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Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model

Bartonella henselae is a gram-negative facultative intracellular bacterium and is the causative agent of cat-scratch disease. Our previous data have established that Bacteroides fragilis colonization is able to prevent B. henselae damages through the polysaccharide A (PSA) in an experimental murine...

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Autores principales: Pagliuca, Chiara, Cicatiello, Annunziata G., Colicchio, Roberta, Greco, Adelaide, Cerciello, Raimondo, Auletta, Luigi, Albanese, Sandra, Scaglione, Elena, Pagliarulo, Caterina, Pastore, Gabiria, Mansueto, Gelsomina, Brunetti, Arturo, Avallone, Bice, Salvatore, Paola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5097911/
https://www.ncbi.nlm.nih.gov/pubmed/27872616
http://dx.doi.org/10.3389/fmicb.2016.01750
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author Pagliuca, Chiara
Cicatiello, Annunziata G.
Colicchio, Roberta
Greco, Adelaide
Cerciello, Raimondo
Auletta, Luigi
Albanese, Sandra
Scaglione, Elena
Pagliarulo, Caterina
Pastore, Gabiria
Mansueto, Gelsomina
Brunetti, Arturo
Avallone, Bice
Salvatore, Paola
author_facet Pagliuca, Chiara
Cicatiello, Annunziata G.
Colicchio, Roberta
Greco, Adelaide
Cerciello, Raimondo
Auletta, Luigi
Albanese, Sandra
Scaglione, Elena
Pagliarulo, Caterina
Pastore, Gabiria
Mansueto, Gelsomina
Brunetti, Arturo
Avallone, Bice
Salvatore, Paola
author_sort Pagliuca, Chiara
collection PubMed
description Bartonella henselae is a gram-negative facultative intracellular bacterium and is the causative agent of cat-scratch disease. Our previous data have established that Bacteroides fragilis colonization is able to prevent B. henselae damages through the polysaccharide A (PSA) in an experimental murine model. In order to determine whether the PSA is essential for the protection against pathogenic effects of B. henselae in immunocompromised hosts, SCID mice were co-infected with B. fragilis wild type or its mutant B. fragilis ΔPSA and the effects of infection on murine tissues have been observed by High-Frequency Ultrasound (HFUS), histopathological examination, and Transmission Electron Microscopy (TEM). For the first time, echostructure, hepatic lobes length, vascular alterations, and indirect signs of hepatic dysfunctions, routinely used as signs of disease in humans, have been analyzed in an immunocompromised murine model. Our findings showed echostructural alterations in all infected mice compared with the Phosphate Buffer Solution (PBS) control group; further, those infected with B. henselae and co-infected with B. henselae/B. fragilis ΔPSA presented the major echostructural alterations. Half of the mice infected with B. henselae and all those co-infected with B. henselae/B. fragilis ΔPSA have showed an altered hepatic echogenicity compared with the renal cortex. The echogenicity score of co-infected mice with B. henselae/B. fragilis ΔPSA differed significantly compared with the PBS control group (p < 0.05). Moreover the inflammation score of the histopathological evaluation was fairly concordant with ultrasound findings. Ultrastructural analysis performed by TEM revealed no significant alterations in liver samples of SCID mice infected with B. fragilis wild type while those infected with B. fragilis ΔPSA showed the presence of collagen around the main vessels compared with the PBS control group. The liver samples of mice infected with B. henselae showed macro-areas rich in collagen, stellate cells, and histiocytic cells. Interestingly, our data demonstrated that immunocompromised SCID mice infected with B. henselae and co-infected with B. henselae/B. fragilis ΔPSA showed the most severe morpho-structural liver damage. In addition, these results suggests that the HFUS together with histopathological evaluation could be considered good imaging approach to evaluate hepatic alterations.
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spelling pubmed-50979112016-11-21 Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model Pagliuca, Chiara Cicatiello, Annunziata G. Colicchio, Roberta Greco, Adelaide Cerciello, Raimondo Auletta, Luigi Albanese, Sandra Scaglione, Elena Pagliarulo, Caterina Pastore, Gabiria Mansueto, Gelsomina Brunetti, Arturo Avallone, Bice Salvatore, Paola Front Microbiol Microbiology Bartonella henselae is a gram-negative facultative intracellular bacterium and is the causative agent of cat-scratch disease. Our previous data have established that Bacteroides fragilis colonization is able to prevent B. henselae damages through the polysaccharide A (PSA) in an experimental murine model. In order to determine whether the PSA is essential for the protection against pathogenic effects of B. henselae in immunocompromised hosts, SCID mice were co-infected with B. fragilis wild type or its mutant B. fragilis ΔPSA and the effects of infection on murine tissues have been observed by High-Frequency Ultrasound (HFUS), histopathological examination, and Transmission Electron Microscopy (TEM). For the first time, echostructure, hepatic lobes length, vascular alterations, and indirect signs of hepatic dysfunctions, routinely used as signs of disease in humans, have been analyzed in an immunocompromised murine model. Our findings showed echostructural alterations in all infected mice compared with the Phosphate Buffer Solution (PBS) control group; further, those infected with B. henselae and co-infected with B. henselae/B. fragilis ΔPSA presented the major echostructural alterations. Half of the mice infected with B. henselae and all those co-infected with B. henselae/B. fragilis ΔPSA have showed an altered hepatic echogenicity compared with the renal cortex. The echogenicity score of co-infected mice with B. henselae/B. fragilis ΔPSA differed significantly compared with the PBS control group (p < 0.05). Moreover the inflammation score of the histopathological evaluation was fairly concordant with ultrasound findings. Ultrastructural analysis performed by TEM revealed no significant alterations in liver samples of SCID mice infected with B. fragilis wild type while those infected with B. fragilis ΔPSA showed the presence of collagen around the main vessels compared with the PBS control group. The liver samples of mice infected with B. henselae showed macro-areas rich in collagen, stellate cells, and histiocytic cells. Interestingly, our data demonstrated that immunocompromised SCID mice infected with B. henselae and co-infected with B. henselae/B. fragilis ΔPSA showed the most severe morpho-structural liver damage. In addition, these results suggests that the HFUS together with histopathological evaluation could be considered good imaging approach to evaluate hepatic alterations. Frontiers Media S.A. 2016-11-07 /pmc/articles/PMC5097911/ /pubmed/27872616 http://dx.doi.org/10.3389/fmicb.2016.01750 Text en Copyright © 2016 Pagliuca, Cicatiello, Colicchio, Greco, Cerciello, Auletta, Albanese, Scaglione, Pagliarulo, Pastore, Mansueto, Brunetti, Avallone and Salvatore. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Pagliuca, Chiara
Cicatiello, Annunziata G.
Colicchio, Roberta
Greco, Adelaide
Cerciello, Raimondo
Auletta, Luigi
Albanese, Sandra
Scaglione, Elena
Pagliarulo, Caterina
Pastore, Gabiria
Mansueto, Gelsomina
Brunetti, Arturo
Avallone, Bice
Salvatore, Paola
Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model
title Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model
title_full Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model
title_fullStr Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model
title_full_unstemmed Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model
title_short Novel Approach for Evaluation of Bacteroides fragilis Protective Role against Bartonella henselae Liver Damage in Immunocompromised Murine Model
title_sort novel approach for evaluation of bacteroides fragilis protective role against bartonella henselae liver damage in immunocompromised murine model
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5097911/
https://www.ncbi.nlm.nih.gov/pubmed/27872616
http://dx.doi.org/10.3389/fmicb.2016.01750
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