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Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii

Acinetobacter baumannii is a Gram-negative, immobile, aerobic nosocomial opportunistic coccobacillus that causes pneumonia, septicemia, and urinary tract infections in immunosuppressed patients. There are no commercially available alternative antimicrobials, and multi-drug resistance is an urgent co...

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Autores principales: Deusdará, Túllio T., Félix, Mellanie K. C., de S. Brito, Helio, Cangussu, Edson W. S., de S. Moura, Wellington, Albuquerque, Benedito, Silva, Marcos G., dos Santos, Gil R., de Morais, Paula B., da Silva, Elizangela F., Chaves, Yury O., Mariúba, Luis Andre M., Nogueira, Paulo A., Astolfi-Filho, Spartaco, Assunção, Enedina N., Epiphanio, Sabrina, Marinho, Claudio R. F., Brandi, Igor V., Viana, Kelvinson F., Oliveira, Eugenio E., Cangussu, Alex Sander R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058140/
https://www.ncbi.nlm.nih.gov/pubmed/36992253
http://dx.doi.org/10.3390/vaccines11030669
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author Deusdará, Túllio T.
Félix, Mellanie K. C.
de S. Brito, Helio
Cangussu, Edson W. S.
de S. Moura, Wellington
Albuquerque, Benedito
Silva, Marcos G.
dos Santos, Gil R.
de Morais, Paula B.
da Silva, Elizangela F.
Chaves, Yury O.
Mariúba, Luis Andre M.
Nogueira, Paulo A.
Astolfi-Filho, Spartaco
Assunção, Enedina N.
Epiphanio, Sabrina
Marinho, Claudio R. F.
Brandi, Igor V.
Viana, Kelvinson F.
Oliveira, Eugenio E.
Cangussu, Alex Sander R.
author_facet Deusdará, Túllio T.
Félix, Mellanie K. C.
de S. Brito, Helio
Cangussu, Edson W. S.
de S. Moura, Wellington
Albuquerque, Benedito
Silva, Marcos G.
dos Santos, Gil R.
de Morais, Paula B.
da Silva, Elizangela F.
Chaves, Yury O.
Mariúba, Luis Andre M.
Nogueira, Paulo A.
Astolfi-Filho, Spartaco
Assunção, Enedina N.
Epiphanio, Sabrina
Marinho, Claudio R. F.
Brandi, Igor V.
Viana, Kelvinson F.
Oliveira, Eugenio E.
Cangussu, Alex Sander R.
author_sort Deusdará, Túllio T.
collection PubMed
description Acinetobacter baumannii is a Gram-negative, immobile, aerobic nosocomial opportunistic coccobacillus that causes pneumonia, septicemia, and urinary tract infections in immunosuppressed patients. There are no commercially available alternative antimicrobials, and multi-drug resistance is an urgent concern that requires emergency measures and new therapeutic strategies. This study evaluated a multi-drug-resistant A. baumannii whole-cell vaccine, inactivated and adsorbed on an aluminum hydroxide–chitosan (mAhC) matrix, in an A. baumannii sepsis model in immunosuppressed mice by cyclophosphamide (CY). CY-treated mice were divided into immunized, non-immunized, and adjuvant-inoculated groups. Three vaccine doses were given at 0D, 14D, and 28D, followed by a lethal dose of 4.0 × 10(8) CFU/mL of A. baumannii. Immunized CY-treated mice underwent a significant humoral response, with the highest IgG levels and a higher survival rate (85%); this differed from the non-immunized CY-treated mice, none of whom survived (p < 0.001), and from the adjuvant group, with 45% survival (p < 0.05). Histological data revealed the evident expansion of white spleen pulp from immunized CY-treated mice, whereas, in non-immunized and adjuvanted CY-treated mice, there was more significant organ tissue damage. Our results confirmed the proof-of-concept of the immune response and vaccine protection in a sepsis model in CY-treated mice, contributing to the advancement of new alternatives for protection against A. baumannii infections.
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spelling pubmed-100581402023-03-30 Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii Deusdará, Túllio T. Félix, Mellanie K. C. de S. Brito, Helio Cangussu, Edson W. S. de S. Moura, Wellington Albuquerque, Benedito Silva, Marcos G. dos Santos, Gil R. de Morais, Paula B. da Silva, Elizangela F. Chaves, Yury O. Mariúba, Luis Andre M. Nogueira, Paulo A. Astolfi-Filho, Spartaco Assunção, Enedina N. Epiphanio, Sabrina Marinho, Claudio R. F. Brandi, Igor V. Viana, Kelvinson F. Oliveira, Eugenio E. Cangussu, Alex Sander R. Vaccines (Basel) Article Acinetobacter baumannii is a Gram-negative, immobile, aerobic nosocomial opportunistic coccobacillus that causes pneumonia, septicemia, and urinary tract infections in immunosuppressed patients. There are no commercially available alternative antimicrobials, and multi-drug resistance is an urgent concern that requires emergency measures and new therapeutic strategies. This study evaluated a multi-drug-resistant A. baumannii whole-cell vaccine, inactivated and adsorbed on an aluminum hydroxide–chitosan (mAhC) matrix, in an A. baumannii sepsis model in immunosuppressed mice by cyclophosphamide (CY). CY-treated mice were divided into immunized, non-immunized, and adjuvant-inoculated groups. Three vaccine doses were given at 0D, 14D, and 28D, followed by a lethal dose of 4.0 × 10(8) CFU/mL of A. baumannii. Immunized CY-treated mice underwent a significant humoral response, with the highest IgG levels and a higher survival rate (85%); this differed from the non-immunized CY-treated mice, none of whom survived (p < 0.001), and from the adjuvant group, with 45% survival (p < 0.05). Histological data revealed the evident expansion of white spleen pulp from immunized CY-treated mice, whereas, in non-immunized and adjuvanted CY-treated mice, there was more significant organ tissue damage. Our results confirmed the proof-of-concept of the immune response and vaccine protection in a sepsis model in CY-treated mice, contributing to the advancement of new alternatives for protection against A. baumannii infections. MDPI 2023-03-16 /pmc/articles/PMC10058140/ /pubmed/36992253 http://dx.doi.org/10.3390/vaccines11030669 Text en © 2023 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
Deusdará, Túllio T.
Félix, Mellanie K. C.
de S. Brito, Helio
Cangussu, Edson W. S.
de S. Moura, Wellington
Albuquerque, Benedito
Silva, Marcos G.
dos Santos, Gil R.
de Morais, Paula B.
da Silva, Elizangela F.
Chaves, Yury O.
Mariúba, Luis Andre M.
Nogueira, Paulo A.
Astolfi-Filho, Spartaco
Assunção, Enedina N.
Epiphanio, Sabrina
Marinho, Claudio R. F.
Brandi, Igor V.
Viana, Kelvinson F.
Oliveira, Eugenio E.
Cangussu, Alex Sander R.
Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii
title Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii
title_full Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii
title_fullStr Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii
title_full_unstemmed Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii
title_short Using an Aluminum Hydroxide–Chitosan Matrix Increased the Vaccine Potential and Immune Response of Mice against Multi-Drug-Resistant Acinetobacter baumannii
title_sort using an aluminum hydroxide–chitosan matrix increased the vaccine potential and immune response of mice against multi-drug-resistant acinetobacter baumannii
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058140/
https://www.ncbi.nlm.nih.gov/pubmed/36992253
http://dx.doi.org/10.3390/vaccines11030669
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