Search PubMed⌕ Search

Biomedical subjects

E Mayatepek

Publications and source records attributed to E Mayatepek.

At least 19 recordsLinked to original sources

Presymptomatic treatment of neonatal guanidinoacetate methyltransferase deficiency.

Prospective observation in a neonate with guanidinoacetate methyltransferase deficiency (GAMT-D), a severe neurometabolic disorder, revealed increased guanidinoacetate levels at birth. After 14-month treatment with creatine, high-dose ornithine, benzoate, and an arginine-restricted diet, the patient's development is normal and she does not present any symptoms of GAMT-D. The authors' observation indicates that early detection of GAMT-D is possible in the neonatal period, and presymptomatic treatment may prevent its manifestation.

Benzoates↗

Glucose and leucine kinetics in idiopathic ketotic hypoglycaemia.

AIMS: To investigate glucose and leucine kinetics in association with metabolic and endocrine investigations in children with ketotic hypoglycaemia (KH) in order to elucidate the underlying pathophysiology. METHODS: Prospective interventional study using stable isotope tracer in nine children (mean age 4.23 years, range 0.9-9.8 years; seven males) with KH and 11 controls (mean age 4.57 years, range 0.16-12.3 years; four males). RESULTS: Plasma insulin levels were significantly lower in KH compared to subjects in the non-KH group. Plasma ketone body levels were significantly higher in KH than in non-KH. Basal metabolic rate was significantly higher in subjects with KH (45.48+/-7.41 v 31.81+/-6.72 kcal/kg/day) but the respiratory quotients were similar in both groups (KH v non-KH, 0.84+/-0.05 v 0.8+/-0.04. Leucine oxidation rates were significantly lower in children with KH (12.25+/-6.25 v 31.96+/-8.59 micromol/kg/h). Hepatic glucose production rates were also significantly lower in KH (3.84+/-0.46 v 6.6+/-0.59 mg/kg/min). CONCLUSIONS: KH is caused by a failure to sustain hepatic glucose production rather than by increased glucose oxidation rates. Energy demand is significantly increased, whereas leucine oxidation is reduced.

Alanine↗

Clinical findings and a therapeutic trial in the first patient with beta-ureidopropionase deficiency.

The clinical, neurophysiological and neuroradiological work-up as well as the results of a specific treatment trial are presented of the first patient diagnosed with beta-ureidopropionase deficiency (E.C. 3.5.1.6, McKusick 606673). The patient presented with an early-onset dystonic movement disorder, severe developmental delay with marked impairment of visual responsiveness in combination with severely delayed myelination in magnetic resonance imaging studies. In addition, there were partial optic atrophy, pigmentary retinopathy and mild cerebellar hypoplasia. The enzyme defect was expected to lead to intracerebral deficiency of beta-alanine which seems to be a neuromodulator at inhibitory synapses. Therefore, a therapeutic trial with supplementation of beta-alanine was undertaken over 1.5 years with no convincing clinical improvement.

Amidohydrolases↗

Acute neuronopathic Gaucher disease complicated by fatal gastrointestinal bleeding.

Gaucher disease, a rare lysosomal storage disease caused by deficiency of glucocerebrosidase, may present with gastrointestinal bleeding. We report about an 11-month-old boy suffering from acute neuronopathic Gaucher disease who died after massive gastrointestinal bleeding. A gastric ulcer was found as the sole bleeding source. The gastric mucosa showed marked infiltration with Gaucher cells, in particular around the ulcer. Alterations of the gastrointestinal mucosa offer a new explanation for gastrointestinal bleedings in this disease.

Fatal Outcome↗

Evidence for impaired gluconeogenesis in very long-chain acyl-CoA dehydrogenase-deficient mice.

Hypoketotic hypoglycaemia is a characteristic feature of fatty acid oxidation (FAO) defects. Although the underlying pathogenic mechanism is unknown, one hypothesis points to an impairment in gluconeogenesis. To study hepatic glucose production in FAO defects, we used the knockout mouse model of very long-chain acyl-CoA dehydrogenase (VLCAD) deficiency presenting with stress-induced hypoglycaemia. We analysed metabolites of hepatic glucose production under non-stressed conditions and after stress in comparison to wildtype controls. Analysis included glycogen, glucose-6-phosphate (G6P), fructose-6-phosphate (F6P), glycerol-3-phosphate (G3P) and dihydroxyacetone-phosphate (DHAP). We also measured the activity of the key enzyme glucose-6-phosphatase. Blood and liver glucose were found to be low after stress, and liver glycogen was depleted. In addition, hepatic G6P and F6P were significantly reduced, especially during hypoglycaemia. Importantly, the activity of the enzyme converting G6P into glucose was not impaired. These data indicate a reduced rate of gluconeogenesis. The levels of DHAP and G3P were significantly lower suggesting decreased availability of glucose precursors from glycerol. This study gives biochemical evidence of impaired gluconeogenesis as one of the causes for hypoglycaemia observed in VLCAD deficiency. Whether this is due to lack of a substrate, inhibitory effects on other gluconeogenic enzymes or impaired transcription of gluconeogenic enzymes needs to be resolved in the future.

