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Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics

Bacteriophages (“phages”) infect and multiply within specific bacterial strains, causing lysis of their target. Due to the specific nature of these interactions, phages allow a high-precision approach for therapy which can also be exploited for the detection of phage-sensitive pathogens associated w...

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Autores principales: Zelcbuch, Lior, Yitzhaki, Elad, Nissan, Olga, Gidron, Eliya, Buchshtab, Nufar, Kario, Edith, Kredo-Russo, Sharon, Zak, Naomi B., Bassan, Merav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069110/
https://www.ncbi.nlm.nih.gov/pubmed/33918942
http://dx.doi.org/10.3390/ph14040347
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author Zelcbuch, Lior
Yitzhaki, Elad
Nissan, Olga
Gidron, Eliya
Buchshtab, Nufar
Kario, Edith
Kredo-Russo, Sharon
Zak, Naomi B.
Bassan, Merav
author_facet Zelcbuch, Lior
Yitzhaki, Elad
Nissan, Olga
Gidron, Eliya
Buchshtab, Nufar
Kario, Edith
Kredo-Russo, Sharon
Zak, Naomi B.
Bassan, Merav
author_sort Zelcbuch, Lior
collection PubMed
description Bacteriophages (“phages”) infect and multiply within specific bacterial strains, causing lysis of their target. Due to the specific nature of these interactions, phages allow a high-precision approach for therapy which can also be exploited for the detection of phage-sensitive pathogens associated with chronic diseases due to gut microbiome imbalance. As rapid phage-mediated detection assays becoming standard-of-care diagnostic tools, they will advance the more widespread application of phage therapy in a precision approach. Using a conventional method and a new cloning approach to develop luminescent phages, we engineered two phages that specifically detect a disease-associated microbial strain. We performed phage sensitivity assays in liquid culture and in fecal matrices and tested the stability of spiked fecal samples stored under different conditions. Different reporter gene structures and genome insertion sites were required to successfully develop the two nluc-reporter phages. The reporter phages detected spiked bacteria in five fecal samples with high specificity. Fecal samples stored under different conditions for up to 30 days did not display major losses in reporter-phage-based detection. Luminescent phage-based diagnostics can provide a rapid co-diagnostic tool to guide the growing field of phage therapy, particularly for a precision-based approach to chronic diseases treatment.
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spelling pubmed-80691102021-04-26 Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics Zelcbuch, Lior Yitzhaki, Elad Nissan, Olga Gidron, Eliya Buchshtab, Nufar Kario, Edith Kredo-Russo, Sharon Zak, Naomi B. Bassan, Merav Pharmaceuticals (Basel) Article Bacteriophages (“phages”) infect and multiply within specific bacterial strains, causing lysis of their target. Due to the specific nature of these interactions, phages allow a high-precision approach for therapy which can also be exploited for the detection of phage-sensitive pathogens associated with chronic diseases due to gut microbiome imbalance. As rapid phage-mediated detection assays becoming standard-of-care diagnostic tools, they will advance the more widespread application of phage therapy in a precision approach. Using a conventional method and a new cloning approach to develop luminescent phages, we engineered two phages that specifically detect a disease-associated microbial strain. We performed phage sensitivity assays in liquid culture and in fecal matrices and tested the stability of spiked fecal samples stored under different conditions. Different reporter gene structures and genome insertion sites were required to successfully develop the two nluc-reporter phages. The reporter phages detected spiked bacteria in five fecal samples with high specificity. Fecal samples stored under different conditions for up to 30 days did not display major losses in reporter-phage-based detection. Luminescent phage-based diagnostics can provide a rapid co-diagnostic tool to guide the growing field of phage therapy, particularly for a precision-based approach to chronic diseases treatment. MDPI 2021-04-09 /pmc/articles/PMC8069110/ /pubmed/33918942 http://dx.doi.org/10.3390/ph14040347 Text en © 2021 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
Zelcbuch, Lior
Yitzhaki, Elad
Nissan, Olga
Gidron, Eliya
Buchshtab, Nufar
Kario, Edith
Kredo-Russo, Sharon
Zak, Naomi B.
Bassan, Merav
Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics
title Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics
title_full Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics
title_fullStr Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics
title_full_unstemmed Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics
title_short Luminescent Phage-Based Detection of Klebsiella pneumoniae: From Engineering to Diagnostics
title_sort luminescent phage-based detection of klebsiella pneumoniae: from engineering to diagnostics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069110/
https://www.ncbi.nlm.nih.gov/pubmed/33918942
http://dx.doi.org/10.3390/ph14040347
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