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Updated: May 17, 2026

Probiotic Studies in Neonatal Mice Using Gavage
Published on: January 27, 2019
Prophylactic probiotics to prevent death and nosocomial infection in preterm infants
Mario A Rojas1, Juan M Lozano, Maria X Rojas
1Department of Pediatrics, Wake Forest School of Medicine, Winston-Salem, North Carolina 27157, USA. mrojas@wakehealth.edu
Insights
Probiotics like Lactobacillus reuteri did not significantly reduce infant mortality or infections in preterm infants. However, they showed a trend toward fewer infections and reduced feeding intolerance and hospitalization in very low birth weight infants.
Area of Science:
- Neonatal research
- Microbiome studies
- Clinical trials
Background:
- Probiotics may reduce infant mortality and nosocomial infections by suppressing gut pathogens.
- Lactobacillus reuteri (L. reuteri) is a probiotic studied for its potential benefits in preterm infants.
Purpose of the Study:
- To test the hypothesis that L. reuteri decreases infant mortality and nosocomial infections in preterm infants.
- To evaluate the efficacy of L. reuteri in a large double-blinded placebo-controlled trial.
Main Methods:
- 750 preterm infants weighing ≤ 2000 g were enrolled.
- Infants received daily L. reuteri DSM 17938 or placebo from birth.
- Outcomes included death, nosocomial infection, pneumonia, necrotizing enterocolitis, feeding intolerance, and hospitalization duration.
Main Results:
- The composite outcome of death or nosocomial infection was similar between groups (RR 0.87; 95% CI: 0.63-1.19).
- Trends suggested lower rates of nosocomial pneumonia (P = .06) and necrotizing enterocolitis (P = .23) with L. reuteri.
- Feeding intolerance (P = .04) and hospitalization duration (P = .03) were reduced in infants ≤ 1500 g.
Conclusions:
- L. reuteri did not significantly decrease the composite outcome of death or nosocomial infection.
- Trends suggest a potential protective role for L. reuteri, consistent with existing literature.
- L. reuteri reduced feeding intolerance and hospitalization duration in premature infants ≤ 1500 g.
Background And Objective:
It has been suggested that probiotics may decrease infant mortality and nosocomial infections because of their ability to suppress colonization and translocation of bacterial pathogens in the gastrointestinal tract. We designed a large double-blinded placebo-controlled trial using Lactobacillus reuteri to test this hypothesis in preterm infants.
Methods:
Eligible infants were randomly assigned during the first 48 hours of life to either daily probiotic administration or placebo. Infants in the intervention group were administered enterally 5 drops of a probiotic preparation containing 10(8) colony-forming units of L reuteri DSM 17938 until death or discharge from the NICU.
Results:
A total of 750 infants ≤ 2000 g were enrolled. The frequency of the primary outcome, death, or nosocomial infection, was similar in the probiotic and placebo groups (relative risk 0.87; 95% confidence interval: 0.63-1.19; P = .376). There was a trend toward a lower rate of nosocomial pneumonia in the probiotic group (2.4% vs 5.0%; P = .06) and a nonsignificant 40% decrease in necrotizing enterocolitis (2.4% vs 4.0%; P = .23). Episodes of feeding intolerance and duration of hospitalization were lower in infants ≤ 1500 g (9.6% vs 16.8% [P = .04]; 32.5 days vs 37 days [P = .03]).
Conclusions:
Although L reuteri did not appear to decrease the rate of the composite outcome, the trends suggest a protective role consistent with what has been observed in the literature. Feeding intolerance and duration of hospitalization were decreased in premature infants ≤ 1500 g.
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