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Preterm and low birth weight babies are routinely given antibiotics to prevent, not just treat, infections, which they have a high risk of developing. A new study, published in The Journal of Physiology has found that early life exposure to antibiotics in neonatal mice has long-lasting effects on their microbiota, enteric nervous system, and gut function. This could mean that babies given antibiotics may grow up to experience gastrointestinal issues.
This discovery by the research team from the Department of Anatomy and Physiology at the University of Melbourne is the first to show that antibiotics given to neonatal mice has these long-lasting effects which result in disturbed gastrointestinal function, including the speed of motility through the gut and diarrhoea-like symptoms in adulthood.
The research team gave mice an oral dose of vancomycin every day for the first ten days of their lives. They were then reared normally until they were young adults, and their gut tissue was looked at to measure its structure, function, microbiota, and nervous system. The investigators found that changes were also dependent on the sex of the mice. The females had long whole gut transit and the males had lower faecal weight than the control group. Both males and females had greater faecal water content, which is a diarrhoea-like symptom.
Mice have many similarities to humans, but they are born with more immature guts than humans and have accelerated growth due to their shorter life spans. Their gut microbiota and nervous systems are less complex than humans, so the findings cannot yet be directly associated to human children and infants. The researchers will be doing further studies on the mechanisms of antibiotics on the gut and the causes of the sex specific actions, and if early life antibiotic use has effects on metabolism and brain function.
Lead Physiologist, Dr Jaime Foong said, ‘We are very excited about the findings of our study which show that antibiotics given after birth could have prolonged effects on the enteric nervous system. This provides further evidence of the importance of microbiota on gut health and could introduce new targets to advance antibiotic treatment to very young children.’
Notes for editors
- Full paper title: Neonatal antibiotics have long-term sex-dependent effects on the enteric nervous system.Link to paper https://physoc.onlinelibrary.wiley.com/doi/abs/10.1113/JP282939. This link will only work after the embargo date. Before then please email the press office for a copy of the paper.
- The Journal of Physiology publishes advances in physiology which increase our understanding of how our bodies function in health and disease. http://jp.physoc.org
- The Physiological Society brings together over 4,000 scientists from over 60 countries. The Society promotes physiology with the public and parliament alike. It supports physiologists by organising world-class conferences and offering grants for research and also publishes the latest developments in the field in its three leading scientific journals, The Journal of Physiology, Experimental Physiology and Physiological Reports. www.physoc.org
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Susan Patterson, Communications Manager
Dr Jaime Foong
The Journal of Physiology
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Neonatal antibiotics have long-term sex-dependent effects on the enteric nervous system
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