A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.

Different modes of exogenous electrical stimulation at physiological strength has been applied to various diseases. Previously, we extensively demonstrated the usability of mild electrical stimulation (MES) with low frequency pulse current at 55 pulses per second (MES55) for several disease conditio...

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Main Authors: Mariam Piruzyan, Ihori Shitanda, Yuichiro Shimauchi, Go Okita, Yu Tsurekawa, Masataka Moriuchi, Yoshio Nakano, Keisuke Teramoto, Mary Ann Suico, Tsuyoshi Shuto, Hirofumi Kai
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0234867
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spelling doaj-c473c813beb243209d0c814bce28be892021-03-03T21:54:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01156e023486710.1371/journal.pone.0234867A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.Mariam PiruzyanIhori ShitandaYuichiro ShimauchiGo OkitaYu TsurekawaMasataka MoriuchiYoshio NakanoKeisuke TeramotoMary Ann SuicoTsuyoshi ShutoHirofumi KaiDifferent modes of exogenous electrical stimulation at physiological strength has been applied to various diseases. Previously, we extensively demonstrated the usability of mild electrical stimulation (MES) with low frequency pulse current at 55 pulses per second (MES55) for several disease conditions. Here we found that MES with high frequency pulse-current (5500 pulse per second; MES5500) suppressed the overproduction of pro-inflammatory cytokines induced by phorbol myristate acetate/ionomycin in Jurkat T cells and primary splenocytes. MES5500 also suppressed the overproduction of inflammatory cytokines, improved liver damage and reduced mouse spleen enlargement in concanavalin-A-treated BALB/c mice. The molecular mechanism underlying these effects included the ability of MES5500 to induce modest amount of hydrogen peroxide and control multiple signaling pathways important for immune regulation, such as NF-κB, NFAT and NRF2. In the treatment of various inflammatory and immune-related diseases, suppression of excessive inflammatory cytokines is key, but because immunosuppressive drugs used in the clinical setting have serious side effects, development of safer methods of inhibiting cytokines is required. Our finding provides evidence that physical medicine in the form of MES5500 may be considered as a novel therapeutic tool or as adjunctive therapy for inflammatory and immune-related diseases.https://doi.org/10.1371/journal.pone.0234867
collection DOAJ
language English
format Article
sources DOAJ
author Mariam Piruzyan
Ihori Shitanda
Yuichiro Shimauchi
Go Okita
Yu Tsurekawa
Masataka Moriuchi
Yoshio Nakano
Keisuke Teramoto
Mary Ann Suico
Tsuyoshi Shuto
Hirofumi Kai
spellingShingle Mariam Piruzyan
Ihori Shitanda
Yuichiro Shimauchi
Go Okita
Yu Tsurekawa
Masataka Moriuchi
Yoshio Nakano
Keisuke Teramoto
Mary Ann Suico
Tsuyoshi Shuto
Hirofumi Kai
A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
PLoS ONE
author_facet Mariam Piruzyan
Ihori Shitanda
Yuichiro Shimauchi
Go Okita
Yu Tsurekawa
Masataka Moriuchi
Yoshio Nakano
Keisuke Teramoto
Mary Ann Suico
Tsuyoshi Shuto
Hirofumi Kai
author_sort Mariam Piruzyan
title A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
title_short A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
title_full A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
title_fullStr A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
title_full_unstemmed A novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
title_sort novel condition of mild electrical stimulation exerts immunosuppression via hydrogen peroxide production that controls multiple signaling pathway.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Different modes of exogenous electrical stimulation at physiological strength has been applied to various diseases. Previously, we extensively demonstrated the usability of mild electrical stimulation (MES) with low frequency pulse current at 55 pulses per second (MES55) for several disease conditions. Here we found that MES with high frequency pulse-current (5500 pulse per second; MES5500) suppressed the overproduction of pro-inflammatory cytokines induced by phorbol myristate acetate/ionomycin in Jurkat T cells and primary splenocytes. MES5500 also suppressed the overproduction of inflammatory cytokines, improved liver damage and reduced mouse spleen enlargement in concanavalin-A-treated BALB/c mice. The molecular mechanism underlying these effects included the ability of MES5500 to induce modest amount of hydrogen peroxide and control multiple signaling pathways important for immune regulation, such as NF-κB, NFAT and NRF2. In the treatment of various inflammatory and immune-related diseases, suppression of excessive inflammatory cytokines is key, but because immunosuppressive drugs used in the clinical setting have serious side effects, development of safer methods of inhibiting cytokines is required. Our finding provides evidence that physical medicine in the form of MES5500 may be considered as a novel therapeutic tool or as adjunctive therapy for inflammatory and immune-related diseases.
url https://doi.org/10.1371/journal.pone.0234867
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