Metabolic and metagenomic outcomes from early-life pulsed antibiotic treatment

Метаболические и метагеномные последствия прерывистого лечения антибиотиками в раннем возрасте
Jennifer Chung, Nicholas A. Bokulich, Martin J. Blaser, Sahar Abubucker, George M. Weinstock, Erica Sodergren, Alexander V. Alekseyenko, Makedonka Mitreva, Yanjiao Zhou, Huilin Li, Laura M. Cox, Shingo Yamanishi, Kartik Raju, Isabel Teitler, Jiho Sohn, David S. Goldfarb, Yael R. Nobel, Francis F. Kirigin, Cecily Barber, Victoria Ruiz
2015-06-30

early-life antibiotic treatmentgut microbiomemetagenomic contentmicrobiome recoverymouse model
Mammalian species have co-evolved with intestinal microbial communities that can shape development and adapt to environmental changes, including antibiotic perturbation or nutrient flux. In humans, especially children, microbiota disruption is common, yet the dynamic microbiome recovery from early-life antibiotics is still uncharacterized. Here we use a mouse model mimicking paediatric antibiotic use and find that therapeutic-dose pulsed antibiotic treatment (PAT) with a beta-lactam or macrolide alters both host and microbiota development. Early-life PAT accelerates total mass and bone growth, and causes progressive changes in gut microbiome diversity, population structure and metagenomic content, with microbiome effects dependent on the number of courses and class of antibiotic. Whereas control microbiota rapidly adapts to a change in diet, PAT slows the ecological progression, with delays lasting several months with previous macrolide exposure. This study identifies key markers of disturbance and recovery, which may help provide therapeutic targets for microbiota restoration following antibiotic treatment.
1
A mouse model of paediatric antibiotic use shows that therapeutic-dose pulsed antibiotic treatment alters both host development and microbiota development.
2
Antibiotic exposure causes progressive changes in gut microbiome diversity, population structure, and metagenomic content.
3
Early-life pulsed antibiotic treatment accelerates total body mass and bone growth.
4
Microbiome effects depend on the number of antibiotic courses and the antibiotic class, including beta-lactams versus macrolides.
5
Prior macrolide exposure delays microbiome ecological adaptation to dietary change for several months, while control microbiota adapt rapidly.
6
The study identifies markers of microbiome disturbance and recovery that could inform therapeutic restoration after antibiotic treatment.

early-life pulsed antibiotic treatment in a mouse model and the resulting host–gut microbiota system

the effects and recovery dynamics of antibiotic-induced perturbation on host development and gut microbiome diversity, population structure, metagenomic content, and adaptation to dietary change

Publication Details
Publication Date
2015-06-30
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Authors
Jennifer Chung
Nicholas A. Bokulich
Martin J. Blaser
Sahar Abubucker
George M. Weinstock
Erica Sodergren
Alexander V. Alekseyenko
Makedonka Mitreva
Yanjiao Zhou
Huilin Li
Laura M. Cox
Shingo Yamanishi
Kartik Raju
Isabel Teitler
Jiho Sohn
David S. Goldfarb
Yael R. Nobel
Francis F. Kirigin
Cecily Barber
Victoria Ruiz
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