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C S Dutra-Filho

Publications and source records attributed to C S Dutra-Filho.

34 records · Page 2Linked to original sources

Effect of phenylalanine and p-chlorophenylalanine on Na+, K+-ATPase activity in the synaptic plasma membrane from the cerebral cortex of rats.

Na+, K+-ATPase activity was measured in synaptic plasma membrane from cerebral cortex of Wistar rats subjected to experimental phenylketonuria, i.e., chemical hyperphenylalaninemia induced by subcutaneous administration of 5.2 micromol phenylalanine / g body weight (twice a day) plus 0.9 micromol p-chlorophenylalanine / g body weight (once a day). The treatment was performed from the 6th to the 14th postpartum day and rats were killed 12 h after the last injection. Synaptic plasma membrane from cerebral cortex was prepared by a discontinuous density sucrose gradient for Na+, K+-ATPase activity determination. The results showed that the enzyme activity was decreased by 30% in animals subjected to experimental phenylketonuria when compared to control. The in vitro effects of the drugs on Na+, K+-ATPase activity were also investigated. Phenylalanine and p-chlorophenylalanine inhibited the enzyme activity and this inhibition was reversed by alanine. In addition, competition between phenylalanine and p-chlorophenylalanine for binding to the enzyme was observed, suggesting a common binding site for these substances. Our results suggest that reduction of Na+, K+-ATPase activity may be one of the mechanisms related to the brain dysfunction observed in human PKU.

Animals↗

Platelet Na+, K+-ATPase activity as a possible peripheral marker for the neurotoxic effects of phenylalanine in phenylketonuria.

The in vitro effects of phenylalanine or alanine alone or combined on Na+, K+-ATPase activity in membranes from human platelets were investigated. The enzyme activity was assayed in membranes prepared from platelet-rich plasma of healthy donors. Phenylalanine or alanine were added to the assay to final concentrations of 0.3 to 1.2 mM, similar to those found in plasma of phenylketonuric patients. Phenylalanine inhibited Na+, K+-ATPase activity by 20-50% [F(4,25)=11.47 ; p<0.001]. Alanine had no effect on Na+, K+-ATPase activity but when combined with phenylalanine prevented the enzyme inhibition. These results, allied to others previously reported on brain Na+, K+-ATPase activity, may reflect a general inhibitory effect of phenylalanine on this important enzyme activity. Therefore, it is possible that measurement of Na+, K+-ATPase activity in platelets from PKU patients may be a useful peripheral marker for the neurotoxic effects of phenylalanine.

Alanine↗

Inhibition of energy production in vitro by glutaric acid in cerebral cortex of young rats.

The present study investigated the effects of glutaric acid (GA), which predominantly accumulates in glutaric acidemia type I (GA-I), on some in vitro parameters of energy metabolism in cerebral cortex of rats. We first evaluated CO2 production from [U-14C] acetate, as well as ATP levels in brain of young Wistar rats. The effect of the acid on the activities of the respiratory chain complexes were also investigated. GA was tested at final concentrations ranging from 0.5 to 5.0 mM. GA significantly reduced brain CO2 production by 50% at the concentrations of 0.5 to 3.0 mM, ATP levels by 25% at the concentration of 3.0 mM, succinate:cytochrome C oxireductase (complex II plus CoQ plus complex III) by 25% at 5 mM concentration, and NADH:cytochrome C oxireductase (complex I plus CoQ plus complex Ill) by 25% at 2.5 and 5 mM concentrations. The results strongly indicate that GA impairs brain energy production. If these effects also occur in humans, it is possible that they may contribute to the neuropathology of patients affected by GA-I.

Acetates↗

Proline administration decreases Na+,K+-ATPase activity in the synaptic plasma membrane from cerebral cortex of rats.

Buffered proline was injected subcutaneously into rats twice a day at 8 h intervals from the 6th to the 28th day of age. Control rats received saline in the same volumes. The animals were weighed and killed by decapitation 12 h after the last injection. Cerebral cortex was used for the determination of Na+,K+-ATPase and Mg2+-ATPase activities. Body, whole brain and cortical weights were similar in the two groups. Na+,K+-ATPase activity was significantly reduced (by 20%) in membranes from the proline-treated group compared to the controls, whereas Mg2+-ATPase activity was not affected by proline. In another set of experiments, synaptic plasma membranes were prepared from cerebral cortex of 29-day-old rats and incubated with proline at final concentrations ranging from 0.1 to 2.0 mM. Na+,K+-ATPase activity, but not Mg2+-ATPase activity, was inhibited by 20-30%. Since proline concentrations in plasma of chronically treated rats and of type 11 hyperprolinemic children are of the same order of magnitude as those tested in vitro, the results suggest that reduction of Na+,K+-ATPase activity may contribute to the neurological dysfunction found in some patients affected by type II hyperprolinemia.

