07.06.2013 Views

Le moustique Culex pipiens, vecteur potentiel des virus ... - Toubkal

Le moustique Culex pipiens, vecteur potentiel des virus ... - Toubkal

Le moustique Culex pipiens, vecteur potentiel des virus ... - Toubkal

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

<strong>Le</strong>maitre B, Kromer-Metzger E, Michaut L, Nicolas E, Meister M, Georgel P,<br />

Reichhart JM, Hoffmann JA (1995). A recessive mutation, immune deficiency<br />

(imd), defines two distinct control pathways in the Drosophila host defense.<br />

Proc Natl Acad Sci USA 92(21):9465-9469.<br />

<strong>Le</strong>maitre B, Nicolas E, Michaut L, Reichhart JM, Hoffmann JA (1996). The<br />

dorsoventral regulatory gene cassette spatzle/Toll/cactus controls the potent<br />

antifungal response in Drosophila adults. Cell 86: 973-983.<br />

Libraty DH, Pichyangkul S, Ajariyakhajorn C, Endy TP, Ennis FA (2001). Human<br />

dendritic cells are activated by dengue <strong>virus</strong> infection: Enhancement by<br />

gamma interferon and implications for disease pathogenesis. J Virol 75:<br />

3501-3508.<br />

Lim PY, Behr MJ, Chadwick CM, Shi PY, Bernard KA (2011). Keratinocytes are cell<br />

targets of West Nile <strong>virus</strong> in vivo. J Virol 85(10): 5197-5201.<br />

Linthicum KJ, Davies FG, Kairo A, Bailey CL (1985). Rift Valley fever <strong>virus</strong> (family<br />

Bunyaviridae, genus Phlebo<strong>virus</strong>). Isolations from Diptera collected during<br />

an inter-epizootic period in Kenya. J Hyg (Lond) 95(1): 197-209.<br />

Logan TM, Linthicum KJ, Davies FG, Binepal YS, Roberts CR (1991).Isolation of Rift<br />

Valley fever <strong>virus</strong> from mosquitoes (Diptera: Culicidae) collected during an<br />

outbreak in domestic animals in Kenya. J Med Entomol 28(2): 293-295.<br />

Lozach PY, Kühbacher A, Meier R, Mancini R, Bitto D, Bouloy M, Helenius A (2011).<br />

DC-SIGN as a receptor for phlebo<strong>virus</strong>es. Cell Host Microbe.10(1):75-88.<br />

Lukacik G, Anand M, Shusas EJ, Howard JJ, Oliver J, Chen H, Backenson PB,<br />

Kauffman EB, Bernard KA, Kramer LD, White DJ (2006). West Nile <strong>virus</strong><br />

surveillance in mosquitoes in New York State, 2000-2004.J Am Mosq<br />

Control Assoc 22(2): 264-271.<br />

Lvov DK, Butenko AM, Gromashevsky VL, Kovtunov AI, Prilipov AG, Kinney R,<br />

Aristova VA, Dzharkenov AF, Samokhvalov EI, Savage HM, Shchelkanov<br />

MY, Galkina IV, Deryabin PG, Gubler DJ, Kulikova LN, Alkhovsky SK,<br />

Moskvina TM, Zlobina LV, Sadykova GK, Shatalov AG, Lvov DN, Usachev<br />

VE, Voronina AG (2004). West Nile <strong>virus</strong> and other zoonotic <strong>virus</strong>es in<br />

Russia: examples of emerging-reemerging situations. Arch Virol Suppl 18:<br />

85-96.<br />

Macdonald G (1957) The epidemiology and control of malaria. London, New York:<br />

Oxford University Press: 201.<br />

Mackenzie J (1999). Emerging viral diseases: an Australian perspective. Emerg<br />

Infect Dis 5:1-8.<br />

Mackenzie JS, Gubler DJ, Petersen LR (2004). Emerging flavi<strong>virus</strong>es: the spread<br />

and resurgence of Japanese encephalitis, West Nile and dengue <strong>virus</strong>es.Nat<br />

Med 10(12 Suppl):S98-109.<br />

97

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!