Publications by authors named "Annie Landier"

As other European countries, France is experiencing a resurgence of pertussis in 2024. Between 1 January and 31 May 2024, 5,616 (24.9%) positive qPCR tests were identified, following a 3-year period of almost null incidence.

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Between March and October 2022, a peak of detection of by qPCR, real-time PCR was observed in France. Whether this peak was due to resurgence from previous circulating lineages or reintroduction into the country was unknown. The objective of this study is to understand transient increase observed in France in 2022 whereas it had virtually stopped being reported since the start of the COVID-19 pandemic in 2020.

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The Corynebacterium diphtheriae species complex comprises seven bacterial species, including Corynebacterium ulcerans, a zoonotic pathogen from multiple animal species. In this work, we characterise phenotypically and genotypically isolates belonging to two C. ulcerans lineages.

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Article Synopsis
  • Bordetella pertussis, the bacteria causing whooping cough, continues to circulate globally despite vaccines, and this study focuses on differences between two fimbrial serotypes, FIM2 and FIM3.
  • The research involved analyzing the microbial traits and protein profiles of 19 bacterial isolates, revealing that FIM2 produces more fimbriae and biofilm but is less effective at agglutination and survival in cord blood than FIM3.
  • Findings indicate that distinct fimbrial serotypes and their clades are linked to significant differences in virulence factors, which could affect disease spread and prevention strategies.
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The genus Bordetella includes bacteria that are found in the environment and/or associated with humans and other animals. A few closely related species, including Bordetella pertussis, are human pathogens that cause diseases such as whooping cough. Here, we present a large database of Bordetella isolates and genomes and develop genotyping systems for the genus and for the B.

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As with other pathogens, competitive interactions between strains drive infection risk. Vaccines are thought to perturb strain diversity through shifts in immune pressures; however, this has rarely been measured because of inadequate data and analytical tools. We used 3344 sequences from 23 countries to show that, on average, there are 28.

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Background is the main agent of whooping cough. Vaccination with acellular pertussis vaccines has been largely implemented in high-income countries. These vaccines contain 1 to 5 antigens: pertussis toxin (PT), filamentous haemagglutinin (FHA), pertactin (PRN) and/or fimbrial proteins (FIM2 and FIM3).

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Whooping cough's primary etiological agent is . The closely related rarely causes severe disease. Here we report an unusual case of bacteremia caused by , review the literature, and characterize the genomic sequence of the bacterial isolate in comparison with isolates from respiratory infections.

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Article Synopsis
  • Bordetella pertussis is the bacterium responsible for whooping cough, a contagious respiratory illness that is resurging in several regions worldwide.
  • The emergence of antigen-deficient strains poses a risk to the effectiveness of existing acellular vaccines, highlighting the need for better strain transmission tracking.
  • Researchers have developed a core genome multilocus sequence typing method that categorizes strains into 2,038 loci, allowing for detailed local and international epidemiological comparisons through a publicly accessible database.
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Peroxide sensing is essential for bacterial survival during aerobic metabolism and host infection. Peroxide stress regulators (PerRs) are homodimeric transcriptional repressors with each monomer typically containing both structural and regulatory metal-binding sites. PerR binding to gene promoters is controlled by the presence of iron in the regulatory site, and iron-catalyzed oxidation of PerR by HO leads to the dissociation of PerR from DNA.

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Background: Leptospirosis is one of the most important neglected tropical bacterial diseases in Latin America and the Caribbean. However, very little is known about the circulating etiological agents of leptospirosis in this region. In this study, we describe the serological and molecular features of leptospires isolated from 104 leptospirosis patients in Guadeloupe (n = 85) and Martinique (n = 19) and six rats captured in Guadeloupe, between 2004 and 2012.

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Protective antigen (PA) is central to the action of the lethal and edema toxins produced by Bacillus anthracis. It is the common cell-binding component, mediating the translocation of the enzymatic moieties (lethal factor [LF] and edema factor) into the cytoplasm of the host cell. Monoclonal antibodies (MAbs) against PA, able to neutralize the activities of the toxins in vitro and in vivo, were screened.

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