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February 16, 20260 citationsOpen Access

Probiotic Potential of Weizmannia coagulans MA42, an Endospore-Forming Probiotic Bacterium Capable of Dietary Fiber Digestion

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PPPunnita PamueangmunNKNang Nwet Noon KhamAKApinun Kanpiengjai

Key Points

  • To evaluate the probiotic properties, safety, and functional characteristics of Weizmannia coagulans strains.
  • Compared W. coagulans MA42 with strains P13, S5, and reference strain ATCC 7050.
  • Assessed gastrointestinal survival, auto-aggregation, hydrophobicity, and antimicrobial activity.
  • Evaluated metabolite production from dietary fibers and prebiotics.
  • All strains showed >90% gastrointestinal survival and high auto-aggregation and hydrophobicity.
  • MA42 uniquely inhibited Staphylococcus aureus and produced significant organic acids.
  • Strains exhibited negative hemolytic activity, ensuring safety.

Abstract

Weizmannia coagulans has emerged as a prominent probiotic candidate due to its resilience in extreme environments and therapeutic potential for non-gastrointestinal diseases, including obesity, bacterial vaginosis, and irritable bowel syndrome-related depression. This study comprehensively evaluated the probiotic properties, safety profile, and functional characteristics of W. coagulans strains (MA42, P13, and S5) compared with the reference strain W. coagulans ATCC 7050. All tested strains exhibited excellent gastrointestinal survival (>90% viability), superior auto-aggregation (up to 36.60%), hydrophobicity (up to 36.58%), and susceptibility to commonly used antimicrobials. Cell-free culture supernatants showed potent antimicrobial activity against pathogenic bacteria, including Escherichia coli ATCC 25922, Salmonella enterica serovar Typhimurium TISTR 292, and Bacillus cereus TISTR 747, primarily through organic acid production. Notably, strain MA42 uniquely inhibited the growth of Staphylococcus aureus TISTR 746. All strains showed negative hemolytic activity, confirming their safety profile. W. coagulans MA42 distinguished itself through exceptional metabolic versatility, demonstrating vigorous growth on diverse complex dietary fibers and prebiotics, with significant production of beneficial organic acids, particularly lactic and acetic acids. This superior fermentation capacity correlated directly with elevated extracellular-enzyme activities. Furthermore, all strains maintained excellent viability (>90% recovery) after freeze-drying with maltodextrin as a cryoprotectant, indicating industrial scalability.

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Cite This Study

Pamueangmun et al. (2026) studied this question.

synapsesocial.com/papers/69926552eb1f82dc367a120chttps://doi.org/10.3390/foods15040710
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A Novel Weizmannia coagulans Strain WC412 with Superior Environmental Resilience Improves Growth Performance of Mice by Regulating the Intestinal Microbiota2025
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  3. 3Symbiotic performance of Bacillus coagulans: inhibition of Escherichia coli in coculture and organic-acid/2,3-butanediol production2026
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