Amino Acid Metabolism, Inborn Errors↗

Possible high frequency of tetrahydrobiopterin deficiency in south Brazil.

We report our experience with the deficiency of 6-pyruvoyltetrahydropterin synthase, the most common form of tetrahydrobiopterin deficiency. We investigated 5200 patients suspected of having some inborn error of metabolism in a 10-year period, and detected 30 cases (from 28 sibships) of hyperphenylalaninaemias, HPA. From these, 4 sibships (5 patients) were affected by deficiency of 6-pyruvoyltetrahydropterin synthase. All of them were ethnically mixed, with some European ancestry detected in all. The age of diagnosis ranged from 2 to 9 years, and all were initially referred for investigation by having mental retardation and seizures. All of them showed low urinary biopterin levels and a marked elevation of neopterin. Although we detected only a few cases of HPA (30), 5 cases of 6-pyruvoyltetrahydropterin account for almost 20% of this total. The literature, however, reports a proportion of around 0.5%. As the frequency of classical phenylketonuria in our region is similar to that found in Caucasians (1/12,500), we believe that the frequency of this disease in South Brazil may be higher than expected (of the order of 1/400,000). We speculate that this finding could be related to a genetic drift (or founder effect).

Amino Acid Metabolism, Inborn Errors↗

Inhibition of succinate dehydrogenase and beta-hydroxybutyrate dehydrogenase activities by methylmalonate in brain and liver of developing rats.

The effects of methylmalonate (MMA) on succinate dehydrogenase (SDH) and beta-hydroxybutyrate dehydrogenase (HBDH) activities in brain and liver of 15-day-old rats were studied. The apparent Km of SDH for succinate was 0.45 mmol/L in brain and 0.34 mmol/L in liver. MMA inhibited the enzyme activity in both tissues with Ki values of 4.5 mmol/L and 2.3 mmol/L in brain and liver, respectively, and the inhibition was of the reversible competitive type. The calculated Km for HBDH with beta-hydroxybutyrate as substrate was 1.26 mmol/L in brain and 0.36 mmol/L in liver. MMA inhibited the enzyme with a Ki value of 0.015 mmol/L in brain and 0.275 mmol/L in liver. These results are probably relevant to our understanding of cerebral metabolism in methylmalonic acidaemic children, especially during ketoacidotic and hypoglycaemic crises, and may be related to the pathogenesis of cerebral dysfunction of methylmalonic acidaemia.

Animals↗

Effects of methylmalonate and propionate on uptake of glucose and ketone bodies in vitro by brain of developing rats.

Methylmalonate (MMA) and propionate effects on glucose and ketone body uptake in vitro by brain of fed and 30-hour-fasted 15-day-old rats were studied. In some experiments cerebrum prisms were incubated in the presence of glucose and either MMA or propionate in Krebs-Ringer bicarbonate buffer, pH 7.0. In others, the incubation medium contained beta-hydroxybutyrate (HBA) or acetoacetate (AcAc) instead of glucose. We verified that MMA increased glucose uptake by brain of fasting animals, whereas propionate had no effect. In addition, MMA diminished HBA but not AcAc incorporation into brain prisms, whereas propionate provoked a diminished utilization of both ketone bodies by brain. The in vitro effect of MMA and propionate on brain and liver beta-hydroxybutyrate dehydrogenase activity was also investigated. It was shown that MMA but not propionate significantly inhibited this activity. Rats were also injected subcutaneously three times with a MMA buffered solution, and the in vivo effects of MMA on the above-mentioned parameters assessed. Results from these experiments confirmed the previously found in vitro MMA effects. Methylmalonic acidemic patients accumulate primarily methylmalonate and secondarily propionate and other metabolites in their tissues at levels comparable to those we used in our assays. Most patients who survive early stages of the disease show a variable degree of neuromotor delay. Since glucose and sometimes ketones are the vital substrates for brain metabolism, it is possible that our findings may contribute to a certain extent to an understanding of the biochemical basis of mental retardation in these patients.

