The effect of Limosilactobacillus fermentum 2i3 and 0.6% addition of humic substances on production parameters and the immune system of broilers

. 2024 Aug ; 103 (8) : 103884. [epub] 20240522

Jazyk angličtina Země Velká Británie, Anglie Médium print-electronic

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid38865771
Odkazy

PubMed 38865771
PubMed Central PMC11223114
DOI 10.1016/j.psj.2024.103884
PII: S0032-5791(24)00463-2
Knihovny.cz E-zdroje

The widespread use of antibiotics in the poultry industry as growth promoters has led to the emergence of bacterial resistance, which poses a significant health risk to humans and animals. Substances of natural origin, such as probiotic bacteria and humic substances, can be a promising solution. The aim of this experiment was to study the effect of the administration of a probiotic strain of Limosilactobacillus fermentum 2i3 and/or a new formula of humic substances specifically designed for detoxification on the production parameters, including gene expression of myogenic growth factors and selected parameters of the immune response. We found that production parameters such as feed conversion ratio and weekly weight gain, as well as gene expression of mucin-2 and immunoglobulin A, were positively influenced mainly by the administration of L. fermentum 2i3. Similarly, the percentage of active phagocytes and their absorption capacity as well as the proportions of CD8+ and CD4+CD8+ T-lymphocyte subpopulations were significantly increased. The addition of humic substances, either alone or in combination with probiotics, significantly reduced the aforementioned parameters compared to the control. On the other hand, the relative gene expression for all myogenic growth factors was the highest in the humic group alone. Based on the results obtained, we can confirm the immunostimulating effect of L. fermentum 2i3 administered in drinking water, which also had an impact on important production parameters of broiler meat. On the other hand, in the combined group there was no expected potentiation of the positive effects on the observed parameters.

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Abd El-Hack M.E., El-Saadony M.T., Salem H.M., El-Tahan A.M., Soliman M.M., Youssef G.B.A., Taha A.E., Soliman S.M., Ahmed A.E., El-Kott A.F., Al Syaad K.M., Swelum A.A. Alternatives to antibiotics for organic poultry production: types, modes of action and impacts on bird's health and production. Poult. Sci. 2022;101 PubMed PMC

Adhikari R., Chen C., Waters E., West F.D., Kim W.K. Isolation and differentiation of mesenchymal stem cells from broiler chicken compact bones. Front. Physiol. 2019;9:1892. PubMed PMC

Akaichi A., Jebali A., Benlarbi M., Mahjoub T., Kaboudi K., Chaouacha-Chekir R.B., Haouas Z., Boudhrioua N. Effects of humic acid and organic acids supplements on performance, meat quality, leukocyte count, and histopathological changes in spleen and liver of broiler chickens. Res. Vet. Sci. 2022;150:179–188. PubMed

Albrecht E., Žitňan R., Karaffová V., Revajová V., Čechová M., Levkut M., Jr, Röntgen M. Effects of the probiotic Enterococcus faecium on muscle characteristics of chickens. Life. 2022;12:1695. PubMed PMC

Bertram E.M. Characterisation of duck thromhocytes. Res. Vet. Sci. 1998;64:267–270. PubMed

Cetin E., Berrin K.G., Nazmi C. Effect of dietary humate and organic acid supplementation on social stress induced by high stocking density in laying hens. J. Anim. Vet. Adv. 2011;10:2402–2407.

Choi J., Kong B., Bowker B.C., Zhuang H., Kim W.K. Nutritional strategies to improve meat quality and composition in the challenging conditions of broiler production: a review. Animals. 2023;13:1386. PubMed PMC

Dalloul R.A., Lillehoj H.S., Tamim N.M., Shellum T.A., Doerr J.A. Induction of local protective immunity to Eimeria acervulina by a Lactobacillus-based probiotic. Comp. Immunol. 2005;28:351–361. PubMed

De Boever S., Vangestel C., De Backer P., Croubels S., Sys S.U. Identification and validation of housekeeping genes as internal control for gene expression in an intravenous LPS inflammation model in chickens. Vet. Immunol. Immunopathol. 2008;122:312–317. PubMed

De Cesare A., Oliveri C., Lucchi A., Savini F., Manfreda G., Sala C. Pilot study on poultry meat from antibiotic free and conventional farms: Can metagenomics detect any difference? Foods. 2022;11:249. PubMed PMC

Englerová K., Nemcová R., Styková E. Biosurfactants and their role in the inhibition of the biofilmforming pathogens. Ces. Slov. Farm. 2018;67:107–112. PubMed

Fathi M.M., Ebeid T.A., Al-Homidan I., Soliman N.K., Abou-Emera O.K. Influence of probiotic supplementation on immune response in broilers raised under hot climate. Br. Poult. Sci. 2017;6:1–5. PubMed

