Cargando…

Bacteriophages engineered to display foreign peptides may become short‐circulating phages

Bacteriophages draw scientific attention in medicine and biotechnology, including phage engineering, widely used to shape biological properties of bacteriophages. We developed engineered T4‐derived bacteriophages presenting seven types of tissue‐homing peptides. We evaluated phage accumulation in ta...

Descripción completa

Detalles Bibliográficos
Autores principales: Hodyra‐Stefaniak, Katarzyna, Lahutta, Karolina, Majewska, Joanna, Kaźmierczak, Zuzanna, Lecion, Dorota, Harhala, Marek, Kęska, Weronika, Owczarek, Barbara, Jończyk‐Matysiak, Ewa, Kłopot, Anna, Miernikiewicz, Paulina, Kula, Dominika, Górski, Andrzej, Dąbrowska, Krystyna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6559017/
https://www.ncbi.nlm.nih.gov/pubmed/31037835
http://dx.doi.org/10.1111/1751-7915.13414
_version_ 1783425748405583872
author Hodyra‐Stefaniak, Katarzyna
Lahutta, Karolina
Majewska, Joanna
Kaźmierczak, Zuzanna
Lecion, Dorota
Harhala, Marek
Kęska, Weronika
Owczarek, Barbara
Jończyk‐Matysiak, Ewa
Kłopot, Anna
Miernikiewicz, Paulina
Kula, Dominika
Górski, Andrzej
Dąbrowska, Krystyna
author_facet Hodyra‐Stefaniak, Katarzyna
Lahutta, Karolina
Majewska, Joanna
Kaźmierczak, Zuzanna
Lecion, Dorota
Harhala, Marek
Kęska, Weronika
Owczarek, Barbara
Jończyk‐Matysiak, Ewa
Kłopot, Anna
Miernikiewicz, Paulina
Kula, Dominika
Górski, Andrzej
Dąbrowska, Krystyna
author_sort Hodyra‐Stefaniak, Katarzyna
collection PubMed
description Bacteriophages draw scientific attention in medicine and biotechnology, including phage engineering, widely used to shape biological properties of bacteriophages. We developed engineered T4‐derived bacteriophages presenting seven types of tissue‐homing peptides. We evaluated phage accumulation in targeted tissues, spleen, liver and phage circulation in blood (in mice). Contrary to expectations, accumulation of engineered bacteriophages in targeted organs was not observed, but instead, three engineered phages achieved tissue titres up to 2 orders of magnitude lower than unmodified T4. This correlated with impaired survival of these phages in the circulation. Thus, engineering of T4 phage resulted in the short‐circulating phage phenotype. We found that the complement system inactivated engineered phages significantly more strongly than unmodified T4, while no significant differences in phages’ susceptibility to phagocytosis or immunogenicity were found. The short‐circulating phage phenotype of the engineered phages suggests that natural phages, at least those propagating on commensal bacteria of animals and humans, are naturally optimized to escape rapid neutralization by the immune system. In this way, phages remain active for longer when inside mammalian bodies, thus increasing their chance of propagating on commensal bacteria. The effect of phage engineering on phage pharmacokinetics should be considered in phage design for medical purposes.
format Online
Article
Text
id pubmed-6559017
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-65590172019-06-13 Bacteriophages engineered to display foreign peptides may become short‐circulating phages Hodyra‐Stefaniak, Katarzyna Lahutta, Karolina Majewska, Joanna Kaźmierczak, Zuzanna Lecion, Dorota Harhala, Marek Kęska, Weronika Owczarek, Barbara Jończyk‐Matysiak, Ewa Kłopot, Anna Miernikiewicz, Paulina Kula, Dominika Górski, Andrzej Dąbrowska, Krystyna Microb Biotechnol Research Articles Bacteriophages draw scientific attention in medicine and biotechnology, including phage engineering, widely used to shape biological properties of bacteriophages. We developed engineered T4‐derived bacteriophages presenting seven types of tissue‐homing peptides. We evaluated phage accumulation in targeted tissues, spleen, liver and phage circulation in blood (in mice). Contrary to expectations, accumulation of engineered bacteriophages in targeted organs was not observed, but instead, three engineered phages achieved tissue titres up to 2 orders of magnitude lower than unmodified T4. This correlated with impaired survival of these phages in the circulation. Thus, engineering of T4 phage resulted in the short‐circulating phage phenotype. We found that the complement system inactivated engineered phages significantly more strongly than unmodified T4, while no significant differences in phages’ susceptibility to phagocytosis or immunogenicity were found. The short‐circulating phage phenotype of the engineered phages suggests that natural phages, at least those propagating on commensal bacteria of animals and humans, are naturally optimized to escape rapid neutralization by the immune system. In this way, phages remain active for longer when inside mammalian bodies, thus increasing their chance of propagating on commensal bacteria. The effect of phage engineering on phage pharmacokinetics should be considered in phage design for medical purposes. John Wiley and Sons Inc. 2019-04-29 /pmc/articles/PMC6559017/ /pubmed/31037835 http://dx.doi.org/10.1111/1751-7915.13414 Text en © 2019 The Authors. Microbial Biotechnology published by John Wiley & Sons Ltd and Society for Applied Microbiology. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Hodyra‐Stefaniak, Katarzyna
Lahutta, Karolina
Majewska, Joanna
Kaźmierczak, Zuzanna
Lecion, Dorota
Harhala, Marek
Kęska, Weronika
Owczarek, Barbara
Jończyk‐Matysiak, Ewa
Kłopot, Anna
Miernikiewicz, Paulina
Kula, Dominika
Górski, Andrzej
Dąbrowska, Krystyna
Bacteriophages engineered to display foreign peptides may become short‐circulating phages
title Bacteriophages engineered to display foreign peptides may become short‐circulating phages
title_full Bacteriophages engineered to display foreign peptides may become short‐circulating phages
title_fullStr Bacteriophages engineered to display foreign peptides may become short‐circulating phages
title_full_unstemmed Bacteriophages engineered to display foreign peptides may become short‐circulating phages
title_short Bacteriophages engineered to display foreign peptides may become short‐circulating phages
title_sort bacteriophages engineered to display foreign peptides may become short‐circulating phages
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6559017/
https://www.ncbi.nlm.nih.gov/pubmed/31037835
http://dx.doi.org/10.1111/1751-7915.13414
work_keys_str_mv AT hodyrastefaniakkatarzyna bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT lahuttakarolina bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT majewskajoanna bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT kazmierczakzuzanna bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT leciondorota bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT harhalamarek bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT keskaweronika bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT owczarekbarbara bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT jonczykmatysiakewa bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT kłopotanna bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT miernikiewiczpaulina bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT kuladominika bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT gorskiandrzej bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages
AT dabrowskakrystyna bacteriophagesengineeredtodisplayforeignpeptidesmaybecomeshortcirculatingphages