3-Hydroxybutyric Acid↗

Reduced locomotor activity of rats made histidinemic by injection of histidine.

Acute histidinemia was provoked in 30-d-old male Wistar rats by injecting intraperitoneally either histidine alone (0.5 mg/g body wt) or histidine (0.25 mg/g body wt) plus the histidase inhibitor nitromethane (0.73 mg/g body wt). Histidase activity was approximately 90% inhibited in rats receiving nitromethane. Serum histidine in both groups reached levels similar to those of histidinemic patients. Rats were subjected to the open field behavioral task, and the number of rearings and crossings were counted. A consistently lower locomotor activity was observed in the histidinemic rats. It is proposed that reduced locomotor activity and its relationship to psychomotor development should be investigated in histidinemic children.

Animals↗

Inborn errors of metabolism. Sensitivity of screening tests in high risk patients.

We estimated the sensitivity of a screening procedure (SP) for inborn errors of metabolism (IEM) in 566 referred, high-risk patients. The 143 (25.3% of the total sample) patients with initial abnormal results in at least one screening test (ST) were recalled for further investigations. An IEM was diagnosed in 40.6 percent of the 106 patients who came for reevaluation. In 114 of the remaining 423 patients who had normal initial ST, an IEM was still suspected on basis of clinical, radiological, and/or laboratory findings and was confirmed in 30 of such patients (5.3% of the total sample and 7.1% of the patients with normal results in the SP). The sensitivity of the SP was estimated maximally as 67.4 percent and the efficiency as 80.4 percent. Twenty-five of the 30 cases undetected with the SP were patients with sphingolipidoses. The simple inclusion of thin-layer chromatography of urinary oligosaccharides in the SP should allow the detection of at least one half of these cases, increasing its sensitivity by 14.1 percent and its efficiency by 4.6 percent. In at least 7.1 percent of patients with an initial normal ST, an IEM was detected. These would have remained undiagnosed if the limitations of the SP employed had not been fully understood.

Child↗

Detection of inborn errors of metabolism in unselected patients from pediatric intensive care units in Porto Alegre, Brazil: evaluation of screening techniques.

1. The present study provides an analysis of the interpretation and usefulness of mass biochemical urine screening tests currently applied to a population of severely ill children consisting of 232 unselected individuals, under various medications, held in intensive care units. 2. Testing for glycosaminoglycans by the cetyltrimethylammonium bromide reaction is of little benefit to this population. The Ehrlich reaction, used to detect porphobilinogen, should be reserved for cases which present clinical symptoms. Owing to the large number of false-positives and because chromatography or electrophoresis can easily be used to detect tyrosine, it is suggested that the nitrosonaphthol test be abandoned. The cyanide nitroprusside reaction should be used when chromatography or electrophoresis suggests cystinuria, homocystinuria or beta-mercapto lactate disulfiduria. 3. Because of its high sensitivity in detecting reducing substances, the Clinitest is useful for selecting samples to be investigated further by sugar chromatography. 4. Given the relatively high frequency of organic acidurias, particularly methylmalonic aciduria, in intensive care unit populations, it is suggested that the p-nitroaniline reaction be incorporated into the battery of chemical urine tests. 5. A comparison between paper chromatography and high voltage paper electrophoresis in terms of effective analysis of amino acid patterns demonstrated that chromatography is preferential, since this is as sensitive as electrophoresis, does not require a special apparatus and permits the simultaneous use of plasma and urine from the same patient, thus facilitating the interpretation of amino acid patterns.

Amino Acid Metabolism, Inborn Errors↗

[Börjeson-Forssman-Lehmann syndrome: report of a case].

We present a case of Börjeson-Forssman-Lehmann syndrome characterized by the presence of hypogonadism, grotesque facies, microcephaly, large ears, obesity and convulsions. In addition to these findings, which were detected also in the other patients described in the literature, the present patient showed hyperglycemia and aminoaciduria. In our opinion, the presence of these alterations and the poor evolution of the patient, with death occurring during the first year of life, may contribute to the amplification of the phenotypic spectrum of the Börjeson-Forssman-Lehmann syndrome.

Ear↗