Popoff, Michel-Robert, 19..-...., bactériologiste
Popoff, Michel Robert, 1949-
Popoff, Michel R.
Michel R. Popoff
Popoff, Michel-Robert
VIAF ID: 95049445 (Personal)
Permalink: http://viaf.org/viaf/95049445
Preferred Forms
- 100 0 _ ‡a Michel R. Popoff
- 200 _ | ‡a Popoff ‡b Michel Robert ‡f 1949-....
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- 100 1 _ ‡a Popoff, Michel R.
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- 100 1 _ ‡a Popoff, Michel-Robert
- 100 1 _ ‡a Popoff, Michel-Robert, ‡d 19..-...., ‡c bactériologiste
4xx's: Alternate Name Forms (8)
Works
Title | Sources |
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Antibodies and Vaccines against Botulinum Toxins: Available Measures and Novel Approaches | |
Bacterial intracellularly active toxins: membrane localization of the active domain | |
Bacterial Toxins, Current Perspectives | |
Cellular microbiology: Bacterial toxin interference drives understanding of eukaryotic cell function | |
Characterization of the host immune response in Clostridium difficile infections. | |
Characterization of the Lugdulysin, a zinc metallopeptidase and virulence factor synthetized by Staphylococcus lugdunensis. | |
Clostridial diseases of animals | |
Clostridium difficile toxin B causes apoptosis in epithelial cells by thrilling mitochondria. Involvement of ATP-sensitive mitochondrial potassium channels. | |
The comprehensive sourcebook of bacterial protein toxins | |
CONTRIBUTION A LA TAXONOMIE ET A L'ETUDE DU POUVOIR PATHOGENE EXPERIMENTAL DE CLOSTRIDIUM BUTYRICUM ET DE CLOSTRIDIUM SORDELLII, AGENTS D'ENTEROCOLITE | |
CONTRIBUTION A L'ETUDE DES PROTEINES ASSOCIEES AUX NEUROTOXINES CLOSTRIDIENNES ET VECTORISATION DE PROTEINES DANS LES CELLULES (DOCTORAT : MICROBIOLOGIE) | |
Criblage de molécules stimulant l'immunité innée et acquise | |
Effets des toxines de Bacillus anthracis sur le cytosquelette des cellules immunitaires : implication sur la phagocytose et les fonctions immunitaires | |
Engineering Botulinum Neurotoxins for Enhanced Therapeutic Applications and Vaccine Development | |
ETUDE DES EFFECTEURS DE L'ENTREE DE SALMONELLA ENTERICA SUBSP. ENTERICA SEROTYPE TYPHI DANS LES CELLULES EPITHELIALES EN CULTURE | |
Etude des modifications de la perméabilité épithéliale et des jonctions intercellulaires, induites par la toxine létale de Clostridium sordellii | |
Evaluation of molecular biology techniques for detection and typing of pathogenic Clostridiae in agro-industry : application to C. perfringens and C. botulinum. | |
Exoy, a nucleotidyl cyclase toxin from Pseudomonas aeruginosa. | |
Genetic analysis of the botulinum neurotoxins and study of genetic transfer in clostridium botulinum. | |
High-Throughput Screening of Rac1 modulators as regulators of innate and acquired immunity. | |
Human Botulism in France, 1875-2016 | |
Identification et Quantification des Sous-Types de la Neurotoxine Botulique de Type A par Spectrométrie de Masse | |
In Silico Conformational Features of Botulinum Toxins A1 and E1 According to Intraluminal Acidification | |
Ingénierie de la toxine dipthérique appliquée à l'immunothérapie anti-cancéreuse | |
Les inhibiteurs de trafic intracellulaire actifs contre les toxines plante et bactériennes. | |
Inhibitors of intracellular trafficking active against plant and bacterial toxins | |
Internalisation of S. aureus leukotoxins in target cells and associated cellular consequences. | |
Isolement de fragments d'anticorps recombinants neutralisant des toxines à partir de primates non humains et localisation de l'épitope d'un anticorps. | |
Passage of botulinum neurotoxin across intestianl barrier. | |
piétin essai de vaccination | |
The population structure of Clostridium tetani deduced from its pan-genome | |
Public Health Risk Associated with Botulism as Foodborne Zoonoses | |
Rac GTPase instructs nuclear factor-kappaB activation by conveying the SCF complex and IkBalpha to the ruffling membranes | |
Régulation de la toxinogenèse chez Clostridium botulinum et Clostridium tetani | |
Tetanus in animals | |
Toxemia in Human Naturally Acquired Botulism | |
Toxine IOTA de "Clostridium perfringens" et toxines apparentées | |
Toxines émergentes : nouveaux risques | |
Two Type E Isolates in France | |
Why Are Botulinum Neurotoxin-Producing Bacteria So Diverse and Botulinum Neurotoxins So Toxic? |