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Current Drug Targets|March 4, 2011
C. elegans: an all in one model for antimicrobial drug discoveryB Squiban, C Léopold KurzNature Reviews. Genetics|May 3, 2003
Caenorhabditis elegans: an emerging genetic model for the study of innate immunityC Léopold Kurz, Jonathan J EwbankCurrent Opinion in Microbiology|December 21, 2006
Infection in a dish: high-throughput analyses of bacterial pathogenesisC Léopold Kurz, Jonathan J EwbankImmunological Reviews|June 18, 2004
Evolution of the innate immune system: the worm perspectiveHinrich Schulenburg, C Léopold Kurz, Jonathan J EwbankDevelopmental and Comparative Immunology|September 10, 2013
f57f4.4p::gfp as a fluorescent reporter for analysis of the C. elegans response to bacterial infectionIngrid Julien-Gau, Marion Schmidt, C Léopold KurzMicrobiology (Reading, England)|June 9, 2004
luxS mutants of Serratia defective in autoinducer-2-dependent 'quorum sensing' show strain-dependent impacts on virulence and production of carbapenem and prodigiosinSarah J Coulthurst, C Léopold Kurz, George P C SalmondBiochemical and Biophysical Research Communications|September 25, 2007
Caenorhabditis elegans pgp-5 is involved in resistance to bacterial infection and heavy metal and its regulation requires TIR-1 and a p38 map kinase cascadeC Léopold Kurz, Michael Shapira, Karen Chen, et al.Journal of Insect Physiology|July 25, 2025
Drosophila's sensory responses to bacterial peptidoglycan integrates positive and negative signalsMartina Montanari, Gérard Manière, Ambra Masuzzo, et al.Cell Host & Microbe|April 22, 2009
Antifungal innate immunity in C. elegans: PKCdelta links G protein signaling and a conserved p38 MAPK cascadeKatja Ziegler, C Léopold Kurz, Sophie Cypowyj, et al.Cell Host & Microbe|February 6, 2018
Cytosolic and Secreted Peptidoglycan-Degrading Enzymes in Drosophila Respectively Control Local and Systemic Immune Responses to MicrobiotaBernard Charroux, Florence Capo, C Léopold Kurz, et al.Pageof 2