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A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice

A high-salt diet (HSD) is common worldwide and can lead to cardiovascular disease, chronic inflammation, and autoimmune diseases. Moreover, increasing evidence shows that HSD is closely related to a variety of immune diseases. Natural killer (NK) cells are important innate immune cells that directly...

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Autores principales: Zeng, Xiaokang, Li, Yan, Lv, Weibiao, Dong, Xinhuai, Zeng, Chong, Zeng, Liming, Wei, Zibo, Lin, Xu, Ma, Yanning, Xiao, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7772026/
https://www.ncbi.nlm.nih.gov/pubmed/33426093
http://dx.doi.org/10.1155/2020/6687143
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author Zeng, Xiaokang
Li, Yan
Lv, Weibiao
Dong, Xinhuai
Zeng, Chong
Zeng, Liming
Wei, Zibo
Lin, Xu
Ma, Yanning
Xiao, Qiang
author_facet Zeng, Xiaokang
Li, Yan
Lv, Weibiao
Dong, Xinhuai
Zeng, Chong
Zeng, Liming
Wei, Zibo
Lin, Xu
Ma, Yanning
Xiao, Qiang
author_sort Zeng, Xiaokang
collection PubMed
description A high-salt diet (HSD) is common worldwide and can lead to cardiovascular disease, chronic inflammation, and autoimmune diseases. Moreover, increasing evidence shows that HSD is closely related to a variety of immune diseases. Natural killer (NK) cells are important innate immune cells that directly kill their targets via degranulation and secretion of interferon gamma (IFN-γ). NK cells play a vital role in resisting viruses and preventing the malignant transformation of cells; however, whether HSD affects the development and function of NK cells has not yet been elucidated. Therefore, the purpose of the present study was to understand the effects of HSD on the development and function of NK cells, in addition to investigating the underlying molecular mechanism. Our results show that the number of NK cells in the spleen and lungs of HSD-fed mice was significantly reduced, which may be due to the inhibition of NK cell proliferation. Further, the development of NK cells in mice was evaluated, and it was found that HSD reduced the effective NK cell subset (CD27(+)CD11b(−)). Moreover, it was also found that the ability of NK cells to secrete CD107a and IFN-γ in HSD-fed mice was decreased following stimulation with RMA-S and YAC-1 tumor cells. Finally, the underlying molecular mechanism was evaluated, and it was found that HSD increased the production of reactive oxygen species (ROS) by NK cells, while the expression of CD122 was decreased, suggesting that HSD downregulates CD122 expression in NK cells via ROS signaling, thereby reducing the responsiveness to IL-15 and ultimately inhibiting NK cell function. The present research discovered a novel mechanism by which HSD inhibits the function of NK cells, providing an alternative avenue for the treatment of immune diseases caused by HSD.
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spelling pubmed-77720262021-01-08 A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice Zeng, Xiaokang Li, Yan Lv, Weibiao Dong, Xinhuai Zeng, Chong Zeng, Liming Wei, Zibo Lin, Xu Ma, Yanning Xiao, Qiang J Immunol Res Research Article A high-salt diet (HSD) is common worldwide and can lead to cardiovascular disease, chronic inflammation, and autoimmune diseases. Moreover, increasing evidence shows that HSD is closely related to a variety of immune diseases. Natural killer (NK) cells are important innate immune cells that directly kill their targets via degranulation and secretion of interferon gamma (IFN-γ). NK cells play a vital role in resisting viruses and preventing the malignant transformation of cells; however, whether HSD affects the development and function of NK cells has not yet been elucidated. Therefore, the purpose of the present study was to understand the effects of HSD on the development and function of NK cells, in addition to investigating the underlying molecular mechanism. Our results show that the number of NK cells in the spleen and lungs of HSD-fed mice was significantly reduced, which may be due to the inhibition of NK cell proliferation. Further, the development of NK cells in mice was evaluated, and it was found that HSD reduced the effective NK cell subset (CD27(+)CD11b(−)). Moreover, it was also found that the ability of NK cells to secrete CD107a and IFN-γ in HSD-fed mice was decreased following stimulation with RMA-S and YAC-1 tumor cells. Finally, the underlying molecular mechanism was evaluated, and it was found that HSD increased the production of reactive oxygen species (ROS) by NK cells, while the expression of CD122 was decreased, suggesting that HSD downregulates CD122 expression in NK cells via ROS signaling, thereby reducing the responsiveness to IL-15 and ultimately inhibiting NK cell function. The present research discovered a novel mechanism by which HSD inhibits the function of NK cells, providing an alternative avenue for the treatment of immune diseases caused by HSD. Hindawi 2020-12-21 /pmc/articles/PMC7772026/ /pubmed/33426093 http://dx.doi.org/10.1155/2020/6687143 Text en Copyright © 2020 Xiaokang Zeng et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zeng, Xiaokang
Li, Yan
Lv, Weibiao
Dong, Xinhuai
Zeng, Chong
Zeng, Liming
Wei, Zibo
Lin, Xu
Ma, Yanning
Xiao, Qiang
A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice
title A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice
title_full A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice
title_fullStr A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice
title_full_unstemmed A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice
title_short A High-Salt Diet Disturbs the Development and Function of Natural Killer Cells in Mice
title_sort high-salt diet disturbs the development and function of natural killer cells in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7772026/
https://www.ncbi.nlm.nih.gov/pubmed/33426093
http://dx.doi.org/10.1155/2020/6687143
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