Références bibliographiques
medical devices. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2018.
Vol. 106, n° 4, pp. 1524–1533.
WIEGEMANN, Maja, 2005. Adhesion in blue mussels (Mytilus edulis) and barnacles (genus
Balanus): Mechanisms and technical applications. Aquatic Sciences. mai 2005. Vol. 67, n° 2,
pp. 166‑176. DOI 10.1007/s00027-005-0758-5.
WoRMS Editorial Board, 2017. World Register of Marine Species.Available from
http://www.marinespecies.org.
WROLSTAD, Ronald E., ACREE, Terry E., DECKER, Eric A., PENNER, Michael H., REID, David
S., SCHWARTZ, Steven J., SHOEMAKER, Charles F., SMITH, Denise M. et SPORNS, Peter, 2005.
Handbook of food analytical chemistry, volume 1: Water, proteins, enzymes, lipids, and
carbohydrates. John Wiley & Sons.
XU, Y., GALLERT, C. et WINTER, J., 2008. Chitin purification from shrimp wastes by microbial
deproteination and decalcification. Applied Microbiology and Biotechnology. 2008. Vol. 79, n° 4,
pp. 687–697.
YALÇIN, Funda Nuray, 2007. Biological activities of the marine sponge Axinella. Hacettepe
Üniversitesi Eczacılık Fakültesi Dergisi. 2007. N° 1, pp. 47–60.
YANG, Haijie, LUO, Tian, LI, Fang, LI, Shaojing et XU, Xun, 2007. Purification and
characterisation of a calcium-independent lectin (PjLec) from the haemolymph of the shrimp Penaeus
japonicus. Fish & Shellfish Immunology. 2007. Vol. 22, n° 1‑2, pp. 88–97.
YASSINE, Moufid, AMMAR, Izdihar et SHABBAR, Alma, 2013. Journal of Pharmacognosy and
Phytochemistry. Vol. 1, n° 6, pp. 11.
YOUCEFI, Fatma, RIAZI, Ali, MOKHTAR, Meriem, CHOUKRI, Tefiani et NAIMA, Khaouani,
2017. Physicochemical Characterization and In-Vitro Antimicrobial Activity of Chitosan Extracted
from Shrimp Shells Waste from Beni Saf Sea, Algeria. South Asian Journal of Experimental Biology.
2017. Vol. 7, n° 3, pp. 122–129.
YOUNES, Islem, HAJJI, Sawssen, FRACHET, Véronique, RINAUDO, Marguerite, JELLOULI,
Kemel et NASRI, Moncef, 2014. Chitin extraction from shrimp shell using enzymatic treatment.
Antitumor, antioxidant and antimicrobial activities of chitosan. International Journal of Biological
Macromolecules. 2014. Vol. 69, pp. 489–498.
YU, Hai-Bo, GAO, Qin-Feng, DONG, Shuang-Lin et WEN, Bin, 2015. Changes in fatty acid profiles
of sea cucumber Apostichopus japonicus (Selenka) induced by terrestrial plants in diets. Aquaculture.
mai 2015. Vol. 442, pp. 119‑124. DOI 10.1016/j.aquaculture.2015.03.002.
ZAL, Franck et ROUSSELOT, Morgane, 2014. Extracellular Hemoglobins from Annelids, and their
Potential Use in Biotechnology. In : Outstanding Marine Molecules [en ligne]. Weinheim, Germany :
Wiley-VCH Verlag GmbH & Co. KGaA. pp. 361‑376. [Consulté le 5 juillet 2020]. ISBN 978-3-52768150-1. Disponible à l’adresse : http://doi.wiley.com/10.1002/9783527681501.ch16
ZARAI, Zied, BALTI, Rafik, MEJDOUB, Hafedh, GARGOURI, Youssef et SAYARI, Adel, 2012.
Process for extracting gelatin from marine snail (Hexaplex trunculus): Chemical composition and
functional properties. Process Biochemistry. 2012. Vol. 47, n° 12, pp. 1779–1784.
ZARAI, Zied, GHARSALLAH, Houda, HAMMAMI, Adnane, MEJDOUB, Hafedh, BEZZINE,
Sofiane et GARGOURI, Youssef-Talel, 2012. Antibacterial, anti-chlamydial, and cytotoxic activities
medical devices. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2018.
