaces, vol.8, issue.23, p.14442, 2016.

J. Santerre and . Brash, J. Macromolecules, vol.24, issue.20, p.5497, 1991.

H. Lin, K. Lewis, D. Leachscampavia, B. Ratner, and S. Cooper, J. Biomater. Sci.-Polym. Ed, vol.4, issue.3, p.183, 1993.

D. Q. You, H. Liang, W. Z. Mai, R. Zeng, M. Tu et al., Z. G. J. Ind. Eng. Chem, vol.19, issue.5, p.1587, 2013.

C. Freij-larsson and B. Wesslén, J. Appl. Polym. Sci, vol.50, issue.2, p.345, 1993.

J. G. Archambault and J. L. Brash, Colloids Surf. B Biointerfaces, vol.33, issue.2, p.111, 2004.

J. Yuan, L. Tong, H. X. Yi, B. X. Wang, J. Shen et al., Colloids Surf. B-Biointerfaces, issue.111, p.432, 2013.

P. Bulpitt and D. J. Aeschlimann, Biomed. Mater. Res, vol.47, issue.2, p.152, 1999.

M. Sato, J. Org. Chem, vol.27, issue.3, p.819, 1962.

G. M. Bernacca, M. J. Gulbransen, R. Wilkinson, and D. J. Wheatley, Biomaterials, vol.19, issue.13, p.1151, 1998.

W. Wu, K. N. Sask, J. L. Brash, and P. R. Selvaganapathy, Lab. Chip, vol.2012, issue.5, p.960

J. Lu, Y. K. Feng, B. Gao, and J. T. Guo, Macromol. Res, vol.2012, issue.7, p.693

H. Yuan, B. Qian, W. Zhang, and M. Lan, Appl. Surf. Sci, vol.363, p.483, 2016.

Y. Wang, W. Xu, and Y. Chen, Colloids Surf. B Biointerfaces, vol.2010, issue.2, p.629

W. G. Pitt, T. G. Grasel, and S. L. Cooper, Biomaterials, vol.1988, issue.1, p.36

W. G. Pitt and S. L. Cooper, Biomed. Mater. Res, vol.22, issue.5, p.359, 1988.

I. S. Alferiev, J. Polym. Sci. Part -Polym. Chem, issue.23, p.4378, 2002.

S. A. Visser and S. L. Cooper, Macromolecules, vol.24, issue.9, p.2576, 1991.

L. L. Huang, P. C. Lee, L. W. Chen, and K. H. Hsieh, Biomed. Mater. Res, vol.39, issue.4, p.630, 1998.

F. S. Denes and S. Manolache, Prog. Polym. Sci, vol.29, issue.8, p.815, 2004.

D. L. Cho and H. Yasuda, J. Vac. Sci. Technol. A, vol.1986, issue.5, p.2307

D. J. Wilson, N. P. Rhodes, and R. L. Williams, Biomaterials, vol.24, issue.28, p.5069, 2003.

A. Bruil, J. G. Terlingen, T. Beugeling, W. G. Van-aken, and . Feijen, J. Biomaterials, vol.13, issue.13, p.915, 1992.

I. Kang, O. H. Kwon, M. K. Kim, Y. M. Lee, and Y. K. Sung, Biomaterials, vol.18, issue.16, p.1099, 1997.

Y. Ito, Y. Iguchi, T. Kashiwagi, and Y. J. Imanishi, Biomed. Mater. Res, vol.25, issue.11, p.1347, 1991.

R. J. González-paz, A. M. Ferreira, C. Mattu, F. Boccafoschi, G. Lligadas et al., React. Funct. Polym, vol.73, issue.5, p.690, 2013.

N. Hasirci and E. A. Aksoy, High Perform. Polym, vol.19, p.621, 2007.

P. Alves, R. Cardoso, T. R. Correia, B. P. Antunes, I. J. Correia et al., Colloids Surf. B Biointerfaces, vol.113, p.25, 2014.

