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J C Barreto

Publications and source records attributed to J C Barreto.

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Protective effect of dimethylthiourea against mucosal injury in rat stomach. Implications for hydroxyl radical mechanism.

The present study was undertaken to determine whether dimethylthiourea (DMTU), a hydroxyl radical scavenger, could prevent gastric injury in the rat stomach induced by various noxious agents. Fasted rats (N = 6-8/group) were given a 1-ml oral bolus of saline or DMTU over the dose range 10-500 mg/kg. After 30 min, animals received 1 ml of 100% ethanol orally and were sacrificed 5 min later. At sacrifice, stomachs were harvested and the degree of macroscopic damage was assessed by planimetry. In selected animals, specimens of gastric mucosa were also processed for histology. Saline pretreatment prior to ethanol exposure resulted in 22.5% injury to the glandular epithelium when assessed macroscopically. DMTU pretreatment prevented such injury in a dose-related fashion with only 2% of the mucosa showing injury with a 500 mg/kg dose (P less than 0.01 vs control). Although the superficial injury involving surface mucous cells induced by ethanol was not altered by DMTU, the deep damage to gastric glands was almost completely prevented. Other experiments in which DMTU was given intraperitoneally demonstrated similar protective effects against ethanol injury. Additional studies showed that indomethacin did not prevent the protective effects of oral or intraperitoneal DMTU, excluding a role for endogenous prostaglandins, and that DMTU was equally protective when administered within minutes or as long as 2 hr prior to ethanol exposure. Furthermore, DMTU was also shown to be protective against gastric injury induced by concentrated acid or base. In in vitro studies in which hydroxyl radicals were actually generated, DMTU was noted to scavenge the hydroxyl radical in a dose-related fashion. The ability of DMTU to prevent gastric injury by three different damaging agents suggests that the hydroxyl radical may play a major role in the pathogenesis of such injury and that DMTU mediated its protective action by scavenging this radical species.

Animals

Use of fluorescent hydrophobic dyes in establishing the presence of lipids in the gastric mucus gel layer.

The hydrophobic property of crude samples of canine and porcine mucus was demonstrated by its binding and reactivity with two fluorescent dyes, 1-anilinonaphthalene-8-sulfonic acid (ANS) and 1,6-diphenyl-1,3,5-hexatriene (DPH). The contribution of lipids to these hydrophobic binding sites was indicated by our observations that the DPH-induced fluorescence of both porcine and canine gastric mucus was reduced greater than 75% after lipid extraction. Fluorescence microscopy revealed an extracellular band of intense reactivity in association with the mucus gel layer overlying the rat gastric mucosa that was abolished if the frozen sections were pretreated with lipid solvents. When rats pretreated with indomethacin were injected with a cytoprotective dose of 16,16-dimethyl-PGE2, there was an increase in fluorescence of the gastric perfusate treated with ANS, suggesting that hydrophobic factors, perhaps lipids, were being secreted in association with mucus. These extracellular lipids may play an important role in conferring protective barrier properties to the mucus gel layer.

Anilino Naphthalenesulfonates

Evidence for a role of volatile amines in the development of neonatal hypergastrinemia.

We investigated the presence of volatile aliphatic amines by fluorescamine and gas chromatographic-head space analysis in human breast milk and amniotic fluid to assess their role in neonatal hypergastrinemia. These volatile nitrogenous amino acid metabolites have been previously demonstrated to stimulate gastrin release in in vivo and in vitro laboratory preparations. In the present study we demonstrated that these gastrin-stimulatory volatile amines were present in significant concentrations in breast milk during the first several weeks after parturition and in amniotic fluid. The individual amines that were identified in both human milk and amniotic fluid samples were methylamine, dimethylamine, ethylamine, trimethylamine, propylamine, isobutylamine, and butylamine. This study provides indirect evidence to support the possibility that the hypergastrinemia measured in the fetus/neonate during the period immediately before and after birth may be attributable, in part, to the ingestion of fluid containing high concentrations of gastrin-stimulating amines.

Amines

Chagas' disease.

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Anesthesia, General