Effects Of Cytokines Tumor-Necrosis-Factor-Alpha And Interleukin-1-Beta On Endotoxin-Mediated Inhibition Of Endothelium-Derived Relaxing Factor Bioactivity And Nitric-Oxide Production In Vascular Endothelium

SHOCK(1994)

Cited 0|Views0
No score
Abstract
Endotoxemia results in the release of cytokines that exert complex effects on the cardiovascular system. The purpose of this study was to 1) determine if interleukin 1beta (IL1beta) and tumor necrosis factor alpha (TNFalpha) elicit the release of endothelium-derived relaxing factor (EDRF) and nitric oxide derived from the constitutive nitric oxide synthase present in vascular endothelium, and 2) determine if these cytokines alter endotoxin-mediated decreases in EDRF bioactivity and nitric oxide production. Cultured bovine aortic endothelial cells were directly exposed to endotoxin, human recombinant TNFalpha, interleukin 1beta, or a combination of endotoxin and cytokine for 1 h, followed by a second hour without endotoxin. Subsequently, both basal as well as agonist-stimulated (bradykinin) EDRF bioactivity and nitric oxide (NO) content of the effluent were quantitated. In additional experiments, endothelial cells were exposed acutely over a 30-min assay period to either endotoxin alone, cytokine alone, or endotoxin and cytokine. Following the 2-h incubation, endotoxin alone markedly reduced basal EDRF bioactivity and NO production (44 +/- 13% control, 66 +/- 13% control, respectively) and decreased bradykinin-stimulated EDRF bioactivity and NO production (58 +/- 5% control, 55 +/- 4% control, respectively). TNFalpha and IL1beta did not stimulate EDRF release or NO production either acutely or after prolonged exposure, nor did they alter agonist-stimulated EDRF bioactivity and NO production. Similarly, co-incubation of endotoxin with TNFalpha or IL1beta failed to significantly alter the inhibitory effects of endotoxin on EDRF bioactivity and NO production. These results demonstrate that 1) the specific cytokines TNFalpha and IL1beta do not elicit the release of constitutively derived EDRF from endothelial cells, 2) endotoxin at low concentrations directly inhibits both EDRF bioactivity and NO production, and 3) the cytokines TNFalpha and IL1beta fail to alter the inhibitory effects of endotoxin on EDRF/NO synthesis from the constitutive NO synthase of vascular endothelial cells.
More
Translated text
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Chat Paper
Summary is being generated by the instructions you defined