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Biomedical subjects

M Devereaux

Publications and source records attributed to M Devereaux.

7 recordsLinked to original sources

Assessing what high risk young children know about drugs: verbal versus pictorial methods.

Very young children are generally not targeted for drug education efforts for two basic reasons. First, it is generally assumed that young children are not cognitively ready to learn about specific drugs through systematic drug prevention efforts. And second, it is difficult to measure pre- and posttest changes on the part of young children if drug education intervention is instituted. This study involved measuring what children three to eight years old learned from systematic drug education over the course of eight months. Two assessment methods were compared: pictorial and verbal interviews. The posttest results revealed that the children who received the intervention knew significantly more about several drugs than a matched comparison group. Both methods were useful in providing a comprehensive view of what the children knew about alcohol and other drugs.

Audiovisual Aids↗

Evidence for involvement of oxygen free radicals in bile acid toxicity to isolated rat hepatocytes.

The mechanisms by which hydrophobic bile acids are toxic to the liver are unknown. To determine whether the generation of free radicals is involved in the hepatotoxicity of bile acids, freshly isolated rat hepatocytes were incubated with individual bile acids (100 to 200 mumol/L) for 4 hr. Hepatocyte viability (trypan blue exclusion) declined to 40% to 50% in incubations with taurochenodeoxycholic acid and taurolithocholic acid, whereas taurocholic acid and tauroursodeoxycholic acid were not toxic. Lipid peroxidation was significantly associated with the loss of cell viability. Preincubation with different antioxidants-D-alpha-tocopheryl succinate, D-alpha-tocopherol, diphenyl-p-phenylenediamine, superoxide dismutase, catalase, superoxide dismutase + catalase, deferoxamine or apotransferrin-protected against the loss of viability and inhibited lipid peroxidation in cells incubated with 200 mumol/L taurolithocholic acid. alpha-Tocopheryl succinate added after 90 min of incubation with taurolithocholic acid ameliorated further hepatocyte toxicity and lipid peroxidation. Incubation of hepatocytes with 500 mumol/L of taurochenodeoxycholic acid or taurolithocholic acid under a low oxygen tension (9% O2) similarly caused lipid peroxidation and cell injury that was reversed by preincubation with D-alpha-tocopherol. These data suggest that oxygen free radicals may be involved in the pathogenesis of bile acid hepatotoxicity.

Animals↗

Effect of dietary lipid and vitamin E on mitochondrial lipid peroxidation and hepatic injury in the bile duct-ligated rat.

To assess whether lipid peroxidation of hepatic mitochondria is associated with cholestatic hepatic injury we examined the effect of bile duct ligation (BDL) versus sham surgery on mitochondrial lipids of rats maintained on one of seven diets. Diets included vitamin E-deficient (E-) and vitamin E-sufficient (E+) combined with normal lipid (11.9% calories as stripped corn oil), high lipid (35% calories as stripped corn oil), or n-3 fatty acid (fish oil) supplementation. Rats were killed 17 days after surgery, mitochondria were isolated by differential centrifugation, and lipid-conjugated dienes and thiobarbituric acid-reacting substances (TBARS) were measured in mitochondrial lipids as indices of lipid peroxidation. BDL resulted in significant increases in lipid peroxidation in all dietary groups. The E- high lipid diets (with either corn oil or fish oil) were associated with higher lipid peroxide and serum bilirubin values in BDL rats compared to the normal lipid diets. Fish oil supplementation did not ameliorate cholestatic or oxidative injury. Serum alanine aminotransferase, bilirubin, alkaline phosphatase, and cholylglycine levels correlated significantly with levels of mitochondrial conjugated dienes and TBARS. These data suggest that free radical stress occurs during BDL in the rat and may result in mitochondrial lipid peroxidation, and that diets high in lipid may increase free radical damage to hepatic mitochondria. The role of free radicals in cholestatic hepatic injury requires further investigation.

Administration, Oral↗

Oxidant injury to hepatic mitochondrial lipids in rats with dietary copper overload. Modification by vitamin E deficiency.

To examine the role of oxidant damage to subcellular membranes in the pathogenesis of copper hepatotoxicity, the effects of dietary copper overload and varying states of vitamin E on biochemical, histological, and ultrastructural features of rat liver were investigated. Weanling male rats were pair-fed for 8 weeks on diets containing normal or high levels of copper in combination with either deficient, sufficient, or excessive vitamin E. Hepatic microsomes and mitochondria, isolated by differential centrifugation, showed similar enrichment and recovery among all experimental groups. Evidence of in vivo peroxidation of membrane lipids (generation of conjugated dienes and thiobarbituric acid reacting substances) was present in mitochondrial but not microsomal preparations from copper-overloaded rats. Serum aspartate aminotransferase, alanine aminotransferase, and cholylglycine (which were increased in all copper-overloaded rats), as well as mitochondrial thiobarbituric acid-reacting substances, were more elevated in vitamin E-deficient rats. In copper-overloaded rats, liver histology showed changes of acute and chronic hepatocyte injury with mild periportal fibrosis; electron microscopy showed abundant copper-containing lysosomes and dilated cristae of hepatocyte mitochondria, findings similar to those in the liver of humans with copper-overload disorders. These findings suggest that an oxidant injury to hepatocyte mitochondria may be one of the initiating factors in hepatocellular damage that leads to hepatic lesions in copper-overload states in humans.

Animals↗

Investigation of auranofin-induced diarrhoea.

Gastrointestinal function was assessed in six patients with rheumatoid arthritis who had developed diarrhoea on treatment with Auranofin. With the administration of Auranofin whole gut transit time decreased markedly (to 50% or less of control values) in five of six patients. The speed of passage of intestinal contents through the colon was certainly increased but attempts to assess transit through the upper gastrointestinal tract failed because the breath hydrogen method gave inconclusive results. There was no evidence of colitis and in all cases biopsy of the rectal mucosa appeared normal by light microscopy. In the five patients with rapid intestinal transit faecal weight increased more than two-fold (range +44 to +335%) although in only three cases were the changes sufficient to cause an increased frequency of bowel action. Overall the concentration of sodium in faecal water increased three-fold (mean values rose from 10.6 to 38.3 mmol/l). There were no significant changes in the concentrations of either potassium or chloride but bicarbonate was reduced. Faecal pH fell from a mean value of 7.5 (range 6.8-7.9) to a mean value of 6.4 (range 6.0-7.4). In the three patients who developed overt diarrhoea and in two others taking Auranofin the intestinal uptake of 51Cr-EDTA was increased on average three-fold and there was a similar change in the ratio of the absorption of lactulose/mannitol. The mean clearance of alpha-1-antitrypsin from the circulation into the gastrointestinal tract was doubled. These data indicate an increase in intestinal permeability. In contrast the absorption of vitamin B12 was unaffected and there was no significant change in the excretion of faecal fat although one patient developed mild steatorrhoea. Thus in a selected group of subjects with rheumatoid arthritis the administration of Auranofin caused diarrhoea in association with a reversible defect in intestinal permeability but without significant change in the absorption of nutrients.

Adult↗