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Microbes and Infection|May 17, 2006
Is the reactive oxygen species-dependent-NF-kappaB activation observed in iron-loaded BALB/c mice a key process preventing growth of Leishmania major progeny and tissue-damage?Sylvia Bisti, Ketty SoteriadouVirulence|May 14, 2011
Trypanosomatid apoptosis: 'Apoptosis' without the canonical regulatorsDespina Smirlis, Ketty SoteriadouMicrobes and Infection|May 16, 2006
Down-regulation of gp63 level in Leishmania amazonensis promastigotes reduces their infectivity in BALB/c miceMaria Thiakaki, Bala Kolli, Kwang-Poo Chang, et al.Microbes and Infection|May 16, 2006
The prevention of the growth of Leishmania major progeny in BALB/c iron-loaded mice: a process coupled to increased oxidative burst, the amplitude and duration of which depend on initial parasite developmental stage and doseSylvia Bisti, Georgia Konidou, Johan Boelaert, et al.The Biochemical Journal|September 23, 2009
Leishmania donovani Ran-GTPase interacts at the nuclear rim with linker histone H1Despina Smirlis, Haralabia Boleti, Maria Gaitanou, et al.Diagnostic Microbiology and Infectious Disease|September 25, 2007
Development of a molecular assay specific for the Leishmania donovani complex that discriminates L. donovani/Leishmania infantum zymodemes: a useful tool for typing MON-1Christos Haralambous, Maria Antoniou, Francine Pratlong, et al.Planta Medica|August 11, 2007
In vitro activity of 10-deacetylbaccatin III against Leishmania donovani promastigotes and intracellular amastigotesKaterina Georgopoulou, Despina Smirlis, Sylvia Bisti, et al.Microbes and Infection|May 4, 2005
Sand fly specificity of saliva-mediated protective immunity in Leishmania amazonensis-BALB/c mouse modelMaria Thiakaki, Iva Rohousova, Vera Volfova, et al.Molecular Microbiology|May 8, 2013
The loss of virulence of histone H1 overexpressing Leishmania donovani parasites is directly associated with a reduction of HSP83 rate of translationAlexandros Alexandratos, Joachim Clos, Martina Samiotaki, et al.Parasites & Vectors|November 19, 2010
Targeting essential pathways in trypanosomatids gives insights into protozoan mechanisms of cell deathDespina Smirlis, Michael Duszenko, Antonio Jiménez Ruiz, et al.Pageof 3