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Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat

Tapeworm infection continues to be an important cause of morbidity worldwide. Recent metagenomics studies have established a link between gut microbiota and parasite infection. The identification of gut probiotics is of foremost importance to explore its relationship and function with the parasite i...

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Autores principales: Mandal, Sudeshna, Mondal, Chandrani, Mukherjee, Tanmoy, Saha, Samiparna, Kundu, Anirban, Ghosh, Sinchan, Lyndem, Larisha M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785584/
https://www.ncbi.nlm.nih.gov/pubmed/36557581
http://dx.doi.org/10.3390/microorganisms10122328
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author Mandal, Sudeshna
Mondal, Chandrani
Mukherjee, Tanmoy
Saha, Samiparna
Kundu, Anirban
Ghosh, Sinchan
Lyndem, Larisha M.
author_facet Mandal, Sudeshna
Mondal, Chandrani
Mukherjee, Tanmoy
Saha, Samiparna
Kundu, Anirban
Ghosh, Sinchan
Lyndem, Larisha M.
author_sort Mandal, Sudeshna
collection PubMed
description Tapeworm infection continues to be an important cause of morbidity worldwide. Recent metagenomics studies have established a link between gut microbiota and parasite infection. The identification of gut probiotics is of foremost importance to explore its relationship and function with the parasite in the host. In this study, the gut content of hosts infected with tapeworm Hymenolepis diminuta and non-infected host gut were disected out to determine their Lactic acid bacterial (LAB) population in MRS agar and microbial community was analysed by metagenomics. The bacterial count was calculated on a bacterial counting chamber and their morphology was determined microscopically and biochemically. Further, to determine the safety profile antibiotic resistance test, antimicrobial, hemolytic activity, and adhesion capability were calculated. We found six dominant probiotic strains and a decrease in LAB load from 1.7–2.3 × 10(7) CFU/mL in the uninfected group to a range of 8.4 × 10(5) CFU/mL to 3.2 × 10(5) CFU/mL in the infected groups with respect to an increase in the parasite number from 10–18. In addition, we found a depletion in the probiotic relative abundance of Lactobacillus and an enrichment in potentially pathogenic Proteobacteria, Fusobacteria, and Streptococcus. Phylogenetic analysis of the six probiotics revealed a close similarity with different strains of L. brevis, L. johnsonii, L. taiwansis, L. reuteri, L. plantarum, and L. pentosus. Thus, this study suggests that the parasite inhibits probiotic colonization in the gut during its early establishment of infection inside the host.
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spelling pubmed-97855842022-12-24 Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat Mandal, Sudeshna Mondal, Chandrani Mukherjee, Tanmoy Saha, Samiparna Kundu, Anirban Ghosh, Sinchan Lyndem, Larisha M. Microorganisms Article Tapeworm infection continues to be an important cause of morbidity worldwide. Recent metagenomics studies have established a link between gut microbiota and parasite infection. The identification of gut probiotics is of foremost importance to explore its relationship and function with the parasite in the host. In this study, the gut content of hosts infected with tapeworm Hymenolepis diminuta and non-infected host gut were disected out to determine their Lactic acid bacterial (LAB) population in MRS agar and microbial community was analysed by metagenomics. The bacterial count was calculated on a bacterial counting chamber and their morphology was determined microscopically and biochemically. Further, to determine the safety profile antibiotic resistance test, antimicrobial, hemolytic activity, and adhesion capability were calculated. We found six dominant probiotic strains and a decrease in LAB load from 1.7–2.3 × 10(7) CFU/mL in the uninfected group to a range of 8.4 × 10(5) CFU/mL to 3.2 × 10(5) CFU/mL in the infected groups with respect to an increase in the parasite number from 10–18. In addition, we found a depletion in the probiotic relative abundance of Lactobacillus and an enrichment in potentially pathogenic Proteobacteria, Fusobacteria, and Streptococcus. Phylogenetic analysis of the six probiotics revealed a close similarity with different strains of L. brevis, L. johnsonii, L. taiwansis, L. reuteri, L. plantarum, and L. pentosus. Thus, this study suggests that the parasite inhibits probiotic colonization in the gut during its early establishment of infection inside the host. MDPI 2022-11-24 /pmc/articles/PMC9785584/ /pubmed/36557581 http://dx.doi.org/10.3390/microorganisms10122328 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mandal, Sudeshna
Mondal, Chandrani
Mukherjee, Tanmoy
Saha, Samiparna
Kundu, Anirban
Ghosh, Sinchan
Lyndem, Larisha M.
Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat
title Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat
title_full Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat
title_fullStr Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat
title_full_unstemmed Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat
title_short Hymenolepis diminuta Reduce Lactic Acid Bacterial Load and Induce Dysbiosis in the Early Infection of the Probiotic Colonization of Swiss Albino Rat
title_sort hymenolepis diminuta reduce lactic acid bacterial load and induce dysbiosis in the early infection of the probiotic colonization of swiss albino rat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785584/
https://www.ncbi.nlm.nih.gov/pubmed/36557581
http://dx.doi.org/10.3390/microorganisms10122328
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