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Feeding Bugs to Bugs: Edible Insects Modify the Human Gut Microbiome in an in vitro Fermentation Model
Wayne Young1,2,3, Sai Krishna Arojju4, Mark R McNeill5
1Food Nutrition & Health Team, AgResearch Grasslands, Palmerston North, New Zealand.
Abstract:
We here report a study characterizing the potential for edible insects to act as a prebiotic by altering the bacterial composition of the human fecal microbiome, using batch cultures inoculated with fecal adult human donors. Black field cricket nymphs, grass grub larvae, and wax moth larvae were subjected to an in vitro digestion to simulate the oral, gastric, and small intestinal stages of digestion. The digested material was then dialyzed to remove small molecules such as amino acids and free sugars to simulate removal of nutrients through upper gastrointestinal tract digestion. The retentate, representing the digestion resistant constituents, was then fermented in fecal batch cultures for 4, 7, and 15 h to represent rapid and longer fermentation times. Batch cultures without any added substrates were also set up to act as controls. Additionally, phosphate-buffered saline was used as a no-protein control and milk powder as "standard" protein control. At the end of the incubation period, the bacterial pellets were collected for microbiome analysis by 16S rRNA gene amplicon sequencing. Analysis of fecal cultures showed striking differences in community composition. Each substrate led to significant differences across a wide range of taxa compared to each other and PBS controls. Among the differences observed, digested grass grub larvae increased proportions of Faecalibacterium and the Prevotella 2 group. Black field crickets increased the prevalence of the Escherichia-Shigella group, Dialister genus, and a group of unclassified Lachnospiraceae. Wax moth larvae promoted the expansion of the same group of unclassified Lachnospiraceae and the Escherichia/Shigella group. The increased Faecalibacterium observed in the cultures with grass grub larvae represents a noteworthy finding as this bacterium is widely thought to be beneficial in nature, with demonstrated anti-inflammatory properties and associations with gut health. We conclude that insects can differentially modulate the microbiome composition in batch cultures inoculated with adult fecal material after simulated in vitro digestion. Although the physiological impact in vivo remains to be determined, this study provides sound scientific evidence that investigating the potential for consuming insects for gut health is warranted.
Insights
Edible insects like grass grubs, crickets, and wax moths can alter the human gut microbiome. Grass grub larvae specifically boosted beneficial bacteria, suggesting potential for insect-based prebiotics to improve gut health.
Area of Science:
- Microbiology
- Nutritional Science
- Gastroenterology
Background:
- Edible insects are a sustainable protein source.
- The gut microbiome plays a crucial role in overall health.
- Prebiotics selectively stimulate beneficial gut bacteria.
Purpose of the Study:
- To investigate the prebiotic potential of edible insects.
- To characterize how insect consumption affects human fecal microbiome composition.
- To evaluate the impact of digested insects on bacterial fermentation.
Main Methods:
- Simulated in vitro digestion of black field cricket, grass grub, and wax moth larvae.
- Fermentation of digested insects in human fecal batch cultures.
- Microbiome analysis using 16S rRNA gene amplicon sequencing.
Main Results:
- Insect substrates significantly altered microbiome composition compared to controls.
- Grass grub larvae increased beneficial bacteria like Faecalibacterium.
- Crickets and wax moth larvae promoted different bacterial groups, including unclassified Lachnospiraceae.
Conclusions:
- Edible insects differentially modulate the gut microbiome composition.
- Grass grub larvae show promise as a prebiotic due to increased beneficial bacteria.
- Further in vivo studies are warranted to confirm the gut health benefits of insect consumption.
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