Références Bibliographiques
57
BRUNETON J., (2008). Acides phénols. In: Pharmacognosie, phytochimie et plantes
médicinales., Paris Ed: Lavoisier. 260 p.
CABIOC’H J. FJY., (1992) . Le Toquin A., Boudouresque C.F., Meinesz A., Verlaque M.
Guide des algues des mers d’Europe : Manche/Atlantique. 1:272 p.
CACAMESSE S., AZZOLINA R ., et al., (1980). Antimicrobial and antiviral activities of
extracts from Mediterranean algae. Bot. Mar, 23: pp 285-288 . CARINE MASSAUX.,
2012. Polyphénols : des alliés pour la santé, abeilles & Cie n°149CATHERINE
BOYEN., PASCALJAOUEN., 2015. Les Biotechnologies Marines dans le Grand
Ouest : 61p.
CARBO A., AUGUR C., et al.,(2008). Microbial production of ellagic acid and
biodégradation of ellagitannins. Applied Microbiology and Biotechnology, 78: pp
189-199
CARLOS WG, DELA CRUZ CS., et al., (2020). Novel Wuhan (2019nCoV) coronavirus.
Am J Respir Crit Care Med 2020;201:P7–8. doi:10.1164/ rccm.2014P7.
CHAN JF., KOK KH., et al., (2020). Genomic characterization of the 2019 novel humanpathogenic coronavirus isolated from a patient with atypical pneumonia after visiting
Wuhan.
Emerg
Microbes
Infect
2020;9:221–
36.
doi:10.1080/22221751.2020.1719902.
NEJMoa2001017.
CHANG D., LIN M., et al., (2020). Epidemiologic and clinical characteristics of novel
coronavirus infections involving 13 patients outside Wuhan, China. JAMA 2020 Feb 7
[Epub ahead of print]. doi:10.1001/ jama.2020.1623.
CHAVAN F., SHAHIDI M., NACZK G., (2001). Extraction of condensed tannins from
beach pe.(Lathyrus maritimus L.) as affected by different solvents. J. Food Chem. 75 :
pp 509 -512 CHOUIKHI A., 2013. Potential applications of marine seaweeds and
pharmacological activities of their metabolites. A review., International Congress of
the Populations & Animal Communities: 40p.
CHEN N., ZHOU M., et al., (2020). Epidemiological and clinical characteristics of 99 cases
of 2019 novel coronavirus pneumonia in Wuhan, China: a descriptive study. Lancet
57
BRUNETON J., (2008). Acides phénols. In: Pharmacognosie, phytochimie et plantes
médicinales., Paris Ed: Lavoisier. 260 p.
CABIOC’H J. FJY., (1992) . Le Toquin A., Boudouresque C.F., Meinesz A., Verlaque M.
Guide des algues des mers d’Europe : Manche/Atlantique. 1:272 p.
CACAMESSE S., AZZOLINA R ., et al., (1980). Antimicrobial and antiviral activities of
extracts from Mediterranean algae. Bot. Mar, 23: pp 285-288 . CARINE MASSAUX.,
2012. Polyphénols : des alliés pour la santé, abeilles & Cie n°149CATHERINE
BOYEN., PASCALJAOUEN., 2015. Les Biotechnologies Marines dans le Grand
Ouest : 61p.
CARBO A., AUGUR C., et al.,(2008). Microbial production of ellagic acid and
biodégradation of ellagitannins. Applied Microbiology and Biotechnology, 78: pp
189-199
CARLOS WG, DELA CRUZ CS., et al., (2020). Novel Wuhan (2019nCoV) coronavirus.
Am J Respir Crit Care Med 2020;201:P7–8. doi:10.1164/ rccm.2014P7.
CHAN JF., KOK KH., et al., (2020). Genomic characterization of the 2019 novel humanpathogenic coronavirus isolated from a patient with atypical pneumonia after visiting
Wuhan.
Emerg
Microbes
Infect
2020;9:221–
36.
doi:10.1080/22221751.2020.1719902.
NEJMoa2001017.
CHANG D., LIN M., et al., (2020). Epidemiologic and clinical characteristics of novel
coronavirus infections involving 13 patients outside Wuhan, China. JAMA 2020 Feb 7
[Epub ahead of print]. doi:10.1001/ jama.2020.1623.
CHAVAN F., SHAHIDI M., NACZK G., (2001). Extraction of condensed tannins from
beach pe.(Lathyrus maritimus L.) as affected by different solvents. J. Food Chem. 75 :
pp 509 -512 CHOUIKHI A., 2013. Potential applications of marine seaweeds and
pharmacological activities of their metabolites. A review., International Congress of
the Populations & Animal Communities: 40p.
CHEN N., ZHOU M., et al., (2020). Epidemiological and clinical characteristics of 99 cases
of 2019 novel coronavirus pneumonia in Wuhan, China: a descriptive study. Lancet
