Publications by authors named "T B LAWLEY"

Biomedical research has implicated the bacterial metabolite colibactin as a causal risk factor for several cancer types, in particular, colorectal cancer. Colibactin has been known to drive tumorigenesis by inducing double-strand breaks in the DNA of epithelial cells exposed to colibactin-producing bacteria. Some phylogroup B2 Escherichia coli secrete colibactin during interbacterial warfare, concomitantly exposing the host to an increasing risk of DNA damage.

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Background: Melioidosis, attributable to the soil-dwelling bacterium , stands as a paramount global health challenge, necessitating extended courses of antibiotics. While murine studies identified the gut microbiota as a modulator of bacterial dissemination during melioidosis, the human intestinal microbiota during melioidosis remains uncharacterized. Here, we characterized gut microbiota composition and antimicrobial resistance (AMR) genes at diagnosis, during treatment, and postdischarge for melioidosis.

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Article Synopsis
  • Human microbiomes play a crucial role in health by impacting metabolism, immune functions, and neurological processes, but their complete complexity is still not fully understood.
  • The definition of a "healthy" microbiome is controversial due to variations in microbial communities and the difficulty in establishing a standard definition for health across different individuals and conditions.
  • The article highlights progress in microbiome research and identifies gaps in knowledge, proposing a roadmap that utilizes epidemiological methods to better understand the relationship between microbiomes and health.
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Article Synopsis
  • Human microbiota begins forming at birth, influenced by maternal and environmental microbes, with core theories suggesting that initial colonizers impact community development.
  • Research involving 1,288 UK neonates revealed three distinct gut microbiota profiles, each led by specific microbial species affected by factors like maternal age and ethnicity.
  • Bifidobacteria, especially B. breve, were identified as key players in fostering stable gut microbiota and resisting pathogens, supporting their importance as primary colonizers in early life.
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