Scinovex
review

Inhibition of growth by pro-inflammatory cytokines: an integrated view.

Journal of Animal Science · 1997 · Vol. 75(5) · pp. 1244–1244
Rodney W. Johnson

Abstract

In response to antigenic stimuli, a variety of cells, including activated macrophages, secrete cytokines that are responsible for altering the host's metabolism. Three of these cytokines (tumor necrosis factor alpha [TNF-alpha], interleukin-1 [IL-1], and interleukin-6 [IL-6]) have profound behavioral, neuroendocrine, and metabolic effects. There is evidence that cytokines and their cognate receptors are present in the neuroendocrine system and brain. Moreover, in laboratory animal species, IL-1, IL-6, and TNF-alpha have been found to modulate intermediary metabolism of carbohydrate, fat, and protein substrates, regulate hypothalamic-pituitary outflow, and act in the brain to reduce food intake. Finally, many of the systemic acute-phase responses to inflammatory stimuli such as lipopolysaccharide are inhibited by treatment with cytokine receptor antagonists. In short, many findings converge to suggest that a major component of the growth inhibition observed in immunologically challenged animals is mediated by pro-inflammatory cytokines. The goal of this article is to provide an integrated view of how cytokines act systemically on disparate tissues to alter growth.

Stress Responses and CortisolGrowth Hormone and Insulin-like Growth FactorsRegulation of Appetite and ObesityTumor necrosis factor alphaCytokineReceptorLipopolysaccharideBiologyProinflammatory cytokineImmune systemImmunologyInterleukin 6Interleukin

MeSH terms

Acute-Phase ReactionAnimalsBlood Urea NitrogenBrainBrain ChemistryEnergy MetabolismGrowthHydrocortisoneImmune SystemInterleukin-1Neurosecretory SystemsTumor Necrosis Factor-alphaInterleukin-6Cytokines
Citations
450
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2.13
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Cited by
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