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N-Oleoyl dopamine induces IL-10 via central nervous system TRPV1 and improves endotoxemia and sepsis outcomes.

Authors :
Joffre, Jérémie
Joffre, Jérémie
Wong, Erika
Lawton, Samira
Lloyd, Elliot
Nguyen, Nina
Xu, Fengyun
Sempio, Cristina
Kobzik, Lester
Zlatanova, Ivana
Schumacher, Mark
Klawitter, Jost
Su, Hua
Rabl, Katalin
Wilhelmsen, Kevin
Yeh, Che-Chung
Hellman, Judith
Joffre, Jérémie
Joffre, Jérémie
Wong, Erika
Lawton, Samira
Lloyd, Elliot
Nguyen, Nina
Xu, Fengyun
Sempio, Cristina
Kobzik, Lester
Zlatanova, Ivana
Schumacher, Mark
Klawitter, Jost
Su, Hua
Rabl, Katalin
Wilhelmsen, Kevin
Yeh, Che-Chung
Hellman, Judith
Source :
Journal of neuroinflammation; vol 19, iss 1, 118; 1742-2094
Publication Year :
2022

Abstract

BackgroundThe transient receptor potential vanilloid 1 (TRPV1) participates in thermosensation and inflammatory pain, but its immunomodulatory mechanisms remain enigmatic. N-Oleoyl dopamine (OLDA), an endovanilloid and endocannabinoid, is a TRPV1 agonist that is produced in the central nervous system and the peripheral nervous system. We studied the anti-inflammatory effects and TRPV1-dependent mechanisms of OLDA in models of inflammation and sepsis.MethodsMice were challenged intratracheally or intravenously with LPS, or intratracheally with S. aureus to induce pneumonia and sepsis, and then were treated intravenously with OLDA. Endpoints included plasma cytokines, leukocyte activation marker expression, mouse sepsis scores, lung histopathology, and bacterial counts. The role of TRPV1 in the effects of OLDA was determined using Trpv1-/- mice, and mice with TRPV1 knockdown pan-neuronally, in peripheral nervous system neurons, or in myeloid cells. Circulating monocytes/macrophages were depleted using clodronate to determine their role in the anti-inflammatory effects of OLDA in endotoxemic mice. Levels of exogenous OLDA, and of endovanilloids and endocannabinoids, at baseline and in endotoxemic mice, were determined by LC-MS/MS.ResultsOLDA administration caused an early anti-inflammatory response in endotoxemic and septic mice with high serum levels of IL-10 and decreased levels of pro-inflammatory cytokines. OLDA also reduced lung injury and improved mouse sepsis scores. Blood and lung bacterial counts were comparable between OLDA- and carrier-treated mice with S. aureus pneumonia. OLDA's effects were reversed in mice with pan-neuronal TRPV1 knockdown, but not with TRPV1 knockdown in peripheral nervous system neurons or myeloid cells. Depletion of monocytes/macrophages reversed the IL-10 upregulation by OLDA in endotoxemic mice. Brain and blood levels of endovanilloids and endocannabinoids were increased in endotoxemic mice.ConclusionsOLDA has strong anti-inflammato

Details

Database :
OAIster
Journal :
Journal of neuroinflammation; vol 19, iss 1, 118; 1742-2094
Notes :
application/pdf, Journal of neuroinflammation vol 19, iss 1, 118 1742-2094
Publication Type :
Electronic Resource
Accession number :
edsoai.on1341876665
Document Type :
Electronic Resource