
Brian Forde
Articles
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Oct 28, 2024 |
microbiologyresearch.org | Pirathaban Sivabalan |Ferris Satyaputra |Ian Gassiep |Brian Forde
Article metrics loading... /content/journal/acmi/10.1099/acmi.0.000619.v4Download as PowerPoint /deliver/fulltext/acmi/6/10/acmi000619.v4.html?itemId=/content/journal/acmi/10.1099/acmi.0.000619.v4&mimeType=html&fmt=ahah ReferencesUniversity of QueenslandBurkholderia pseudomallei strain: TSV-377 | isolate (ID 1032635) National Center for Biotechnology Information 2023 https://www.ncbi.nlm.nih.gov/bioproject/?term=PRJNA1032635 accessed [Google Scholar] Gassiep I, Armstrong M, Norton R.
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Oct 24, 2024 |
journals.plos.org | Brian Forde |Molecular Biosciences |Minh-Duy Phan |Leah Roberts
Loading metrics Open Access Peer-reviewedResearch Article ? This is an uncorrected proof. Citation: Nhu NTK, Forde BM, Ben Zakour NL, Phan M-D, Roberts LW, Beatson SA, et al. (2024) Evolution of the pheV-tRNA integrated genomic island in Escherichia coli. PLoS Genet 20(10): e1011459. https://doi.org/10.1371/journal.pgen.1011459Editor: Diarmaid Hughes, Uppsala University, SWEDENReceived: May 12, 2024; Accepted: October 14, 2024; Published: October 24, 2024Copyright: © 2024 Nhu et al.
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Oct 18, 2024 |
microbiologyresearch.org | Timothy J. Kidd |Amy Dumigan |Brian Forde |Minh-Duy Phan
Background Klebsiella pneumoniae (Kpn) is an important respiratory pathogen associated with significant mortality fierce inflammatory responses and high rates of antimicrobial resistance. The increasing incidence of multidrug resistant Kpn has significantly narrowed the therapeutic options available; as such there is an urgent need to better understand Kpn pathophysiology to identify novel therapeutic targets.
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May 10, 2024 |
microbiologyresearch.org | Pirathaban Sivabalan |Ian Gassiep |Brian Forde |Ferris Satyaputra
Burkholderia pseudomallei is a bipolar Gram-negative bacillus and the causative agent of melioidosis; an infectious disease which commonly presents with bacteraemia. Data regarding direct from blood culture identification of B. pseudomallei using the Vitek mass spectrometer (MS) are limited. The authors aim to assess the safety and sensitivity of the Vitek MS for identification of B. pseudomallei from spiked positive blood culture samples.
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Mar 20, 2024 |
nature.com | Yi Nong |Georgina L Pollock |Glen P. Carter |Ian R. Monk |Stanley Pang |Brian Forde | +3 more
AbstractThe past decade has seen an increase in the prevalence of sequence type (ST) 45 methicillin-resistant Staphylococcus aureus (MRSA), yet the underlying drivers for its emergence and spread remain unclear. To better understand the worldwide dissemination of ST45 S. aureus, we performed phylogenetic analyses of Australian isolates, supplemented with a global population of ST45 S. aureus genomes.
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