Modulatory Effect of Postbiotic Substances (Enterocins-like) on T-Cell-Mediated Immune Response in Trichinella spiralis-Infected Mice

Postbiotic substances produced by beneficial/probiotic strains can modulate host immunity and confer health benefits. This study evaluated immunomodulatory and antiparasitic effects of the postbiotics Enterocin M and Durancin-like, as well as their producing bacteria in mice experimentally infected with Trichinella spiralis. Enterocin M, Durancin-like, Enterococcus faecium CCM8558, and Enterococcus durans ED26E/7 were administered daily to mice, which were challenged with T. spiralis larvae on day 7 of treatment. Enterocin M and E. faecium CCM8558 stimulated splenic T- and B-cell proliferation during 5–11 days post infection (dpi), increased splenic CD3+, CD4+ and CD8+ T cells, reduced CD19+ B cells, and enhanced serum IgG2a antibodies. Enterocin M also modulated IFN-γ production with an increase at 5–11 dpi followed by suppression at 18 and 25 dpi. Durancin-like exerted weaker but measurable immunomodulatory effects than its producing strain, E. durans ED26E/7, which was detected as elevated B-cell proliferation and CD3+ and CD4+ T cells during the intestinal phase, and elevated CD8+ T-cell numbers were accompanied by the suppression of IL-10, TGF-β, and IL-4 during the muscle phase. All treatments exerted significant antiparasitic effects, confirmed by reductions in the intestinal adult worm burden by 16.3–54.5% and muscle larval counts by 22.8–55.8%. E. faecium CCM8558 produced the greatest reductions in both adult (54.5%) and larval (55.8%) counts. Overall, enterocins and their producing strains exhibited combined immunomodulatory and antiparasitic activities, highlighting their potential as complementary biological agents for the control of trichinellosis.

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Publication Details

Journal
Applied Microbiology
Published
2026-10-08
DOI
https://doi.org/10.3390/applmicrobiol6100123
Primary Topic
Parasitic Diseases Research and Treatment
Type
article
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article

Modulatory Effect of Postbiotic Substances (Enterocins-like) on T-Cell-Mediated Immune Response in Trichinella spiralis-Infected Mice

Andrea Lauková, Anna Kandričáková, Miroslava Petrová, Zuzana Hurníková et al.
Applied Microbiology
Parasitic Diseases Research and Treatment
article

Modulatory Effect of Postbiotic Substances (Enterocins-like) on T-Cell-Mediated Immune Response in Trichinella spiralis-Infected Mice

Andrea Lauková, Anna Kandričáková, Miroslava Petrová, Zuzana Hurníková, Emı́lia Dvorožňáková, Gabriela Hrčková
article en

Abstract

Postbiotic substances produced by beneficial/probiotic strains can modulate host immunity and confer health benefits. This study evaluated immunomodulatory and antiparasitic effects of the postbiotics Enterocin M and Durancin-like, as well as their producing bacteria in mice experimentally infected with Trichinella spiralis. Enterocin M, Durancin-like, Enterococcus faecium CCM8558, and Enterococcus durans ED26E/7 were administered daily to mice, which were challenged with T. spiralis larvae on day 7 of treatment. Enterocin M and E. faecium CCM8558 stimulated splenic T- and B-cell proliferation during 5–11 days post infection (dpi), increased splenic CD3+, CD4+ and CD8+ T cells, reduced CD19+ B cells, and enhanced serum IgG2a antibodies. Enterocin M also modulated IFN-γ production with an increase at 5–11 dpi followed by suppression at 18 and 25 dpi. Durancin-like exerted weaker but measurable immunomodulatory effects than its producing strain, E. durans ED26E/7, which was detected as elevated B-cell proliferation and CD3+ and CD4+ T cells during the intestinal phase, and elevated CD8+ T-cell numbers were accompanied by the suppression of IL-10, TGF-β, and IL-4 during the muscle phase. All treatments exerted significant antiparasitic effects, confirmed by reductions in the intestinal adult worm burden by 16.3–54.5% and muscle larval counts by 22.8–55.8%. E. faecium CCM8558 produced the greatest reductions in both adult (54.5%) and larval (55.8%) counts. Overall, enterocins and their producing strains exhibited combined immunomodulatory and antiparasitic activities, highlighting their potential as complementary biological agents for the control of trichinellosis.

Applied MicrobiologyVol. 6(10)
Slovak Academy of Sciences (SK), Centre of Biosciences of the Slovak Academy of Sciences (SK), Institute of Parasitology of the Slovak Academy of Sciences (SK), Institute of Animal Physiology of the Slovak Academy of Sciences (SK)
Openalex Percentile: Top 12%
Parasitic Diseases Research and Treatment
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