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Biomedical subjects

E Ryder

Publications and source records attributed to E Ryder.

At least 55 records · Page 3Linked to original sources

Effect of chronic ingestion of iodide during pregnancy and lactation on rat pup brain enzymes.

The developmental pattern of several key enzymes in brain of pups born to mothers receiving high levels of iodide (1.1 mg daily intake) during pregnancy and lactation were followed up to the weaning period. We found that in the initial states of postnatal development, glutamic dehydrogenase increased above control levels, whereas succinic dehydrogenase decreased. At late stages, we observed differences in phosphofructokinase and malic enzyme activities which were all increased at 30 days. There was no change in hexokinase. Animal weight did not vary with respect to controls and we only obtained discrete increases (not statistically different) in serum thyroxine values, which led us to assume that the enzymatic modifications might be a consequence of either a very mild hormonal alteration or to the direct effect of iodide.

Animals↗

Human Venezuelan equine encephalitis virus infection and diabetes in Zulia State, Venezuela.

Venezuelan equine encephalitis (VEE) virus has been implicated as producing alterations in glucose metabolism in animals. We performed oral glucose tolerance tests and measured serum immunoreactive insulin responses in 13 patients who were infected by VEE virus during an epidemic in 1969, in Zulia State, Venezuela. No significant alterations in the glucose tolerance test were found. Sera of 86 diabetic outpatients and 98 control individuals with normal glycemia at a local hospital were tested for antibodies to VEE virus by hemagglutination inhibition. No statistically significant difference was found between the two groups; 10.4% of the diabetic patients had detectable antibodies against VEE virus, compared to 7.1% of controls. Seventy-three percent of the diabetics with antibodies were individuals over 40 yr old, whose diabetes could be catalogued as insulin independent. The results of these studies indicate no relationship of VEE virus infection to subsequent diabetes.

Adolescent↗

Rat brain malic enzyme: subcellular distribution and kinetic studies from two brain regions.

1. The subcellular distribution of malic enzyme in two different brain regions (frontal cortex and striatum) is studied in adult rats. 2. A bimodal distribution is found in both regions: 75% being localized in the mitochondrial fraction and the remaining 25% in the cytosol. 3. In the frontal cortex, free mitochondria is enriched with the enzyme, while, in striatum, free as well as synaptic mitochondria, presented the same activity. 4. Kinetic studies of the malic enzymes show two Km values when malate is used as substrate. A higher Km value for free mitochondria as compared with a lower one found for the cytosolic and synaptosomal mitochondria suggests the presence of two enzyme populations. 5. The following are common characteristics for the two enzyme populations: NADP dependence, use of either Mg2+ or Mn2+ as cofactor and hyperbolic malate saturation curves not affected by dicarboxylic acids.

Animals↗

Excessive ingestion of iodide by the rat during pregnancy and lactation. Effects on ribonucleic acid transcription in the pups brain.

The effects of an excessive ingestion of iodide by the rat during pregnancy and lactation on the transcription of RNA were studied in the brain of the pups at 10, 15 and 20 days of age. Cerebral weight, DNA content and synthesis of heterogeneous RNA were not affected during the period studied. The activity of endogenous RNA polymerase I, alpha-amanitin resistant, measured in isolated cell nuclei was significantly reduced in twenty day old rats. Similar conditions meaningfully diminished body weight at the same age.

Animals↗

GABA metabolism in Venezuelan equine encephalomyelitis virus infection.

Mice infected with the Venezuelan equine encephalomyelitis virus showed a significant decrease in the GABA content of cerebral hemispheres. Activity of the enzyme which synthetizes GABA, glutamate decarboxylase, is also reduced in whole cerebral hemispheres, neostriatum, and frontal cortex of infected animals, as compared to values obtained from the same regions of control mice. No significant difference was demonstrated in the activities of GABA transaminase, glutamate dehydrogenase, lactate dehydrogenase, succinate dehydrogenase and NAD-malate dehydrogenase in any of the regions studied. The results suggest that the viral infection produced an alteration in the mechanism of GABA synthesis.

Animals↗

Distribution of mitochondrial enzymes between the perikaryal and synaptic fractions of immature and adult rat brain.

The subcellular distribution of mitochondrial enzymes was studied in cerebral hemispheres of 15-day-old and adult rats. At both ages the synaptosomal fraction contained very little glutamate dehydrogenase (EC 1.4.1.2) but significant amounts of succinate dehydrogenase (EC 1.3.99.1), glutaminase (EC 3.5.1.2), hexokinase (EC 2.7.1.1), malate NADP dehydrogenase (EC 1.1.1.40) and beta-hydroxybutyrate dehydrogenase (EC 1.1.1.30). In immature brain, in the fraction enriched with free (perikaryal) mitochondria, the concentrations of these enzymes were 9.5, 1.8, 2.0, 0.92, 1.5, and 2.1 times higher, respectively, than in the synaptosomes. The increase with age in succinate dehydrogenase and glutaminase was restricted to free mitochondria while hexokinase and malate NADP dehydrogenase accumulated and beta-hydroxybutyrate dehydrogenase diminished in both fractions. In adult brain, too, where the above ratios became 7.5, 5.2, 3.5, 0.84, 1.4, and 2.0, respectively, the concentrations of enzymes relative to each other distinguished clearly between free and synaptic mitochondria. The results substantiate previously noted signs of mitochondrial heteroeneity in adult brain, and extend them to immature brain. The chemical composition, the quantitative pattern of enzymes, of free and synaptic mitochondria is clearly different, and undergoes separate changes during postnatal differentiation.

Aging↗

Development of hepatic acetyl coenzyme A carboxylase in hormone-treated chicks.

It has been suggested that the carbohydrate-rich diet of chicks after hatching is responsible for the emergence of hepatic enzymes involved in lipogenesis; the injection of glucose to newly hatched chicks gives rise to an appreciable elvation on the activities of acetyl coenzyme A carboxylase and fatty acid synthetase. The present study shows that during the first hours after hatching, there is a natural elevation of glycemia which parallels the increase in acetyl coenzyme A carboxylase activity. However, the administration of hormones which alter the blood glucose levels considerably (insulin, tolbutamide, glucagon and hydrocortisone) did not influence the enzyme activity. The administration of thyroxine, estradiol and cyclic AMP, was also without effect. These results do not support the theory that the increased amount of blood glucose is the natural effector of the induction acetyl coenzyme A carboxylase. They also show that different lipogenic enzymes are not regulated via the same 'operon' since thyroxine or glucagon which alter the level of some enzymes on this pathway did not modify that of the acetyl coenzyme A carboxylase.

Acetyl-CoA Carboxylase↗

Biochemical changes in cultured foetal rat liver explants.

Liver explants from 20-day-old foetuses cultured for 48h in the absence of serum released 70% of their total soluble protein content into the medium. In the presence of serum this loss still amounted to 60%. The concentration of total particulate protein remained unchanged but there was some translocation of mitochondrial enzymes to the cytosol, and enzymes expected to increase during this stage of development failed to do so. The addition of cortisol plus glucagon (to serum-containing media) did not decrease the loss of total soluble protein from the explants but induced considerable tyrosine aminotransferase activity which was not released into the medium. The observations suggest that under the usual culture conditions a minority of the cells retain their functional integrity. The extent of deterioration, not reflected in histologically visible necrosis or cell damage, can be conveniently monitored by the malate dehydrogenase activity released to the medium.

Animals↗