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Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model

Pseudomonas aeruginosa is a Gram-negative opportunistic bacterium that presents resistance to several antibiotics, thus, representing a major threat to human and animal health. Phage-derived products, namely lysins, or peptidoglycan-hydrolyzing enzymes, can be an effective weapon against antibiotic-...

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Autores principales: Morais, Diana, Tanoeiro, Luís, Marques, Andreia T., Gonçalves, Tiago, Duarte, Aida, Matos, António Pedro Alves, Vital, Joana S., Cruz, Maria Eugénia Meirinhos, Carvalheiro, Manuela Colla, Anes, Elsa, Vítor, Jorge M. B., Gaspar, Maria Manuela, Vale, Filipa F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456237/
https://www.ncbi.nlm.nih.gov/pubmed/36077542
http://dx.doi.org/10.3390/ijms231710143
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author Morais, Diana
Tanoeiro, Luís
Marques, Andreia T.
Gonçalves, Tiago
Duarte, Aida
Matos, António Pedro Alves
Vital, Joana S.
Cruz, Maria Eugénia Meirinhos
Carvalheiro, Manuela Colla
Anes, Elsa
Vítor, Jorge M. B.
Gaspar, Maria Manuela
Vale, Filipa F.
author_facet Morais, Diana
Tanoeiro, Luís
Marques, Andreia T.
Gonçalves, Tiago
Duarte, Aida
Matos, António Pedro Alves
Vital, Joana S.
Cruz, Maria Eugénia Meirinhos
Carvalheiro, Manuela Colla
Anes, Elsa
Vítor, Jorge M. B.
Gaspar, Maria Manuela
Vale, Filipa F.
author_sort Morais, Diana
collection PubMed
description Pseudomonas aeruginosa is a Gram-negative opportunistic bacterium that presents resistance to several antibiotics, thus, representing a major threat to human and animal health. Phage-derived products, namely lysins, or peptidoglycan-hydrolyzing enzymes, can be an effective weapon against antibiotic-resistant bacteria. Whereas in Gram-positive bacteria, lysis from without is facilitated by the exposed peptidoglycan layer, this is not possible in the outer membrane-protected peptidoglycan of Gram-negative bacteria. Here, we suggest the encapsulation of lysins in liposomes as a delivery system against Gram-negative bacteria, using the model of P. aeruginosa. Bioinformatic analysis allowed for the identification of 38 distinct complete prophages within 66 P. aeruginosa genomes (16 of which newly sequenced) and led to the identification of 19 lysins of diverse sequence and function, 5 of which proceeded to wet lab analysis. The four purifiable lysins showed hydrolytic activity against Gram-positive bacterial lawns and, on zymogram assays, constituted of autoclaved P. aeruginosa cells. Additionally, lysins Pa7 and Pa119 combined with an outer membrane permeabilizer showed activity against P. aeruginosa cells. These two lysins were successfully encapsulated in DPPC:DOPE:CHEMS (molar ratio 4:4:2) liposomes with an average encapsulation efficiency of 33.33% and 32.30%, respectively. The application of the encapsulated lysins to the model P. aeruginosa led to a reduction in cell viability and resulted in cell lysis as observed in MTT cell viability assays and electron microscopy. In sum, we report here that prophages may be important sources of new enzybiotics, with prophage lysins showing high diversity and activity. In addition, these enzybiotics following their incorporation in liposomes were able to potentiate their antibacterial effect against the Gram-negative bacteria P. aeruginosa, used as the model.
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spelling pubmed-94562372022-09-09 Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model Morais, Diana Tanoeiro, Luís Marques, Andreia T. Gonçalves, Tiago Duarte, Aida Matos, António Pedro Alves Vital, Joana S. Cruz, Maria Eugénia Meirinhos Carvalheiro, Manuela Colla Anes, Elsa Vítor, Jorge M. B. Gaspar, Maria Manuela Vale, Filipa F. Int J Mol Sci Article Pseudomonas aeruginosa is a Gram-negative opportunistic bacterium that presents resistance to several antibiotics, thus, representing a major threat to human and animal health. Phage-derived products, namely lysins, or peptidoglycan-hydrolyzing enzymes, can be an effective weapon against antibiotic-resistant bacteria. Whereas in Gram-positive bacteria, lysis from without is facilitated by the exposed peptidoglycan layer, this is not possible in the outer membrane-protected peptidoglycan of Gram-negative bacteria. Here, we suggest the encapsulation of lysins in liposomes as a delivery system against Gram-negative bacteria, using the model of P. aeruginosa. Bioinformatic analysis allowed for the identification of 38 distinct complete prophages within 66 P. aeruginosa genomes (16 of which newly sequenced) and led to the identification of 19 lysins of diverse sequence and function, 5 of which proceeded to wet lab analysis. The four purifiable lysins showed hydrolytic activity against Gram-positive bacterial lawns and, on zymogram assays, constituted of autoclaved P. aeruginosa cells. Additionally, lysins Pa7 and Pa119 combined with an outer membrane permeabilizer showed activity against P. aeruginosa cells. These two lysins were successfully encapsulated in DPPC:DOPE:CHEMS (molar ratio 4:4:2) liposomes with an average encapsulation efficiency of 33.33% and 32.30%, respectively. The application of the encapsulated lysins to the model P. aeruginosa led to a reduction in cell viability and resulted in cell lysis as observed in MTT cell viability assays and electron microscopy. In sum, we report here that prophages may be important sources of new enzybiotics, with prophage lysins showing high diversity and activity. In addition, these enzybiotics following their incorporation in liposomes were able to potentiate their antibacterial effect against the Gram-negative bacteria P. aeruginosa, used as the model. MDPI 2022-09-04 /pmc/articles/PMC9456237/ /pubmed/36077542 http://dx.doi.org/10.3390/ijms231710143 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
Morais, Diana
Tanoeiro, Luís
Marques, Andreia T.
Gonçalves, Tiago
Duarte, Aida
Matos, António Pedro Alves
Vital, Joana S.
Cruz, Maria Eugénia Meirinhos
Carvalheiro, Manuela Colla
Anes, Elsa
Vítor, Jorge M. B.
Gaspar, Maria Manuela
Vale, Filipa F.
Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model
title Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model
title_full Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model
title_fullStr Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model
title_full_unstemmed Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model
title_short Liposomal Delivery of Newly Identified Prophage Lysins in a Pseudomonas aeruginosa Model
title_sort liposomal delivery of newly identified prophage lysins in a pseudomonas aeruginosa model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456237/
https://www.ncbi.nlm.nih.gov/pubmed/36077542
http://dx.doi.org/10.3390/ijms231710143
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