K. Fujimoto, Y. Takebayashi, H. Inoue, and Y. Ikada, J. Polym. Sci. Part Polym. Chem, issue.4, p.1035, 1993.

Y. L. Yuan, F. Ai, X. P. Zang, W. Zhuang, J. Shen et al., Colloids Surf. B-Biointerfaces, vol.35, issue.1, p.1, 2004.

Y. Yuan, J. Zhang, F. Ai, J. Yuan, J. Zhou et al., Colloids Surf. B Biointerfaces, vol.29, issue.4, p.247, 2003.

Y. Uyama and Y. Ikada, J. Appl. Polym. Sci, vol.36, issue.5, p.1087, 1988.

Y. Ikada, Radiat. Phys. Chem, issue.6, p.509, 1992.

B. Jansen, H. Steinhauser, W. Prohaska, and . Makromol, Chem. Macromol. Symp, vol.5, issue.1, p.237, 1986.

K. Norrman and B. Winther-jensen, Plasma Process. Polym, vol.2, issue.5, p.414, 2005.

L. M. Han and R. B. Timmons, J. Polym. Sci. Part Polym. Chem, issue.17, p.3121, 1998.

K. Chan, L. E. Kostun, W. E. Tenhaeff, and K. K. Gleason, Polymer, vol.47, issue.20, p.6941, 2006.

M. Sun, Q. Wu, J. Xu, F. He, A. P. Brown et al., J. Mater. Chem. B, vol.2016, issue.15, p.2669

K. Chan, K. K. Gleason, and . Langmuir, , vol.21, p.11773, 2005.

K. Chan and K. K. Gleason, Chem. Vap. Depos, vol.11, issue.10, p.437, 2005.

B. J. Mcmahon, C. A. Pfluger, B. Sun, K. S. Ziemer, D. D. Burkey et al., J. Biomed. Mater. Res. A, issue.7, p.2375, 2014.

C. He, M. Wang, X. Cai, X. Huang, L. Li et al., J. Appl. Surf. Sci, vol.258, issue.2, p.755, 2011.

C. H. Bamford and K. G. Al-lamee, Polymer, vol.35, issue.13, p.2844, 1994.

Z. Zhang, C. U. Huval, and . Pdf, , vol.8308699, 2012.

F. G. Bordwell and H. E. Fried, J. Org. Chem, vol.56, issue.13, p.4218, 1991.

R. L. Dannley and M. Lukin, J. Org. Chem, vol.1957, issue.3, p.268

F. A. Siqueira, J. G. Taylor, and C. R. Correia, Tetrahedron Lett, issue.16, p.2102, 2010.

F. Miege, C. Meyer, and J. Cossy, Angew. Chem. Int. Ed, vol.50, issue.26, p.5932, 2011.

S. Majumdar and K. B. Sloan, Synth. Commun, vol.36, issue.23, p.3537, 2006.

J. Ortiz, A. Guijarro, and M. Yus, Tetrahedron, vol.55, issue.15, p.4831, 1999.

J. Kozakiewicz, Prog. Org. Coat, vol.72, issue.2, p.120, 2011.

M. Duggan, J. Imagire, . Synth, and . Stuttg, , p.131, 1989.

Y. Shen, State Key Laboratory of Organometallic Chemistry, S. I. of O. C., Chinese Academy of Sciences, 354 Fenglin Lu, 200032.

M. Shi, State Key Laboratory of Organometallic Chemistry, S. I. of O. C., Chinese Academy of Sciences, 354 Fenglin Lu, 200032.

