Cargando…

Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats

INTRODUCTION: A series of symptoms, including fever, widespread pain, fatigue, and even ageusia, have frequently been reported in the context of various infections, such as COVID-19. Although the pathogenic mechanisms underlying an infection causing fever and pain have been well established, the mec...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Danxi, Hu, Di, Ochi, Yuta, Arakaki, Wakiko, Mawatari, Aya, Shigeta, Mika, Wu, Yuping, Hayashinaka, Emi, Neyama, Hiroyuki, Tahara, Tsuyoshi, Wada, Yasuhiro, Li, Feng, Doi, Hisashi, Watanabe, Yasuyoshi, Cui, Yilong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10665845/
https://www.ncbi.nlm.nih.gov/pubmed/38022622
http://dx.doi.org/10.3389/fimmu.2023.1261256
_version_ 1785138916224925696
author Li, Danxi
Hu, Di
Ochi, Yuta
Arakaki, Wakiko
Mawatari, Aya
Shigeta, Mika
Wu, Yuping
Hayashinaka, Emi
Neyama, Hiroyuki
Tahara, Tsuyoshi
Wada, Yasuhiro
Li, Feng
Doi, Hisashi
Watanabe, Yasuyoshi
Cui, Yilong
author_facet Li, Danxi
Hu, Di
Ochi, Yuta
Arakaki, Wakiko
Mawatari, Aya
Shigeta, Mika
Wu, Yuping
Hayashinaka, Emi
Neyama, Hiroyuki
Tahara, Tsuyoshi
Wada, Yasuhiro
Li, Feng
Doi, Hisashi
Watanabe, Yasuyoshi
Cui, Yilong
author_sort Li, Danxi
collection PubMed
description INTRODUCTION: A series of symptoms, including fever, widespread pain, fatigue, and even ageusia, have frequently been reported in the context of various infections, such as COVID-19. Although the pathogenic mechanisms underlying an infection causing fever and pain have been well established, the mechanisms of fatigue induced by infection in specific brain regions remain unclear. METHODS: To elucidate whether and how the peripheral infection cause fatigue via regional neuroinflammation, we performed a brain-wide investigation of neuroinflammation in a peripheral pseudoinfection rat model using [(18)F]DPA-714 positron emission tomography (PET) imaging analysis, in which the polyriboinosinic: polyribocytidylic acid (poly I:C) was intraperitoneally injected. RESULTS: Transient fever lasting for several hours and subsequent suppression of spontaneous activity lasting a few days were induced by poly I:C treatment. Significant increase in plasma interleukin (IL)-1β, IL-6 and tumour necrosis factor (TNF)-α were observed at 2 and 4 h following poly I:C treatment. PET imaging analysis revealed that the brain uptake of [(18)F]DPA-714 was significantly increased in several brain regions one day after poly I:C treatment, such as the dorsal raphe (DR), parvicellular part of red nucleus (RPC), A5 and A7 noradrenergic nucleus, compared with the control group. The accumulation of [(18)F]DPA-714 in the DR, RPC and A5 was positively correlated with subsequent fatigue-like behavior, and that in the A7 tended to positively correlate with fever. DISCUSSION: These findings suggest that peripheral infection may trigger regional neuroinflammation, which may cause specific symptoms such as fatigue. A similar mechanism might be involved in COVID-19.
format Online
Article
Text
id pubmed-10665845
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-106658452023-01-01 Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats Li, Danxi Hu, Di Ochi, Yuta Arakaki, Wakiko Mawatari, Aya Shigeta, Mika Wu, Yuping Hayashinaka, Emi Neyama, Hiroyuki Tahara, Tsuyoshi Wada, Yasuhiro Li, Feng Doi, Hisashi Watanabe, Yasuyoshi Cui, Yilong Front Immunol Immunology INTRODUCTION: A series of symptoms, including fever, widespread pain, fatigue, and even ageusia, have frequently been reported in the context of various infections, such as COVID-19. Although the pathogenic mechanisms underlying an infection causing fever and pain have been well established, the mechanisms of fatigue induced by infection in specific brain regions remain unclear. METHODS: To elucidate whether and how the peripheral infection cause fatigue via regional neuroinflammation, we performed a brain-wide investigation of neuroinflammation in a peripheral pseudoinfection rat model using [(18)F]DPA-714 positron emission tomography (PET) imaging analysis, in which the polyriboinosinic: polyribocytidylic acid (poly I:C) was intraperitoneally injected. RESULTS: Transient fever lasting for several hours and subsequent suppression of spontaneous activity lasting a few days were induced by poly I:C treatment. Significant increase in plasma interleukin (IL)-1β, IL-6 and tumour necrosis factor (TNF)-α were observed at 2 and 4 h following poly I:C treatment. PET imaging analysis revealed that the brain uptake of [(18)F]DPA-714 was significantly increased in several brain regions one day after poly I:C treatment, such as the dorsal raphe (DR), parvicellular part of red nucleus (RPC), A5 and A7 noradrenergic nucleus, compared with the control group. The accumulation of [(18)F]DPA-714 in the DR, RPC and A5 was positively correlated with subsequent fatigue-like behavior, and that in the A7 tended to positively correlate with fever. DISCUSSION: These findings suggest that peripheral infection may trigger regional neuroinflammation, which may cause specific symptoms such as fatigue. A similar mechanism might be involved in COVID-19. Frontiers Media S.A. 2023-11-09 /pmc/articles/PMC10665845/ /pubmed/38022622 http://dx.doi.org/10.3389/fimmu.2023.1261256 Text en Copyright © 2023 Li, Hu, Ochi, Arakaki, Mawatari, Shigeta, Wu, Hayashinaka, Neyama, Tahara, Wada, Li, Doi, Watanabe and Cui 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
Li, Danxi
Hu, Di
Ochi, Yuta
Arakaki, Wakiko
Mawatari, Aya
Shigeta, Mika
Wu, Yuping
Hayashinaka, Emi
Neyama, Hiroyuki
Tahara, Tsuyoshi
Wada, Yasuhiro
Li, Feng
Doi, Hisashi
Watanabe, Yasuyoshi
Cui, Yilong
Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats
title Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats
title_full Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats
title_fullStr Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats
title_full_unstemmed Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats
title_short Regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)F]DPA-714 positron emission tomography study in rats
title_sort regional neuroinflammation induced by peripheral infection contributes to fatigue-like symptoms: a [(18)f]dpa-714 positron emission tomography study in rats
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10665845/
https://www.ncbi.nlm.nih.gov/pubmed/38022622
http://dx.doi.org/10.3389/fimmu.2023.1261256
work_keys_str_mv AT lidanxi regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT hudi regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT ochiyuta regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT arakakiwakiko regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT mawatariaya regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT shigetamika regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT wuyuping regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT hayashinakaemi regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT neyamahiroyuki regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT taharatsuyoshi regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT wadayasuhiro regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT lifeng regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT doihisashi regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT watanabeyasuyoshi regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats
AT cuiyilong regionalneuroinflammationinducedbyperipheralinfectioncontributestofatiguelikesymptomsa18fdpa714positronemissiontomographystudyinrats