Florent Sebbane
Sebbane, Florent, 19..-....
VIAF ID: 219324347 (Personal)
Permalink: http://viaf.org/viaf/219324347
Preferred Forms
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100 0 _ ‡a Florent Sebbane
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100 1 _ ‡a Sebbane, Florent, ‡d 19..-....
4xx's: Alternate Name Forms (3)
Works
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Autophagosomes can support Yersinia pseudotuberculosis replication in macrophages |
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Body lice, yersinia pestis orientalis, and black death |
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Caractérisation génétique du locus uréase de Yersinia pestis et Yersinia pseudotuberculosis |
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Curative Treatment of Severe Gram-Negative Bacterial Infections by a New Class of Antibiotics Targeting LpxC. |
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Drug design from the cryptic inhibitor envelope |
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Efficacy of ciprofloxacin-gentamicin combination therapy in murine bubonic plague |
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Evaluation of the Role of the opgGH Operon in Yersinia pseudotuberculosis and Its Deletion during the Emergence of Yersinia pestis |
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Flea-borne transmission model to evaluate vaccine efficacy against naturally acquired bubonic plague. |
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Functional and structural analysis of HicA3-HicB3, a novel toxin-antitoxin system of Yersinia pestis |
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Genes encoding specific nickel transport systems flank the chromosomal urease locus of pathogenic yersiniae |
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High susceptibility of MDR and XDR Gram-negative pathogens to biphenyl-diacetylene-based difluoromethyl-allo-threonyl-hydroxamate LpxC inhibitors |
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Importance of metabolic adaptations in intracellular persistence of Staphylococcus aureus |
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Inheritance of the lysozyme inhibitor Ivy was an important evolutionary step by Yersinia pestis to avoid the host innate immune response |
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Modulation de la virulence de Yersinia pestis impliquant le locus de la flagelline et un processus de variation de phase. |
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Molecular mechanisms involved in the intracellular cycle and dissemination of Francisella tularensis. |
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New insights into how Yersinia pestis adapts to its mammalian host during bubonic plague |
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New insights into the genetic mechanisms used in the spread of plague by fleas through the use of bioluminescence. |
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Nouvelles perspectives sur les mécanismes génétiques impliqués dans la propagation de la peste par les puces grâce à l'utilisation de la bioluminescence |
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Nutrient depletion may trigger the Yersinia pestis OmpR-EnvZ regulatory system to promote flea-borne plague transmission |
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The pmrF polymyxin-resistance operon of Yersinia pseudotuberculosis is upregulated by the PhoP-PhoQ two-component system but not by PmrA-PmrB, and is not required for virulence. |
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Poor vector competence of fleas and the evolution of hypervirulence in Yersinia pestis |
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Protection against Yersinia pseudotuberculosis infection conferred by a Lactococcus lactis mucosal delivery vector secreting LcrV. |
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Role and function of the genes YPO2857 and YPO2371 in the plague. |
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Rôle des systèmes à deux composants dans le cycle de la peste |
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Rôle et fonction des gènes YPO2857 et YPO2371 dans la peste |
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The role of phosphorelais systems in the infection of the flea Xenopsylla cheopis by Yersinia pestis. |
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Role of the Yersinia pestis yersiniabactin iron acquisition system in the incidence of flea-borne plague |
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Role of two component regulatory system in plague cycle. |
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The superantigen gene ypm is located in an unstable chromosomal locus of Yersinia pseudotuberculosis |
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Superantigenic Yersinia pseudotuberculosis induces the expression of granzymes and perforin by CD4+ T cells |
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TLR5 signaling stimulates the innate production of IL-17 and IL-22 by CD3(neg)CD127+ immune cells in spleen and mucosa |
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To block or not to block: The adaptive manipulation of plague transmission. |
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Transcriptomic studies and assessment of Yersinia pestis reference genes in various conditions |
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Transit through the flea vector induces a pretransmission innate immunity resistance phenotype in Yersinia pestis |
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The Yersinia pestis caf1M1A1 fimbrial capsule operon promotes transmission by flea bite in a mouse model of bubonic plague |
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Yersinia pestis YopJ suppresses tumor necrosis factor alpha induction and contributes to apoptosis of immune cells in the lymph node but is not required for virulence in a rat model of bubonic plague |
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The Yersinia pseudotuberculosis Yut protein, a new type of urea transporter homologous to eukaryotic channels and functionally interchangeable in vitro with the Helicobacter pylori UreI protein. |
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