S. I. and O. C. , People's Republic of China, Chinese Academy of Sciences, vol.17, issue.10, p.767, 200032.

C. R. Reddy, B. Mahipal, S. R. Yaragorla, and . Arkivoc, , p.250, 2008.

L. J. Yang, Y. Yang, and R. Dong, Asian J. Chem, vol.23, issue.3, p.1085, 2011.

M. Pianka and D. J. Polton, Chem. Soc, p.983, 1960.

S. R. Vidadala, C. Golz, C. Strohmann, C. Daniliuc, and H. Waldmann, Angew. Chem. Int. Ed, vol.54, issue.2, p.651, 2015.

W. Lee, J. Jung, J. Sim, H. An, and Y. Suh, Tetrahedron, issue.35, p.7211, 2013.

E. Vellemäe, V. Stepanov, and U. Mäeorg, Synth. Commun, issue.22, p.3397, 2010.

C. Blaszykowski, A. Dhimane, L. Fensterbank, and M. Malacria, Org. Lett, vol.5, issue.8, p.1341, 2003.

F. Brisse, D. Thoraval, and T. H. Chan, Can. J. Chem, vol.64, issue.4, p.739, 1986.

J. Roby and N. Voyer, Tetrahedron Lett, vol.38, issue.2, p.191, 1997.

L. Xu, C. Xia, and X. Hu, Chem. Commun, issue.20, 2003.

S. Kobayashi, K. Kakumoto, and M. Sugiura, Org. Lett, vol.4, issue.8, p.1319, 2002.

G. Smitha and C. Sanjeeva-reddy, Catal. Commun, vol.8, issue.3, p.434, 2007.

L. Xu and C. Xia, Tetrahedron Lett, issue.23, p.4507, 2004.

. Li-wen,

L. Xu, L. Li, C. Xia, S. Zhou, J. Li et al., Synlett, issue.15, 2003.

I. P. Beletskaya, E. A. Tarasenko, A. R. Khokhlov, and V. S. Tyurin, Russ. J. Org. Chem, vol.46, issue.4, p.461, 2010.

T. C. Wabnitz and J. B. Spencer, Tetrahedron Lett, issue.21, p.3891, 2002.

V. Raje, R. Bhat, and S. Samant, , p.2676, 2006.

V. P. Raje, R. P. Bhat, and S. D. Samant, Tetrahedron Lett, vol.46, issue.5, p.835, 2005.

F. Berrée, G. Michelot, and M. Le-corre, Tetrahedron Lett, issue.45, p.8275, 1998.

A. Magnani, S. Lamponi, M. Consumi, and R. Barbucci, J. Mater. Chem, vol.9, issue.10, p.2393, 1999.

J. Yuan, L. Chen, X. Jiang, J. Shen, and S. Lin, Colloids Surf. B Biointerfaces, vol.39, issue.1-2, p.87, 2004.

Z. W. Wicks, Prog. Org. Coat, vol.1975, issue.1, p.73

Y. Ichikawa, Y. Morishita, S. Kusaba, N. Sakiyama, Y. Matsuda et al., , 1815.

B. Jousseaume, C. Laporte, M. Rascle, and T. Toupance, Chem. Commun, issue.12, 1428.

B. Jousseaume, C. Laporte, T. Toupance, and J. Bernard, Tetrahedron Lett, issue.36, p.6305, 2002.

M. Hatano, S. Kamiya, K. Moriyama, and K. Ishihara, Org. Lett, vol.13, issue.3, p.430, 2011.

P. Tundo, C. Mcelroy, and F. Aricò, , p.1567, 2010.

G. Bernáth, G. Stájer, A. E. Szabó, F. Fölöp, and P. Sohár, Tetrahedron, issue.7, p.1353, 1985.

S. G. Davies, A. C. Garner, P. M. Roberts, A. D. Smith, M. J. Sweet et al., Org. Biomol. Chem, vol.4, issue.14, p.2753, 2006.

S. Schunk and D. Enders, Org. Lett, vol.3, issue.20, p.3177, 2001.

R. Millet, A. M. Träff, M. L. Petrus, and J. Bäckvall, J. Am. Chem. Soc, issue.43, p.15182, 2010.

C. G. Barber, D. C. Blakemore, J. Chiva, R. L. Eastwood, D. S. Middleton et al., Bioorg. Med. Chem. Lett, vol.19, issue.5, p.1499, 2009.

