Cargando…

The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation

In the lumen of blood vessels, there are large numbers of erythrocytes, which are approximately 95% of the total blood cells. Although the function of erythrocytes is to transport oxygen in the organism, recent studies have shown that mammalian and teleost erythrocytes are involved in the immune res...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Youcheng, Chen, Jiajun, Lu, Linqing, Xu, Zizheng, Li, Feng, Yang, Minxuan, Li, Jun, Lin, Li, Qin, Zhendong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8792903/
https://www.ncbi.nlm.nih.gov/pubmed/35095842
http://dx.doi.org/10.3389/fimmu.2021.766970
_version_ 1784640482313240576
author Yang, Youcheng
Chen, Jiajun
Lu, Linqing
Xu, Zizheng
Li, Feng
Yang, Minxuan
Li, Jun
Lin, Li
Qin, Zhendong
author_facet Yang, Youcheng
Chen, Jiajun
Lu, Linqing
Xu, Zizheng
Li, Feng
Yang, Minxuan
Li, Jun
Lin, Li
Qin, Zhendong
author_sort Yang, Youcheng
collection PubMed
description In the lumen of blood vessels, there are large numbers of erythrocytes, which are approximately 95% of the total blood cells. Although the function of erythrocytes is to transport oxygen in the organism, recent studies have shown that mammalian and teleost erythrocytes are involved in the immune response against bacterial infections. However, the immune mechanisms used by avian erythrocytes are not yet clear. Here, we demonstrated that erythrocytes from goose have the ability to phagocytose as well as conduct antimicrobial activity. Firstly, we revealed the phagocytosis or adhesion activity of goose erythrocytes for latex beads 0.1-1.0 μm in diameter by fluorescence microscopy, and scanning and transmission electron microscopy. The low cytometry results also proved that goose erythrocytes had a wide range of phagocytic or adhesion activity for different bacteria. Followed, the low cytometry analysis data further explored that the goose erythrocytes contain the ability to produce reactive oxygen species (ROS) and inducible nitric oxide synthase (iNOS) in response to bacterial stimulation, and also up-regulated the expression of NOX family includes NOX1 and NOX5. Finally, we also found that goose erythrocytes showed a powerful antibacterial activity against all the three bacteria, meanwhile the stimulation of three kinds of bacteria up-regulated the expression of inflammatory factors, and increased the production of antioxidant enzymes to protect the cells from oxidative damage. Herein, our results demonstrate that goose Erythrocytes possess a certain phagocytic capacity and antioxidant system, and that the antimicrobial activity of erythrocytes can occurred through the production of unique respiratory burst against foreign pathogenic bacteria, which provides new clues to the interaction between bacteria and avian erythrocytes.
format Online
Article
Text
id pubmed-8792903
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-87929032022-01-28 The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation Yang, Youcheng Chen, Jiajun Lu, Linqing Xu, Zizheng Li, Feng Yang, Minxuan Li, Jun Lin, Li Qin, Zhendong Front Immunol Immunology In the lumen of blood vessels, there are large numbers of erythrocytes, which are approximately 95% of the total blood cells. Although the function of erythrocytes is to transport oxygen in the organism, recent studies have shown that mammalian and teleost erythrocytes are involved in the immune response against bacterial infections. However, the immune mechanisms used by avian erythrocytes are not yet clear. Here, we demonstrated that erythrocytes from goose have the ability to phagocytose as well as conduct antimicrobial activity. Firstly, we revealed the phagocytosis or adhesion activity of goose erythrocytes for latex beads 0.1-1.0 μm in diameter by fluorescence microscopy, and scanning and transmission electron microscopy. The low cytometry results also proved that goose erythrocytes had a wide range of phagocytic or adhesion activity for different bacteria. Followed, the low cytometry analysis data further explored that the goose erythrocytes contain the ability to produce reactive oxygen species (ROS) and inducible nitric oxide synthase (iNOS) in response to bacterial stimulation, and also up-regulated the expression of NOX family includes NOX1 and NOX5. Finally, we also found that goose erythrocytes showed a powerful antibacterial activity against all the three bacteria, meanwhile the stimulation of three kinds of bacteria up-regulated the expression of inflammatory factors, and increased the production of antioxidant enzymes to protect the cells from oxidative damage. Herein, our results demonstrate that goose Erythrocytes possess a certain phagocytic capacity and antioxidant system, and that the antimicrobial activity of erythrocytes can occurred through the production of unique respiratory burst against foreign pathogenic bacteria, which provides new clues to the interaction between bacteria and avian erythrocytes. Frontiers Media S.A. 2022-01-13 /pmc/articles/PMC8792903/ /pubmed/35095842 http://dx.doi.org/10.3389/fimmu.2021.766970 Text en Copyright © 2022 Yang, Chen, Lu, Xu, Li, Yang, Li, Lin and Qin https://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) and the copyright owner(s) 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 Immunology
Yang, Youcheng
Chen, Jiajun
Lu, Linqing
Xu, Zizheng
Li, Feng
Yang, Minxuan
Li, Jun
Lin, Li
Qin, Zhendong
The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation
title The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation
title_full The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation
title_fullStr The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation
title_full_unstemmed The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation
title_short The Antibacterial Activity of Erythrocytes From Goose (Anser domesticus) Can Be Associated With Phagocytosis and Respiratory Burst Generation
title_sort antibacterial activity of erythrocytes from goose (anser domesticus) can be associated with phagocytosis and respiratory burst generation
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8792903/
https://www.ncbi.nlm.nih.gov/pubmed/35095842
http://dx.doi.org/10.3389/fimmu.2021.766970
work_keys_str_mv AT yangyoucheng theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT chenjiajun theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT lulinqing theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT xuzizheng theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT lifeng theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT yangminxuan theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT lijun theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT linli theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT qinzhendong theantibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT yangyoucheng antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT chenjiajun antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT lulinqing antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT xuzizheng antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT lifeng antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT yangminxuan antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT lijun antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT linli antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration
AT qinzhendong antibacterialactivityoferythrocytesfromgooseanserdomesticuscanbeassociatedwithphagocytosisandrespiratoryburstgeneration