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Updated: Feb 12, 2026

A Gut-on-a-Chip Model to Study the Gut Microbiome-Nervous System Axis
Published on: July 28, 2023
Modulations in the offspring gut microbiome are refractory to postnatal synbiotic supplementation among juvenile
Ryan M Pace1, Amanda L Prince1, Jun Ma1,2
1Department of Obstetrics and Gynecology, Division of Maternal-Fetal Medicine, Baylor College of Medicine, Houston, TX, 77030, USA.
Insights
Synbiotic supplementation in juvenile macaques exposed to a maternal high-fat diet (HFD) temporarily altered gut bacteria and improved lipid profiles. However, it did not prevent later HFD-induced gut dysbiosis.
Area of Science:
- Microbiology
- Nutritional Science
- Primate Research
Background:
- Maternal high-fat diet (HFD) impacts mammalian gut microbiome development.
- Early life diet significantly influences gut microbiome composition and host health.
- Japanese macaques provide a relevant model for studying diet-microbiome interactions.
Purpose of the Study:
- To investigate the effects of synbiotic supplementation on the gut microbiome of juvenile macaques with prior maternal HFD exposure.
- To assess changes in serum lipid profiles following synbiotic intervention.
- To determine if synbiotics protect against diet-induced gut dysbiosis.
Main Methods:
- Juvenile Japanese macaques (n=7) exposed to maternal HFD were weaned onto a control diet and supplemented with synbiotics (psyllium, Enterococcus, Lactobacillus).
- Stool samples underwent 16S rRNA metagenomic sequencing for microbiome analysis.
- Serum lipid profiles (triglycerides, cholesterol, LDL) were compared to controls (n=7).
Main Results:
- Synbiotic supplementation led to transient increases in Lactobacillus and decreases in Faecalibacterium and Anaerovibrio.
- Significant reductions in serum triglycerides, cholesterol, and LDL were observed (p<0.05).
- Synbiotic-treated macaques were not protected from gut dysbiosis when challenged with HFD later.
Conclusions:
- Synbiotic supplementation shows temporal associations with altered gut microbiota and improved lipid profiles in juvenile macaques with HFD history.
- Despite short-term metabolic benefits, synbiotics did not confer lasting protection against HFD-induced gut dysbiosis.
- Further research is needed to understand long-term effects and mechanisms of synbiotics in diet-induced gut dysbiosis.
Background:
We and others have previously shown that alterations in the mammalian gut microbiome are associated with diet, notably early life exposure to a maternal high fat diet (HFD). Here, we aimed to further these studies by examining alterations in the gut microbiome of juvenile Japanese macaques (Macaca fuscata) that were exposed to a maternal HFD, weaned onto a control diet, and later supplemented with a synbiotic comprised of psyllium seed and Enterococcus and Lactobacillus species.
Results:
Eighteen month old offspring (n = 7) of 36% HFD fed dams were fed a control (14% fat) diet post weaning, then were synbiotic supplemented for 75 days and longitudinal stool and serum samples were obtained. All stool samples were subjected to 16S rRNA metagenomic sequencing, and microbiome profiles and serum lipids and triglycerides were compared to untreated, healthy age matched and diet matched controls (n = 7). Overall, 16S-based metagenomic analysis revealed that supplementation exerted minimal alterations to the gut microbiome including transient increased abundance of Lactobacillus species and decreased abundance of few bacterial genera, including Faecalibacterium and Anaerovibrio. However, serum lipid analysis revealed significant decreases in triglycerides, cholesterol, and LDL (p < 0.05). Nevertheless, supplemented juveniles challenged 4 months later were not protected from HFD-induced gut dysbiosis.
Conclusions:
Synbiotic supplementation is temporally associated with alterations in the gut microbiome and host lipid profiles of juvenile Japanese macaques that were previously exposed to a maternal HFD. Despite these presumptive temporal benefits, a protective effect against later HFD-challenge gut dysbiosis was not observed.
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