Modulatory Effect of Beneficial Enterococci and Their Enterocins on the Blood Phagocytes in Murine Experimental Trichinellosis

Author:

Vargová Miroslava1,Revajová Viera2,Lauková Andrea3ORCID,Hurníková Zuzana1ORCID,Dvorožňáková Emília1ORCID

Affiliation:

1. Institute of Parasitology, Slovak Academy of Sciences, 04001 Košice, Slovakia

2. Department of Morphological Disciplines, University of Veterinary Medicine and Pharmacy in Košice, 04181 Košice, Slovakia

3. Institute of Animal Physiology, Centre of Biosciences, Slovak Academy of Sciences, 04001 Košice, Slovakia

Abstract

Bacteriocins (enterocins) represent a new therapeutic strategy in various intestinal and non-intestinal infections. In antiparasitic defence, an oxidative inflammation of phagocytes is effective in destroying new-born Trichinella spiralis larvae. The strains Enterococcus faecium CCM8558 and E. durans ED26E/7 and their enterocins, enterocin M and a durancin-like enterocin, respectively, were administered daily, and mice were then infected with T. spiralis larvae on the seventh day of treatment. Phagotest and Bursttest kits were used to detect the phagocytosis and respiratory burst in blood leukocytes. T. spiralis infection inhibited phagocytosis from day 11 post-infection (dpi) during the migration of new-born larvae into the muscles. E. faecium CCM8558, E. durans ED26E/7, and the durancin-like enterocin increased phagocytic activity from day 11 dpi. Both strains and their enterocins (enterocin M and durancin-like) stimulated the ingestion capability of phagocytes from 18 to 32 dpi. Enterococci/enterocins therapy prevented a reduction in cells with respiratory burst caused by T. spiralis infection from 11 dpi. The enzymatic activity of phagocytes was stimulated on 18 and 25 dpi, particularly by E. faecium CCM8558 and enterocin M. Enterocin M and the durancin-like enterocin were as effective in stimulating phagocytosis as the bacterial strains that produce them. The stimulation of phagocytosis could contribute to decreased larval migration and reduced parasite burden in the host.

Funder

Slovak VEGA agency

Slovak Research and Development Agency

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference67 articles.

1. Berrilli, F., Di Cave, D., Cavallero, S., and D’Amelio, S. (2012). Interactions between parasites and microbial communities in the human gut. Front. Cell. Infect. Microbiol., 2.

2. Bajagai, Y.S., Klieve, A.V., Dart, P.J., and Bryden, W.L. (2016). Probiotics in Animal Nutrition: Production, Impact and Regulation, FAO. [1st ed.].

3. The immunomodulatory effects of lactic acid bacteria for improving immune functions and benefits;Tsai;Appl. Microbiol. Biotechnol.,2012

4. Llewellyn, A., and Foey, A. (2017). Probiotic modulation of innate cell pathogen sensing and signaling events. Nutrients, 9.

5. Bacteriocin: A novel approach for preservation of food;Bharti;Int. J. Pharm. Pharm. Sci.,2015

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