BioWorld. Link to homepage.

Clarivate
  • BioWorld
  • BioWorld Science
  • BioWorld Asia
  • Data Snapshots
    • Biopharma
    • Medical technology
    • Infographics: Dynamic digital data analysis
    • Index insights
    • NME Digest
  • Special reports
    • Infographics: Dynamic digital data analysis
    • BCI
    • Ebola outbreak
    • Hantavirus
    • Trump administration impacts
    • Med-tech outlook 2026
    • Under threat: mRNA vaccine research
    • BioWorld at 35
    • Biopharma M&A scorecard
    • Bioworld 2025 review
    • BioWorld MedTech 2025 review
    • BioWorld Science 2025 review
    • Women's health
    • China's GLP-1 landscape
    • PFA re-energizes afib market
    • China CAR T
    • Alzheimer's disease
    • Coronavirus
    • More reports can be found here

BioWorld. Link to homepage.

  • Sign In
  • Sign Out
  • My Account
Subscribe
BioWorld - Saturday, July 25, 2026
Breaking News: Single-cell transcriptome study points to new drug targets for preeclampsiaSee today's BioWorld Science
Home » Organelles protect Clostridioides difficile from iron overdose
To read the full article sign up for free or sign in.
Infection

Organelles protect Clostridioides difficile from iron overdose

Nov. 21, 2023
By Mar de Miguel
The bacterium Clostridioides difficile (C. difficile) forms organelles that help them defend against iron in the colon. According to a group of scientists from Vanderbilt University, this pathogen, which causes serious gastrointestinal infections, expresses fez genes to build structures called ferrosomes that store excess iron that is toxic to it. Its ferrosomes are surrounded by membrane and could be a target against this microorganism.
BioWorld Science Infection

Popular Stories

  • Today's news in brief

    BioWorld
    BioWorld briefs for July 24, 2026.
  • News in brief

    BioWorld Asia
    BioWorld Asia briefs for July 21, 2026
  • Red CAR T cell on blue blackground

    To viral or not to viral: In vivo CAR T debates delivery tech

    BioWorld Science
    The field of cell and gene therapy is moving toward a new phase of scalability and clinical durability, with in vivo chimeric antigen receptor (CAR) T-cell...
  • Red CAR T cell on blue blackground

    To viral or not to viral: In vivo CAR T debates delivery tech

    BioWorld Asia
    The field of cell and gene therapy is moving toward a new phase of scalability and clinical durability, with in vivo chimeric antigen receptor (CAR) T-cell...
  • Cell nucleus architecture

    4D Nucleome opens new wave of gene regulation research, discovery

    BioWorld
    After a decade of research, the NIH 4D Nucleome program on July 23 delivered a wealth of new insights into how spatial changes in chromatin structure and DNA...
  • BioWorld
    • Today's news
    • Analysis and data insight
    • Clinical
    • Data Snapshots
    • Deals and M&A
    • Financings
    • Medical technology
    • Newco news
    • Opinion
    • Regulatory
  • BioWorld Science
    • Today's news
    • Biomarkers
    • Cancer
    • Conferences
    • Endocrine/metabolic
    • Immune
    • Infection
    • Neurology/psychiatric
    • NME Digest
    • Patents
  • BioWorld Asia
    • Today's news
    • Analysis and data insight
    • Australia
    • China
    • Clinical
    • Deals and M&A
    • Financings
    • Newco news
    • Regulatory
    • Science
  • More
    • About
    • Advertise with BioWorld
    • Archives
    • Article reprints and permissions
    • Contact us
    • Cookie policy
    • Copyright notice
    • Data methodology
    • Infographics: Dynamic digital data analysis
    • Index insights
    • Podcasts
    • Privacy policy
    • Share your news with BioWorld
    • Staff
    • Terms of use
    • Topic alerts
    • Videos
Follow Us

Copyright ©2026. All Rights Reserved. Design, CMS, Hosting & Web Development :: ePublishing