Vol. 106, n° 4, pp. 1524–1533.
WIEGEMANN, Maja, 2005. Adhesion in blue mussels (Mytilus edulis) and barnacles (genus
Balanus): Mechanisms and technical applications. Aquatic Sciences. mai 2005. Vol. 67, n° 2,
pp. 166‑176. DOI 10.1007/s00027-005-0758-5.
WoRMS Editorial Board, 2017. World Register of Marine Species.Available from
http://www.marinespecies.org.
WROLSTAD, Ronald E., ACREE, Terry E., DECKER, Eric A., PENNER, Michael H., REID, David
S., SCHWARTZ, Steven J., SHOEMAKER, Charles F., SMITH, Denise M. et SPORNS, Peter, 2005.
Handbook of food analytical chemistry, volume 1: Water, proteins, enzymes, lipids, and
carbohydrates. John Wiley & Sons.
XU, Y., GALLERT, C. et WINTER, J., 2008. Chitin purification from shrimp wastes by microbial
deproteination and decalcification. Applied Microbiology and Biotechnology. 2008. Vol. 79, n° 4,
pp. 687–697.
YALÇIN, Funda Nuray, 2007. Biological activities of the marine sponge Axinella. Hacettepe
Üniversitesi Eczacılık Fakültesi Dergisi. 2007. N° 1, pp. 47–60.
YANG, Haijie, LUO, Tian, LI, Fang, LI, Shaojing et XU, Xun, 2007. Purification and
characterisation of a calcium-independent lectin (PjLec) from the haemolymph of the shrimp Penaeus
japonicus. Fish & Shellfish Immunology. 2007. Vol. 22, n° 1‑2, pp. 88–97.
YASSINE, Moufid, AMMAR, Izdihar et SHABBAR, Alma, 2013. Journal of Pharmacognosy and
Phytochemistry. Vol. 1, n° 6, pp. 11.
YOUCEFI, Fatma, RIAZI, Ali, MOKHTAR, Meriem, CHOUKRI, Tefiani et NAIMA, Khaouani,
2017. Physicochemical Characterization and In-Vitro Antimicrobial Activity of Chitosan Extracted
from Shrimp Shells Waste from Beni Saf Sea, Algeria. South Asian Journal of Experimental Biology.
2017. Vol. 7, n° 3, pp. 122–129.
YOUNES, Islem, HAJJI, Sawssen, FRACHET, Véronique, RINAUDO, Marguerite, JELLOULI,
Kemel et NASRI, Moncef, 2014. Chitin extraction from shrimp shell using enzymatic treatment.
Antitumor, antioxidant and antimicrobial activities of chitosan. International Journal of Biological
Macromolecules. 2014. Vol. 69, pp. 489–498.
YU, Hai-Bo, GAO, Qin-Feng, DONG, Shuang-Lin et WEN, Bin, 2015. Changes in fatty acid profiles
of sea cucumber Apostichopus japonicus (Selenka) induced by terrestrial plants in diets. Aquaculture.
mai 2015. Vol. 442, pp. 119‑124. DOI 10.1016/j.aquaculture.2015.03.002.
ZAL, Franck et ROUSSELOT, Morgane, 2014. Extracellular Hemoglobins from Annelids, and their
Potential Use in Biotechnology. In : Outstanding Marine Molecules [en ligne]. Weinheim, Germany :
Wiley-VCH Verlag GmbH & Co. KGaA. pp. 361‑376. [Consulté le 5 juillet 2020]. ISBN 978-3-52768150-1. Disponible à l’adresse : http://doi.wiley.com/10.1002/9783527681501.ch16
ZARAI, Zied, BALTI, Rafik, MEJDOUB, Hafedh, GARGOURI, Youssef et SAYARI, Adel, 2012.
Process for extracting gelatin from marine snail (Hexaplex trunculus): Chemical composition and
functional properties. Process Biochemistry. 2012. Vol. 47, n° 12, pp. 1779–1784.
ZARAI, Zied, GHARSALLAH, Houda, HAMMAMI, Adnane, MEJDOUB, Hafedh, BEZZINE,
Sofiane et GARGOURI, Youssef-Talel, 2012. Antibacterial, anti-chlamydial, and cytotoxic activities
