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R Delgado

Publications and source records attributed to R Delgado.

153 records · Page 9Linked to original sources

Peptide modulation of inflammatory processes within the brain.

It is clear that inflammatory processes contribute to neurodegenerative disease, stroke, closed head injury, encephalitis, and other CNS disorders. These inflammatory processes are marked by local increases in cytokines, in particular tumor necrosis factor-alpha (TNF-alpha). It is important to control such CNS inflammation in order to preserve neural function. The neuroimmunomodulatory peptide alpha-melanocyte-stimulating hormone (alpha-MSH) has been shown to modulate peripheral inflammation by acting on melanocortin receptors in host cells (macrophages, neutrophils) to inhibit production of such proinflammatory agents. Our results indicate that alpha-MSH likewise acts directly within the brain to modulate local inflammation. To determine if microglia are involved in anti-inflammatory responses to alpha-MSH within the brain, murine cells were tested; they produced TNF-alpha and nitric oxide in response to challenge, and production of both was reduced by alpha-MSH. In tests on human astrocytes, both alpha-MSH (1-13) and alpha-MSH (11-13) reduced TNF-alpha. Ischemia/reperfusion in the posterior circulation in dogs causes inflammatory reactions and disturbance of function, estimated from decreases in auditory-evoked potentials. These deficits were reduced by administering alpha-MSH systemically during reperfusion, moreso when the peptide was given during both ischemia and reperfusion. The results indicate that, much as for inflammation in the periphery, alpha-MSH modulates brain inflammatory responses mediated by proinflammatory agents.

Animals↗

[A study of the oxidative stress indicators in elderly monkeys].

INTRODUCTION: Under physiological conditions aerobic cells produce reactive species of oxygen. Cell survival depends on the equilibrium between the oxidation processes and the antioxidant defences. This interaction determines whether the cell suffers oxidation stress or not. Recent studies suggest that a reduced capacity for oxidation metabolism and proinflammatory states contribute to neurodegenerative changes related to age in humans. OBJECTIVE: To obtain information regarding the relation of TNF-mu to oxidation phenomena in nonhuman primates. MATERIAL AND METHODS: In this study we compare serum levels of the activity of superoxide dismutase (SOD) catalase (CAT), the levels of malonyldialdehyde (MDA) and tumor necrosis factor alpha TNF-alpha using spectrophotometric techniques in young and old nonhuman primates. RESULTS AND CONCLUSION: Our results suggest a relationship between the alterations in oxidation metabolism with the neurodegenerative changes which occur in monkeys.

Aging↗

Protective effect of n-acetylcysteine in a model of influenza infection in mice.

Reactive oxygen intermediates (ROI) and cytokines, particularly tumor necrosis factor (TNF) have been implicated in the pathogenesis of influenza. Using a murine model of influenza, we have studied the levels of TNF, interleukin 6 (IL-6) and of superoxide-generating xanthine oxidase (XO). Mice infected intranasally with influenza virus APR/8 had high levels of XO, TNF and IL-6 in the broncoalveolar lavage, as early as 3 d after infection. XO was elevated also in serum and lung tissue. Administration of the antioxidant N-acetylcysteine (NAC,1 g/kg per day, orally) significantly decreased the mortality in infected mice, indicating a role for RO1 in the lethality associated with influenza infection.

Journal Article↗

Endogenous nitric oxide production by human monocytic cells regulates LPS-induced TNF production.

The ability to produce nitric oxide (NO) of human monocytes macrophages is object of debate. While studying the regulation of tumor necrosis factor (TNF) synthesis induced by endotoxin (LPS) in a human cell line of monocyte origin (THP-1) and in human peripheral blood mononuclear cells (PBMC) we found an indirect evidence of such production. We showed that L-N-monomethyl-arginine (L-NMMA), an inhibitor of NO synthase, and hemoglobin, a chelator of NO, are able to significantly reduce TNF synthesis, indicating that NO production is induced by LPS and contributes to the induction of TNF. Since NO is a known cytostatic agent, we also studied the cytostatic effect of LPS, and demonstrated that it is reverted by L-NMMA. Although we were unable to show any nitrites/nitrates accumulation in the culture media, taken together our data give an indirect evidence of a physiologically relevant LPS-induced NO production in human monocytes-macrophages.

Arginine↗

Urinary TNF-binding protein (TNF soluble receptor) protects mice against the lethal effect of TNF and endotoxic shock.

We tested the effect of urinary TNF-binding protein (uTBP) on the toxic effect of TNF (0.5 micrograms/mouse, i.v.) in adrenalectomized mice sensitized with IL-1 to increase susceptibility to TNF. In this experimental model, mortality was 67%, but decreased to 13% when uTBP (250 micrograms/mouse, i.v.) was administered simultaneously with TNF. The protective effect of uTBP was dose-dependent, and time course experiments indicated a protective effect when uTBP was administered before or up to one hour after TNF. Some protection was also obtained when uTBP was given three hours after TNF. Urinary TBP improved the survival of mice after a lethal dose of LPS (1.2 mg/mouse, i.p.), suggesting its possible efficacy in the therapy of septic shock or other TNF-mediated pathologies.

Adrenal Glands↗