Fesseha H., Demlie T., Mathewos M., Eshetu E. Effect of Lactobacillus species probiotics on growth performance of dual-purpose chicken. Vet. Med. 2021;12:75–83. PubMed PMC

Florkowska A., Meszka I., Zawada M., Legutko D., Proszynski T.J., Janczyk-Ilach K., Streminska W., Ciemerych M.A., Grabowska I. PAX-7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas. Stem Cell Res. Ther. 2020;11:238. PubMed PMC

Haghighi H.R., Abdul-Careem M.F., Dara R.A., Chambers J., Shariff S. Cytokine gene expression in chicken cecal tonsils following treatment with probiotics and Salmonella infection. Vet. Microbiol. 2008;126:225–233. PubMed

Haghighi H.R., Gong J., Gyles C.L., Hayes M.A., Sanei B., Parvizi P., Gisavi H., Chambers J.R., Sharif S. Modulation of antibody-mediated immune response by probiotics in chickens. Clin. Diagn. Lab. Immunol. 2005;12:1387–1392. PubMed PMC

Harčárová M., Čonková E., Naď P., Váczi P., Proškovcová M. In Vitro inhibitory activity of cell-free supernatants of Lactobacillus spp. and Bacillus spp. against Fusarium graminearum. Folia Veterinaria. 2021;65:9–14.

Karaffová V., Marcinková E., Bobíková K., Herich R., Revajová V., Stašová D., Kavuľová A., Levkutová M., Levkut M., Jr., Lauková A., Ševčíková Z., Levkut M. Sr.TLR4 and TLR21 expression, MIF, IFN-β, MD-2, CD14 activation, and sIgA production in chickens administered with EFAL41 strain challenged with Campylobacter jejuni. Folia Microbiol. 2017;62:89–97. PubMed

Koenen M.E., Kramer J., van der Hulst R., Heres L., Jeurissen S.H.M., Boersma W.J.A. Immuno­modulation by probiotic lactobacilli in layer- and meat-type chickens. Br. Poult. Sci. 2004;45:355–366. PubMed

Koščová J., Nemcová R., Gancarčíková S., Jonecová Z., Sciranková Ľ., Bomba A., Buleca V. Effect of two plant extracts and Lactobacillus fermentum on colonization of gastrointestinal tract by Salmonella enterica var. Düsseldorf in chicks. Biologia. 2006;61:775–778.

Kralik G., Sak-Bosnar M., Grčević M., Kralik Z. Effect of amino acids on growth performance, carcass characteristics, meat quality, and carnosine concentration in broiler chickens. J. Poult. Sci. 2018;55:239–248. PubMed PMC

Lammers A.W., Wieland H., Kruijt L., Jansma A., Straetemans T., Schots A., den Hartog G., Parmentier H.K. Successive immunoglobulin and cytokine expression in the small intestine of juvenile chicken. Dev. Comp. Immunol. 2010;34:1254–1262. PubMed

López-García Y.R., Gómez-Rosales S., Angeles M.L., Jiménez-Severiano H., Merino-Guzman R., Téllez-Isaias G. Effect of the addition of humic substances on morphometric analysis and number of goblet cells in the intestinal mucosa of broiler chickens. Animals. 2023;13:212. PubMed PMC

Mudroňová D., Karaffová V., Semjon B., Nad’ P., Koščová J., Bartkovský M., Makiš A., Bujňák L., Nagy J., Mojžišová J., Marcinčák S. Effects of dietary supplementation of humic substances on production parameters, immune status and gut microbiota of laying hens. Agriculture. 2021;11:744.

Mudroňová D., Karaffová V., Pešulová T., Koščová J., Maruščáková I.C., Bartkovský M., Marcinčáková D., Ševčíková Z., Marcinčák S. The effect of humic substances on gut microbiota and immune response of broilers. Food Agric. Immunol. 2020;31:137–149.

Mudroňová D., Karaffová V., Koščová J., Bartkovský M., Marcinčáková D., Popelka P., Klempová T., Čertík M., Mačanga J., Marcinčák S. Effect of fungal gamma-linolenic acid and beta-carotene containing prefermented feed on immunity and gut of broiler chicken. Poult. Sci. 2018;97:4211–4218. PubMed PMC

Mudroňová D., Nemcová R., Lauková A., Koščová J., Strompfová V., Györyová K., Szunyogová E., Lazar G. Effect of Lactobacillus fermentum alone, and in combination with zinc(II) propionate on Salmonella enterica serovar Düsseldorf in Japanese quails. Biologia. 2006;61:797–801.