R. Isaksson, I. Kumpi?a, M. Larhed, and J. Wannberg, Tetrahedron Lett, vol.2016, issue.13, p.1476

L. Maisonneuve, O. Lamarzelle, E. Rix, E. Grau, and H. Cramail, Chem. Rev, vol.115, issue.22, p.12407, 2015.

O. Kreye, H. Mutlu, M. A. Meier, and . Green-chem, , p.1431, 2013.

S. Anantharaj and M. Jayakannan, Biomacromolecules, vol.2012, issue.8, p.2446

P. Deepa and M. Jayakannan, J. Polym. Sci. Part Polym. Chem, vol.46, issue.7, p.2445, 2008.

A. S. More, B. Gadenne, C. Alfos, and H. Cramail, Polym. Chem, vol.2012, issue.6, p.1594

D. V. Palaskar, A. Boyer, E. Cloutet, C. Alfos, H. Cramail et al., , p.1202, 2010.

Y. Deng, S. Li, J. Zhao, Z. Zhang, J. Zhang et al., , vol.4, p.43406, 2014.

S. Neffgen, H. Keul, and H. Höcker, Macromol. Chem. Phys, vol.199, issue.2, p.197, 1998.

S. Ramesh and M. L. Green, Method of preparing carbamate-functional polymers, US6331596, vol.1, 2001.

J. Bernard, B. Jousseaume, C. Laporte, and T. Toupance, Process for the formation of urethane via transcarbamation, US6998364, vol.2, 2006.

C. Duval, N. Kébir, A. Charvet, A. Martin, and F. Burel, J. Polym. Sci. Part Polym. Chem, vol.53, issue.11, p.1351, 2015.

D. J. Fortman, J. P. Brutman, C. J. Cramer, M. A. Hillmyer, and W. R. Dichtel, J. Am. Chem. Soc, vol.137, issue.44, p.14019, 2015.

N. Zheng, Z. Fang, W. Zou, Q. Zhao, and T. Xie, Angew. Chem. Int. Ed, 2016.

C. Molero, A. De-lucas, and J. F. Rodríguez, Polym. Degrad. Stab, vol.91, issue.2, p.221, 2006.

A. Lapprand, F. Boisson, F. Delolme, F. Mechin, and J. P. Pascault, Polym. Degrad. Stab, vol.90, issue.2, p.363, 2005.

F. Aricò, S. Evaristo, P. Tundo, . Green, and . Chem, , vol.17, p.1176, 2015.

M. K. Kiesewetter, M. D. Scholten, N. Kirn, R. L. Weber, J. L. Hedrick et al., J. Org. Chem, vol.74, issue.24, p.9490, 2009.

L. Simón and J. M. Goodman, J. Org. Chem, vol.72, issue.25, p.9656, 2007.

C. R. Jenney and J. M. Anderson, J. Biomed. Mater. Res, vol.44, issue.2, p.206, 1999.

C. R. Deible, P. Petrosko, P. C. Johnson, E. J. Beckman, A. J. Russell et al., Biomaterials, vol.19, issue.20, p.1885, 1998.

M. J. Hearn, B. D. Ratner, and D. Briggs, Macromolecules, vol.21, issue.10, p.2950, 1988.

Y. Jiang, B. Rongbing, T. Ling, S. Jian, and L. Sicong, Colloids Surf. B Biointerfaces, vol.36, issue.1, p.27, 2004.

S. N. Rodrigues, I. C. Gonçalves, M. C. Martins, M. A. Barbosa, and B. D. Ratner, Biomaterials, vol.27, issue.31, p.5357, 2006.

E. Brinkman and A. Foot, , vol.11, 0200.

I. Francolini, F. Crisante, A. Martinelli, L. D'ilario, and A. Piozzi, Acta Biomater, vol.8, issue.2, p.549, 2012.

K. D. Park, Y. S. Kim, D. K. Han, Y. H. Kim, E. H. Lee et al., Biomaterials, vol.19, p.851, 1998.

Y. A. Elabd, J. M. Sloan, and T. A. Barbari, Polymer, issue.6, p.2203, 2000.

K. Sreenivasan and . J. Polym, , vol.22, p.620, 1990.

J. P. Theron, Development of crosslinkable, thermoplastic polyurethanes for cardiovascular prostheses, 2006.

J. Yuan, Y. L. Yuan, J. Shen, S. C. Lin, W. Zhu et al., Chin. J. Polym. Sci, vol.21, issue.4, p.419, 2003.

O. Mrad, J. Saunier, C. Aymes-chodur, V. Rosilio, S. Bouttier et al., , p.764, 2010.

K. G. Tingey, J. D. Andrade, and . Langmuir, , vol.7, p.2471, 1991.

H. Yasuda, E. J. Charlson, E. M. Charlson, T. Yasuda, M. Miyama et al., Langmuir, vol.7, issue.10, p.2394, 1991.

J. R. Ochoa-gómez, O. Gómez-jiménez-aberasturi, C. Ramírez-lópez, B. Maestro-madurga, . Green et al., , vol.14, p.3368, 2012.

