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Manuel Modolell

Showing results (1-10 of 28) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|January 21, 2012
Arginine and macrophage activationMònica Comalada, Andree Yeramian, Manuel Modolell, et al.
Immunobiology|January 11, 2005
Arginine metabolism during macrophage autocrine activation and infection with mouse hepatitis virus 3Cristiani Moreira, Maria H Tsuhako, Milene Tino de Franco, et al.
Blood|July 7, 2005
Quiescent and activated mouse granulocytes do not express granzyme A and B or perforin: similarities or differences with human polymorphonuclear leukocytes?Praxedis Martin, Reinhard Wallich, Julian Pardo, et al.
Plos One|September 17, 2013
Phenotypic alteration of neutrophils in the blood of HIV seropositive patientsTom Cloke, Markus Munder, Philip Bergin, et al.
Plos Neglected Tropical Diseases|May 15, 2008
Age-related alteration of arginase activity impacts on severity of leishmaniasisIngrid Müller, Asrat Hailu, Beak-San Choi, et al.
International Journal for Parasitology|August 30, 2008
Schistosoma mansoni arginase shares functional similarities with human orthologs but depends upon disulphide bridges for enzymatic activityJennifer M Fitzpatrick, Jose M Fuentes, Iain W Chalmers, et al.
The Journal of Infectious Diseases|March 6, 2013
Arginine transport is impaired in C57Bl/6 mouse macrophages as a result of a deletion in the promoter of Slc7a2 (CAT2), and susceptibility to Leishmania infection is reducedM Gloria Sans-Fons, Andrée Yeramian, Selma Pereira-Lopes, et al.
European Journal of Immunology|May 17, 2006
Macrophages require distinct arginine catabolism and transport systems for proliferation and for activationAndrée Yeramian, Lorena Martin, Luis Arpa, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|April 7, 2005
Arginase and polyamine synthesis are key factors in the regulation of experimental leishmaniasis in vivoPascale Kropf, José M Fuentes, Eva Fähnrich, et al.
Infection and Immunity|March 25, 2004
Toll-like receptor 4 contributes to efficient control of infection with the protozoan parasite Leishmania majorPascale Kropf, Marina A Freudenberg, Manuel Modolell, et al.
Pageof 3

Showing results (1-10 of 28) with videos related to

Sort By:
Pageof 3
Methods in Molecular Biology (Clifton, N.J.)|January 21, 2012
Arginine and macrophage activationMònica Comalada, Andree Yeramian, Manuel Modolell, et al.
Immunobiology|January 11, 2005
Arginine metabolism during macrophage autocrine activation and infection with mouse hepatitis virus 3Cristiani Moreira, Maria H Tsuhako, Milene Tino de Franco, et al.
Blood|July 7, 2005
Quiescent and activated mouse granulocytes do not express granzyme A and B or perforin: similarities or differences with human polymorphonuclear leukocytes?Praxedis Martin, Reinhard Wallich, Julian Pardo, et al.
Plos One|September 17, 2013
Phenotypic alteration of neutrophils in the blood of HIV seropositive patientsTom Cloke, Markus Munder, Philip Bergin, et al.
Plos Neglected Tropical Diseases|May 15, 2008
Age-related alteration of arginase activity impacts on severity of leishmaniasisIngrid Müller, Asrat Hailu, Beak-San Choi, et al.
International Journal for Parasitology|August 30, 2008
Schistosoma mansoni arginase shares functional similarities with human orthologs but depends upon disulphide bridges for enzymatic activityJennifer M Fitzpatrick, Jose M Fuentes, Iain W Chalmers, et al.
The Journal of Infectious Diseases|March 6, 2013
Arginine transport is impaired in C57Bl/6 mouse macrophages as a result of a deletion in the promoter of Slc7a2 (CAT2), and susceptibility to Leishmania infection is reducedM Gloria Sans-Fons, Andrée Yeramian, Selma Pereira-Lopes, et al.
European Journal of Immunology|May 17, 2006
Macrophages require distinct arginine catabolism and transport systems for proliferation and for activationAndrée Yeramian, Lorena Martin, Luis Arpa, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|April 7, 2005
Arginase and polyamine synthesis are key factors in the regulation of experimental leishmaniasis in vivoPascale Kropf, José M Fuentes, Eva Fähnrich, et al.
Infection and Immunity|March 25, 2004
Toll-like receptor 4 contributes to efficient control of infection with the protozoan parasite Leishmania majorPascale Kropf, Marina A Freudenberg, Manuel Modolell, et al.
Pageof 3