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Updated: Jun 29, 2026

Chronic Salmonella Infected Mouse Model
Published on: May 31, 2010
Salmonella Phages Affect the Intestinal Barrier in Chicks by Altering the Composition of Early Intestinal Flora:
Hongze Zhao1,2, Yue Li1,2, Peilin Lv1,2
1State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, China.
Insights
Oral bacteriophages can alter chick gut microbiota and improve intestinal barrier function. Timing and dosage are crucial, especially during early development, suggesting phages regulate gut health via microbial changes.
Area of Science:
- Microbiology
- Animal Science
- Poultry Health
Background:
- Antibiotic use in poultry raises concerns.
- Bacteriophages (phages) offer a potential alternative for disease prevention.
- Chicks' developing intestinal tracts are susceptible to environmental influences.
Purpose of the Study:
- To investigate the impact of oral phages on chick intestinal barrier function.
- To analyze changes in the cecal microbiome following phage administration.
- To determine the optimal timing for phage application in young chicks.
Main Methods:
- A two-week trial with 40 one-day-old hens divided into control, phage, and amoxicillin groups.
- High-throughput sequencing of cecal contents to analyze microbial community structure.
- PICRUSt2 software for functional prediction of microbial genes.
- Assessment of intestinal morphology and mRNA expression of tight junction proteins (occludin, ZO-1).
Main Results:
- Oral phages significantly altered cecal microbial community structure and composition.
- Phage administration increased the relative abundance of *Enterococcus*, *Bifidobacterium*, and *Subdoligranulum*.
- Later phage administration (days 8-10) improved intestinal morphology and upregulated tight junction proteins, suggesting enhanced barrier function.
Conclusions:
- Phages enhance intestinal barrier function in chicks indirectly by modulating the gut microbiota.
- The timing of phage administration is critical, with early high doses potentially causing significant disruptions.
- Phages represent a promising strategy for improving poultry gut health and preventing bacterial infections.
Abstract:
Phages show promise in replacing antibiotics to treat or prevent bacterial diseases in the chicken breeding industry. Chicks are easily affected by their environment during early growth. Thus, this study investigated whether oral phages could affect the intestinal barrier function of chicks with a focus on the cecal microbiome. In a two-week trial, forty one-day-old hens were randomly divided into four groups: (1) NC, negative control; (2) Phage 1, 109 PFU phage/day (days 3-5); (3) Phage 2, 109 PFU phage/day (days 8-10); and (4) AMX, 1 mg/mL amoxicillin/day (days 8-10). High-throughput sequencing results of cecal contents showed that oral administration of phages significantly affected microbial community structure and community composition, and increased the relative abundance of Enterococcus. The number of different species in the Phage 1 group was much higher than that in the Phage 2 group, and differences in alpha and beta diversity also indicated that the magnitude of changes in the composition of the cecal microbiota correlated with the time of phage use. Particularly in the first stage of cecal microbiota development, oral administration of bacteriophages targeting Salmonella may cause substantial changes in chicks, as evidenced by the results of the PICRUSt2 software function prediction, reminding us to be cautious about the time of phage use in chicks and to avoid high oral doses of phages during the first stage. Additionally, the Phage 2 samples not only showed a significant increase in the relative abundance of Bifidobacterium and Subdoligranulum, but also improved the intestinal morphology (jejunum) and increased the mRNA expression level of occludin and ZO-1. We concluded that phages do not directly interact with eukaryotic cells. The enhancement of intestinal barrier function by phages in chicks may be related to changes in the intestinal flora induced by phages. This implies that phages may affect intestinal health by regulating the intestinal flora. This study provides new ideas for phage prevention of intestinal bacterial infections and promotes large-scale application of phages in the poultry industry.
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