Références bibliographiques
84
Silva, T., Alves, A., Ferreira, B., Oliveira, J., Reys, L., Ferreira, R., . . . Reis, R. (2012).
Materials of marine origin: a review on polymers and ceramics of biomedical interest.
International
Materials
Reviews,
57(5),
276-306.
doi:10.1179/1743280412Y.0000000002
Srikanth, S., & Berk, S. (1994). Adaptation of amoebae to cooling tower biocides. Microbial
Ecology, 27(3), 293-301. doi:10.1007/BF00182412
Starnbach, M., Falkow, S., & Tompkins, L. (1989). Species-specific detection of Legionella
pneumophila in water by DNA amplification and hybridization. Journal of Clinical
Microbiology, 27(6), 1257-1261. doi:10.1128/jcm.27.6.1257-1261.1989
Steinert, M., Hentschel, U., & Hacker, J. (2002). Legionella pneumophila: an aquatic microbe
goes astray. Legionella pneumophila: an aquatic microbe goes astray, 26(2), 149-162.
doi:10.1111/j.1574-6976.2002.tb00607.x
Steinert, M., Ockert, G., Lück, C., & Hacker, J. (1998). Regrowth of Legionella pneumophila
in a heat-disinfected plumbing system. Zentralblatt Fur Bakteriologie: International
Journal of Medical Microbiology, 288(3), 331-342. doi:10.1016/s09348840(98)80005-4
Stout, J., Arnold, B., & Yu, V. (1998). Activity of azithromycin, clarithromycin,
roxithromycin, dirithromycin, quinupristin/dalfopristin and erythromycin against
Legionella species by intracellular susceptibility testing in HL-60 cells. The Journal of
Antimicrobial Chemotherapy, 41(2), 289-291. doi:10.1093/jac/41.2.289
Tayel, , A., Moussa, S., Opwis, K., Knittel, , D., Schollmeyer, E., & Nickisch-Hartfiel, A.
(2010). Inhibition of microbial pathogens by fungal chitosan. International Journal of
Biological Macromolecules, 47(1), 10-14. doi:10.1016/j.ijbiomac.2010.04.005
Tolaimate, A., Desbrieres, J., Rhazi, M., & Alagui, A. (2003). Contribution to the preparation
of chitins and chitosans with controlled physico-chemical properties. Polymer, 26(44),
7939-7952. doi:10.1016/j.polymer.2003.10.025
Truong, T., Hausler, R., Monette, F., & Niquette, P. (2007). Valorisation des résidus industriels
de pêches pour la transformation de chitosane par technique hydrothermo-chimique.
Revue des sciences de l'eau / Journal of Water Science, 20(3), 253-262.
doi:10.7202/016170ar
Tuyishime , P., Byong, H., & Nsanzabera, F. (2017). Current Status and New Perspectives on
Chitin and Chitosan as Functional Biopolymers. Applied Biochemistry and
Biotechnology, 181(4), 1314-1337. doi:10.1007/s12010-016-2286-2
Vivar, M., Pilar, N., Fuentes, M., & López-Vargas, A. (2017). Separating the UV and thermal
components during real-time solar disinfection experiments: The effect of temperature.
Solar Energy, 146, 334-341. doi:10.1016/j.solener.2017.02.053
Wallis, L., & Priscilla, R. (2005). Soil as a source of Legionella pneumophila serogroup 1
(Lp1). Australian and New Zealand Journal of Public Health, 29(6), 518-520.
doi:10.1111/j.1467-842x.2005.tb00242.x
84
Silva, T., Alves, A., Ferreira, B., Oliveira, J., Reys, L., Ferreira, R., . . . Reis, R. (2012).
Materials of marine origin: a review on polymers and ceramics of biomedical interest.
International
Materials
Reviews,
57(5),
276-306.
doi:10.1179/1743280412Y.0000000002
Srikanth, S., & Berk, S. (1994). Adaptation of amoebae to cooling tower biocides. Microbial
Ecology, 27(3), 293-301. doi:10.1007/BF00182412
Starnbach, M., Falkow, S., & Tompkins, L. (1989). Species-specific detection of Legionella
pneumophila in water by DNA amplification and hybridization. Journal of Clinical
Microbiology, 27(6), 1257-1261. doi:10.1128/jcm.27.6.1257-1261.1989
Steinert, M., Hentschel, U., & Hacker, J. (2002). Legionella pneumophila: an aquatic microbe
goes astray. Legionella pneumophila: an aquatic microbe goes astray, 26(2), 149-162.
doi:10.1111/j.1574-6976.2002.tb00607.x
Steinert, M., Ockert, G., Lück, C., & Hacker, J. (1998). Regrowth of Legionella pneumophila
in a heat-disinfected plumbing system. Zentralblatt Fur Bakteriologie: International
Journal of Medical Microbiology, 288(3), 331-342. doi:10.1016/s09348840(98)80005-4
Stout, J., Arnold, B., & Yu, V. (1998). Activity of azithromycin, clarithromycin,
roxithromycin, dirithromycin, quinupristin/dalfopristin and erythromycin against
Legionella species by intracellular susceptibility testing in HL-60 cells. The Journal of
Antimicrobial Chemotherapy, 41(2), 289-291. doi:10.1093/jac/41.2.289
Tayel, , A., Moussa, S., Opwis, K., Knittel, , D., Schollmeyer, E., & Nickisch-Hartfiel, A.
(2010). Inhibition of microbial pathogens by fungal chitosan. International Journal of
Biological Macromolecules, 47(1), 10-14. doi:10.1016/j.ijbiomac.2010.04.005
Tolaimate, A., Desbrieres, J., Rhazi, M., & Alagui, A. (2003). Contribution to the preparation
of chitins and chitosans with controlled physico-chemical properties. Polymer, 26(44),
7939-7952. doi:10.1016/j.polymer.2003.10.025
Truong, T., Hausler, R., Monette, F., & Niquette, P. (2007). Valorisation des résidus industriels
de pêches pour la transformation de chitosane par technique hydrothermo-chimique.
Revue des sciences de l'eau / Journal of Water Science, 20(3), 253-262.
doi:10.7202/016170ar
Tuyishime , P., Byong, H., & Nsanzabera, F. (2017). Current Status and New Perspectives on
Chitin and Chitosan as Functional Biopolymers. Applied Biochemistry and
Biotechnology, 181(4), 1314-1337. doi:10.1007/s12010-016-2286-2
Vivar, M., Pilar, N., Fuentes, M., & López-Vargas, A. (2017). Separating the UV and thermal
components during real-time solar disinfection experiments: The effect of temperature.
Solar Energy, 146, 334-341. doi:10.1016/j.solener.2017.02.053
Wallis, L., & Priscilla, R. (2005). Soil as a source of Legionella pneumophila serogroup 1
(Lp1). Australian and New Zealand Journal of Public Health, 29(6), 518-520.
doi:10.1111/j.1467-842x.2005.tb00242.x