J. R. Ochoa-gómez, O. Gómez-jiménez-aberasturi, B. Maestro-madurga, A. Pesquera-rodríguez, C. Ramírez-lópez et al., Appl. Catal. Gen, vol.366, issue.2, p.315, 2009.

L. S. Bondar, P. P. Rodionov, V. I. Pavskii, V. A. Maslennikov, and R. A. Okunev, Bull. Acad. Sci. USSR Div. Chem. Sci, vol.21, issue.2, p.262, 1972.

F. S. Simanjuntak, J. S. Choi, G. Lee, H. J. Lee, S. D. Lee et al., Appl. Catal. B Environ, p.642, 2015.

M. K. Munshi, S. M. Gade, M. V. Mane, D. Mishra, S. Pal et al., J. Mol. Catal. Chem, p.144, 2014.

H. Mutlu, J. Ruiz, S. C. Solleder, M. A. Meier, and . Green-chem, , vol.14, p.1728, 2012.

P. U. Naik, L. Petitjean, K. Refes, M. Picquet, and L. Plasseraud, Adv. Synth. Catal, vol.351, p.1753, 2009.

A. A. Shaikh and S. Sivaram, Ind. Eng. Chem. Res, vol.31, issue.4, p.1167, 1992.

T. Keller, J. Holtbruegge, and A. Górak, Chem. Eng. J, vol.180, p.309, 2012.

F. Mei, E. Chen, G. Li, and . React, Kinet. Catal. Lett, issue.1, p.27, 2009.

L. Bondar, . Maslenni, P. Rodionov, V. Pavskii, and R. Okunev, Izv. Akad. Nauk Sssr-Seriya Khimicheskaya, issue.2, p.308, 1972.

A. G. Shaikh and S. Sivaram, Chem. Rev, vol.96, issue.3, p.951, 1996.

L. Zhang, W. Guo, D. Liu, J. Yao, L. Ji et al., Energy Fuels, vol.22, issue.2, p.1353, 2008.

S. Pyo, P. Persson, M. A. Mollaahmad, K. Sörensen, S. Lundmark et al., Pure Appl. Chem, issue.3, p.84, 2011.

O. C. Al-hamouz, B. A. Sweileh, and H. A. Al-salah, J. Appl. Polym. Sci, vol.102, issue.4, p.3597, 2006.

Z. Wang, X. Yang, S. Liu, J. Hu, H. Zhang et al., , vol.5, p.87311, 2015.

J. H. Park, J. Y. Jeon, J. J. Lee, Y. Jang, J. K. Varghese et al., Macromolecules, vol.46, issue.9, p.3301, 2013.

S. Bigot, N. Kébir, L. Plasseraud, and F. Burel, Polymer, vol.66, p.127, 2015.

P. U. Naik, K. Refes, F. Sadaka, C. Brachais, G. Boni et al., Polym. Chem, vol.2012, issue.6, p.1475

M. Fèvre, J. Pinaud, Y. Gnanou, J. Vignolle, and D. Taton, Chem. Soc. Rev, vol.42, issue.5, p.2142, 2013.

S. Naumann and M. R. Buchmeiser, Catal. Sci. Technol, vol.2014, issue.8, p.2466

H. Mutlu, J. Ruiz, S. C. Solleder, M. A. Meier, and . Green-chem, , vol.14, p.1728, 2012.

S. Carloni, D. E. De-vos, P. A. Jacobs, R. Maggi, G. Sartori et al., , vol.205, p.199, 2002.

J. Tan and J. L. Brash, Biomed. Mater. Res. A, vol.85, issue.4, p.862, 2008.

J. Tan, W. G. Mcclung, and J. L. Brash, J. Biomater. Sci.-Polym. Ed, vol.24, issue.4, p.497, 2013.

J. Ji, M. A. Barbosa, L. Feng, and J. Shen, 677. Annexes deux polyuréthanes de compositions chimiques différentes : le Pellethane® 2363AE80 (Lubrizol) et le Carbothane? PC3595 (Lubrizol), vol.13, 2002.

, Tableau 54. Caractérisation du Pellethane® 2363AE80 par chromatographie à perméation de gel Mn, p.52242

. Mw, , p.110331

. Pdi-(mw/mn, , vol.2