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Updated: Oct 3, 2026

An In Vitro Batch-culture Model to Estimate the Effects of Interventional Regimens on Human Fecal Microbiota
Published on: July 31, 2019
Formulations containing co-biotic compounds mediate microbiome function and composition without increased gas
Brooke A Napier1, Bryan D Merrill1, Madeline Krieger1
1Seed Health, New York, New York, USA.
Abstract:
Dietary supplement formulations that contain co-biotics or compounds that modulate biological processes in both the host and microbiome to confer a health benefit are an emerging strategy to fine-tune both host physiology and gut microbiome function. Here, we evaluated three novel formulations containing co-biotic compounds (DM-02, a multivitamin; AM-02, formulated for energy and focus; and PM-02, formulated to promote sleep) for their effects on human gut microbiome composition and function. The three formulations and untreated control (Unt-Ctrl) were subjected to upper gastrointestinal digestion, after which the digesta were exposed to 24-h simulated colonic fermentation in the validated ex vivo systemic intestinal fermentation research (SIFR) technology (n = 6 healthy adults). Outcomes included pH, short-chain fatty acid (SCFA) and gas production, ultra-deep metagenomic profiling, and untargeted metabolomics of post-colonic supernatants, each compared to Unt-Ctrl. All three formulations significantly reduced pH (3%-4%) and increased total SCFAs (9%-11%) and acetate (9%-12%), with AM-02 and PM-02 also increasing butyrate by 20% and propionate by 7%-8%, without increasing gas production. Each formulation significantly enriched specific SCFA- and B-vitamin-producing taxa. AM-02 significantly increased the abundance of two pyruvate fermentation to acetate/lactate pathways. PM-02 significantly increased the abundance of two tryptophan biosynthesis pathways, accompanied by an increase in available tryptophan and the abundance of tryptophan-producing microbes. All three formulations increased the availability of microbiome-derived metabolites, indicating microbiome functional modulation by the treatments. These findings support clinical evaluation of these novel formulations as a strategy to enhance microbiome composition and function.
Importance:
The gut microbiome produces metabolites, including short-chain fatty acids, B vitamins, and tryptophan derivatives, that are critical regulators of host physiology, from energy metabolism and gut barrier integrity to sleep and immune function. While probiotics introduce live microorganisms, and prebiotics selectively feed existing microbes, co-biotics represent a distinct category of compounds that simultaneously modulate host cell biology and microbiome activity. Despite growing interest in co-biotic supplementation, the impact of complete co-biotic-containing formulations on gut microbiome composition and functional output has not been evaluated. Using a validated ex vivo gastrointestinal model inoculated with fecal microbiota from six healthy adults, we demonstrate that three supplement formulations containing co-biotic compounds consistently increased production of health-associated metabolites, selectively enriched beneficial microbial taxa, and modulated functional metabolic pathways, all without increasing gas production. These findings establish a mechanistic foundation for the clinical investigation of co-biotic formulations as targeted, tolerable interventions for optimizing gut microbiome function across diverse human populations.
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