Perminova I.V., Frimmel F.H., Kudryavtsev A.V., Kulikova N.A., Abbt-Braun G., Hesse S., Petrosyant V.S. Molecular weight characteristics of humic substances from different environments as determined by size exclusion chromatography and their statistical evaluation. Environ. Sci. Technol. 2003;37:2477–2485. PubMed

Phillips C.J.C., Hosseintabar-Ghasemabad B., Gorlov I.F., Slozhenkina M.I., Mosolov A.A., Seidavi A. Immunomodulatory effects of natural feed additives for meat chickens. Life. 2023;13:1287. PubMed PMC

Ramlucken U., Ramchuran S.O., Moonsamy G., Lalloo R., Thantsha M.S., Jansen van Rensburg C. A novel Bacillus based multi-strain probiotic improves growth performance and intestinal properties of Clostridium perfringens challenged broilers. Poult. Sci. 2020;99:331–341. PubMed PMC

Rehman A., Arif M., Sajjad N., Al-Ghadi M.Q., Alagawany M., Abd El-Hack M.E., Alhimaidi A.R., Elnesr S.S., Almutairi B.O., Amran R.A., Hussein E.O.S., Swelum A.A. Dietary effect of probiotics and prebiotics on broiler performance, carcass, and immunity. Poult. Sci. 2020;99:6946–6953. PubMed PMC

Riede U.N., Zeck-Kapp G., Freudenberg N., Keller H.U., Seubert B. Humate-induced activation of human granulocytes. Virchows Arch. B Cell Pathol. Incl. Mol. Pathol. 1991;60:27–34. PubMed

Shehata A.A., Yalçın S., Latorre J.D., Basiouni S., Attia Y.A., Abd El-Wahab A., Visscher C., El-Seedi H.R., Huber C., Hafez H.M., Eisenreich W., Tellez-Isaias G. Probiotics, prebiotics, and phytogenic substances for optimizing gut health in poultry. Microorganisms. 2022;10:395. PubMed PMC

Skalická M., Naď P., Bujňák L., Marcin A. The Effect of humic substances on the content of copper and zinc in the turkey muscle. Asian J. Agric. Food Sci. 2022;10:108–112.

Smirnov A., Tako E., Ferket P.R., Uni Z. Mucin gene expression and mucin content in the chicken intestinal goblet cells are affected by in ovo feeding of carbohydrates. Poult. Sci. 2006;85:669–673. PubMed

Styková, E., R. Nemcová, and I. Valocký. Probiotický prípravok, spôsob jeho prípravy a použitie probiotického prípravku [Probiotic preparation, method of its preparation and use of probiotic preparation]. Patent No. 288782, Úrad priemyselného vlastníctva SR, 2016. Accessed June 2024. https://wbr.indprop.gov.sk/WebRegistre/Patent/Detail/50050-2016.

Torrente Y., Bella P., Tripodi L., Villa C., Farini A. Role of insulin-like growth factor receptor 2 across muscle homeostasis: implications for treating muscular dystrophy. Cells. 2020;9:441. PubMed PMC

Trofimova E.S., Zykova M.V., Danilets M.G., et al. Immunomodulating properties of humic acids extracted from oligotrophic Sphagnum magellanicum Peat. Bull. Exp. Biol. Med. 2021;170:461–465. PubMed

Vašková J., Stupák M., Vidová Ugurbaş M., Žatko D., Vaško L. Therapeutic efficiency of humic acids in intoxications. Life. 2023;13:971. PubMed PMC

Wang Q., Ying J., Zou P., Zhou Y., Wang B., Yu D., Li W., Zhan X. Effects of dietary supplementation of humic acid sodium and zinc oxide on growth performance, immune status and antioxidant capacity of weaned piglets. Animals. 2020;10:2104. PubMed PMC

Xiao Y., Wu C., Li K., Gui G., Zhang G., Yang H. Association of growth rate with hormone levels and myogenic gene expression profile in broilers. J. Anim. Sci. Biotechnol. 2017;8:43. PubMed PMC

Zammit P.S. Function of the myogenic regulatory factors MYF-5, MyoD, myogenin and MRF4 in skeletal muscle, satellite cells and regenerative myogenesis. Semin. Cell Dev. Biol. 2017;72:19–32. PubMed

Zhang T., Zhang C., Zhang J., Sun F., Duan L. Efficacy of probiotics for irritable bowel syndrome: a systematic review and network meta-analysis. Front. Cell. Infect. Microbiol. 2022;12 PubMed PMC

Zou Q., Fan X., Xu Y., Wang T T., Li D. Effects of dietary supplementation probiotic complex on growth performance, blood parameters, fecal harmful gas, and fecal microbiota in AA+ male broilers. Front. Microbiol. 2022;13 PubMed PMC

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