Related Experiment Video
Updated: Feb 13, 2026

A Method to Assess Bacteriocin Effects on the Gut Microbiota of Mice
Published on: July 25, 2017
Effects of different thickening agents on infant gut microbiota
C A González-Bermúdez1, R López-Nicolás1, P Peso-Echarri1
1Department of Food Science and Nutrition, Faculty of Veterinary Sciences, Regional Campus of International Excellence Campus Mare Nostrum, University of Murcia, Spain. rubenln@um.es.
Insights
Locust bean gum (LBG) promotes a more diverse infant gut microbiota compared to modified starches (Mhdp, gRS). LBG fermentation results in moderate gas, a slow pH drop, and enhanced beneficial bacteria growth.
Area of Science:
- Microbiology
- Gastroenterology
- Nutrition Science
Background:
- Infant gut microbiota development is crucial for health.
- Thickeners are common ingredients in infant formulas.
- Understanding thickener effects on infant gut microbiota is important.
Purpose of the Study:
- To evaluate the impact of three thickeners on infant gut microbiota.
- To assess the in vitro gut fermentability of these thickeners.
- To analyze their effects on pH, gas production, SCFA, and bacterial populations.
Main Methods:
- In vitro fermentation of locust bean gum (LBG), maize hydroxypropylated distarch phosphate (Mhdp), and pre-gelatinized rice starch (gRS).
- Used fresh fecal samples from 2-3 month old healthy infants.
- Analyzed pH, gas pressure, short-chain fatty acids (SCFA), and bacterial populations over time.
Main Results:
- LBG showed a slower pH drop and moderate gas production compared to Mhdp and gRS.
- LBG fermentation resulted in higher total SCFA and propionate concentrations.
- LBG promoted a more diverse microbiota, enhancing Atopobium and Bacteroidetes, while Mhdp and gRS favored Lactobacillus and Bifidobacteria initially.
Conclusions:
- Locust bean gum (LBG) supports a more varied infant gut microbiota and beneficial fermentation profiles.
- Modified starches (Mhdp, gRS) lead to rapid pH drops and less diverse microbial communities.
- Thickener choice significantly influences infant gut microbiota composition and fermentation characteristics.
Abstract:
Infant microbiota has to progress from an almost sterile to a complex and varied community, so the main objective of this work was to evaluate the effect of three thickening ingredients on infant microbiota, as well as their in vitro gut fermentability. Experiments were performed using fresh faecal samples from healthy donors of 2-3 months of age. Stabilised stool samples were injected into Wheaton serum bottles containing pre-reduced MBM and 1% (w/v) fermentation substrates (locust bean gum, LBG; maize hydroxypropylated distarch phosphate, Mhdp; and pre-gelatinized rice starch, gRS). Samples were taken during fermentation, and pH, gas pressure, SCFA and bacterial population were analysed. The addition of thickeners resulted in a significant negative correlation (p < 0.05) between time and pH, showing significantly lower (p < 0.01) pH values for Mhdp and gRS than for LBG. Modified starches showed significantly higher values (p < 0.05) of total gas production than did LBG. Total SCFA molar concentrations for LBG, as well as propionate production, were significantly higher (p < 0.05) than for Mhdp and gRS. Regarding bacterial population, LBG promoted a more varied microbiota enhancing the growth of Atopobium and Bacteroidetes, whereas Mhdp and gRS induced higher Lactobacillus and Bifidobacteria at the beginning of fermentation. LBG induced moderate gas production and a slow drop of pH, and caused a decreasing acetate : propionate ratio, enhancing the development of a varied faecal microbiota. In contrast, Mhdp and gRS induced high gas production, a sudden drop of pH and a greater production of acetate, which promoted a less varied faecal microbiota.
Related Concept Videos
Drug Dosing: Infants and Children
Subviral Agents
Buffer Effectiveness
The buffer capacity is the amount of acid or base that can be added to a given volume...
Framing Effects
Air-entraining Agents
Masking and Demasking Agents
There are many masking agents, such as cyanide, fluoride, triethanolamine, thiourea, and 2,3-bis(sulfanyl)propan-1-ol (formerly 2,3-dimercapto-1-propanol), with the masking agent chosen based on...

