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α‐MSH in Systemic Inflammation: Central and Peripheral Actions

Catania A, Delgado R, Airaghi L +5 more1999Annals of the New York Academy of SciencesReview
10.1111/j.1749-6632.1999.tb08675.xPubMed
Hypothalamic-PituitaryImmune/InnateNeurologicalRespiratory/Sinus
Bacterial Endotoxins

Abstract

ABSTRACT: Until recently, inflammation was believed to arise from events taking place exclusively in the periphery. However, it is now clear that central neurogenic influences can either enhance or modulate peripheral inflammation. Therefore, it should be possible to improve treatment of inflammation by use of antiinflammatory agents that reduce peripheral host responses and inhibit proinflammatory signals in the central nervous system (CNS). One such strategy could be based on α‐melanocyte stimulating hormone (α‐MSH). Increases in circulating TNF‐α and nitric oxide (NO), induced by intraperitoneal administration of endotoxin in mice, were modulated by central injection of a small concentration of α‐MSH. Inducible nitric oxide synthase (iNOS) activity and iNOS mRNA in lungs and liver were likewise modulated by central α‐MSH. Increase in lung myeloperoxidase (MPO) activity was significantly less in lungs of mice treated with central α‐MSH. Proinflammatory agents induced by endotoxin were significantly greater after blockade of central α‐MSH. The results suggest that antiinflammatory influences of neural origin that are triggered by α‐MSH could be used to treat systemic inflammation. In addition to its central influences, α‐MSH has inhibitory effects on peripheral host cells, in which it reduces release of proinflammatory mediators. α‐MSH reduces chemotaxis of human neutrophils and production of TNF‐α, neopterin, and NO by monocytes. In research on septic patients, α‐MSH inhibited release of TNF‐α, interleukin‐1β (IL‐1β), and interleukin‐8 (IL‐8) in whole blood samples in vitro. Combined central and peripheral influences can be beneficial in treatment of sepsis.

Key Biomarkers

alpha-MSHInducible nitric oxide synthase (iNOS)Interleukin-1β (IL-1β)Interleukin-8 (IL-8)Myeloperoxidase (MPO)NeopterinNitric oxide (NO)TNF-α

Symptom Clusters

SepsisSystemic Inflammation

Cited By (1)

  • The Role of Neuropeptides in Pathogenesis of Dry EyeJournal of Clinical Medicine · 2021

References (6)

  • Anti-inflammatory actions of the neuroimmunomodulator α-MSHImmunology Today · 1997
  • Inhibition of Systemic Inflammation by Central Action of the Neuropeptide α-Melanocyte- Stimulating HormoneNeuroImmunoModulation · 1999
  • Melanocortin peptides inhibit production of proinflammatory cytokines and nitric oxide by activated microgliaJournal of Leukocyte Biology · 1998
  • Alpha-melanocyte-stimulating hormone reduces endotoxin-induced liver inflammationJournal of Clinical Investigation · 1996
  • Alpha-melanocyte-stimulating hormone protects against renal injury after ischemia in mice and rats.Journal of Clinical Investigation · 1997

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