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Effect of hydrochloric acid, pepsin, or taurocholate on bioelectric properties of gastric squamous mucosa in horses.

OBJECTIVE: To determine the effect of pH with or without pepsin or taurocholic acid on the bioelectric properties of gastric squamous mucosa in horses. SAMPLE POPULATION: Gastric tissues obtained from 16 adult horses that did not have evidence of gastric disease. PROCEDURE: Bioelectric properties of squamous mucosa were determined, using modified Ussing chambers. Tissues then were exposed to mucosal pepsin (1 mg/ml) or taurocholic acid (2.5 mM) under neutral (pH 74) or acidic (pH 1.7) conditions. RESULTS: Exposure of mucosal sheets to an acidic pH resulted in an immediate and sustained decrease in transmembrane potential difference and calculated tissue resistance. Pepsin or taurocholic acid did not significantly affect bioelectric variables when added to a mucosal bath solution of pH 7.4. A synergistic effect between pepsin or taurocholic acid and mucosal acidification was not detected. CONCLUSIONS AND CLINICAL RELEVANCE: Mucosal acidification with or without pepsin or taurocholic acid resulted in reduced tissue resistance. These data support the contention that squamous erosions or ulcers in horses are mediated, in part, by prolonged exposure of gastric squamous mucosa to luminal acid.

Acetazolamide↗

Protective role of S-adenosyl-L-methionine against hydrochloric acid stress in Saccharomyces cerevisiae.

S-adenosyl-L-methionine (AdoMet, 1mM) protects the stationary phase cells of Saccharomyces cerevisiae against the killing effect of acid (10mM HCl, pH approximately 2). Both the acid and the acid plus AdoMet treatment for 2h increased the plasma membrane H(+)-ATPase activity; thereafter it decreased to the basal level. AdoMet partially recovered the intracellular pH (pH(in)) that dropped in presence of acid. AdoMet treatment facilitated acid induced phospholipid biosynthesis as well as membrane proliferation, which was reflected in the cellular lipid composition.

Cytoprotection↗

[Effect of ulinastatin on lung injury after dilute hydrochloric acid aspiration].

OBJECTIVE: To determine the effect of ulinastatin (UTI) on blocking the development of acute lung injury (ALI) induced by acid aspiration in the early period. METHODS: The SD rats were randomly divided into 3 groups: control group (n = 10), injury group (n = 10), and UTI-treated group (n = 10). The rats in the control group were injected intrabronchialy saline while the other 2 groups were injected HCl. The UTI-treated group was injected UTI at 4 x 10(4) U/kg after acid instillation. Blood gas as well as wet/dry weight ratio (W/D) of the left lung was measured. The changes of IL-8 and TNF-alpha levels in the pulmonary tissues were determined by enzyme-linked immunosorbent assay. RESULTS: The result of blood gas analysis in the UTI-treated group was much better than that in the injury group (P < 0.01). W/ D and IL-8, TNF-alpha levels were lower in the UTI-treated group than those in the injury group significantly (P < 0. 01), and there was no difference between the UTI-treated group and the control group in IL-8 and TNF-alpha levels (P > 0. 05). CONCLUSION: UTI administration can lessen the development of ALI induced by acid aspiration in the early period.

Animals↗

Synergistic effect of hydrochloric acid and bile acids on the pars esophageal mucosa of the porcine stomach.

OBJECTIVES: To determine effects of finely ground diet and food deprivation on pH and bile acid concentration in the proximal portion of the porcine stomach and effects of bile acids and pH on the pars esophageal mucosa in vitro. ANIMALS: Sixteen 15- to 30-kg pigs. PROCEDURES: Gastric content samples obtained from pigs fed a finely ground pelleted or coarsely ground meal diet were assayed for gastric pH and bile acids. Stratified squamous epithelium was studied in an Ussing chamber, and histologically. Electrical conductance and transmucosal mannitol fluxes (as indices of tissue permeability) were determined at pH 4.0, 2.0, and 1.5 and in response to treatment with 0, 1, 2, or 3 mM taurodeoxycholate or glycocholate. RESULTS: Pigs fed the finely ground feed had significantly (P = 0.01) lower proximal stomach pH than did pigs fed the coarse meal. Proximal stomach bile acids concentration was significantly (P = 0.04) higher in pigs fed the finely ground diet. The H+ and bile acids concentration increased with time after feeding. In vitro exposure of the stratified mucosa to high H+ (pH < 4.0) and bile salt concentration (> or = 1.0 mM) resulted in significant (P < 0.05) dose-dependent increase in tissue conductance and mannitol fluxes, whereas low pH or bile acids alone had little effect. CONCLUSIONS: High H+ and bile acids concentration in the stomach of pigs fed finely ground diets or subjected to feed deprivation may contribute to ulceration of the pars esophageal tissue. Bile acids act synergistically and in dose-dependent manner, with low pH causing damage to the stratified squamous epithelium in vitro.

Animals↗