Acyl-CoA Dehydrogenase, Long-Chain↗

Genetic analysis of the first 4 patients with beta-ureidopropionase deficiency.

beta-Ureidopropionase is the third enzyme of the pyrimidine degradation pathway and it catalyses the irreversible hydrolysis of N-carbamyl-ss-aminoisobutyric acid or N-carbamyl-ss-alanine to beta-aminoisobutyric acid or ss-alanine, ammonia, and CO2. Analysis of the beta-ureidopropionase gene (UPB1) of the first 4 patients presenting with a complete enzyme deficiency, revealed the presence of 2 splice-site mutations (IVS1-2A>G and IVS8-1G>A) and one missense mutation (A85E). RT-PCR analysis of the complete beta-ureidopropionase cDNA suggested that both splice-site mutations lead to a variety of alternative splice variants, with deletions of a single or several exons. The alanine at position 85 was not conserved in other eukaryotic beta-ureidopropionase protein sequences.

Amidohydrolases↗

Endothelial, inducible and neuronal nitric oxide synthase in congenital pulmonary lymphangiectasis.

Abnormal growth and development of lymphatic pulmonary structures leads to severe hypoxia in congenital pulmonary lymphangiectasis (CPL). This case study aims to determine the cellular source and topographical distribution of the nitric oxide synthases in CPL. It studies the post mortem tissue of a term newborn with the clinical course and histological findings of CPL and three controls without pulmonary pathology. It was found that endothelial cells of pulmonary arteries and lymphatic structures stained significantly more for endothelial nitric oxide synthase protein in the CPL patient compared to the controls. The authors conclude that synthesis of endothelial nitric oxide synthase is upregulated in vascular and lymphatic endothelial cells in congenital pulmonary lymphangiectasis.

Adult↗

Influence of D-arabitol and ribitol on neuronal network activity.

To date, two new defects in the pentose phosphate pathway have been identified in patients with abnormalities in their polyol profiles. Some of them presented with neurological symptoms of so far unknown aetiology. The pathophysiological role of polyols, e.g. in the brain, is relatively unknown. We tested the neurotoxicity of polyols using a 'neurochip' model. After exposure of cortical rat neurons to D-arabitol and ribitol in increasing concentrations up to 10 mmol/L, the electrophysiological activity was measured. No acute effect on the spontaneous network activity of cortical neurons was observed. We speculate that polyols have only secondary effects on brain dysfunction.

Animals↗

Severe hyperhomocysteinaemia and 5-oxoprolinuria secondary to antiproliferative and antimicrobial drug treatment.

A hitherto healthy 7-year-old girl underwent antiproliferative and antibiotic treatment owing to the diagnosis of T-cell lymphoma and concomitant bacterial infection. She developed an encephalopathic crisis associated with metabolic acidosis, hyponatraemia and severe hyperhomocysteinaemia and 5-oxoprolinuria. Laboratory tests normalized completely after recovery. Primary defects in glutathione metabolism could be excluded.

Acidosis↗

Massive insulin secretion in response to anaerobic exercise in exercise-induced hyperinsulinism.

Exercise-induced hyperinsulinism (EIHI) is a recently described entity characterised by recurrent episodes of hypoglycaemia induced by physical exercise. The index patient for this disorder and a matched control were subjected to aerobic and anaerobic exercise tests on a cycle ergometer. Aerobic exercise was performed at an intensity of 60% of the respective 4 mmol/l lactate threshold (40 min). Anaerobic exercise with an intensity corresponding to 130% VO2max lead to exertion within 2-3 min and elicited comparable maximal lactate levels in both subjects (10-11 mmol/l). The patient experienced a massive increase in insulin from 34 to 649 mU/l after the anaerobic test, and a lower increase in insulin from 27 to 79 mU/l during the aerobic test. Insulin concentration remained unchanged during both tests in the control. Epinephrine increased in the EIHI patient, which was probably a counterregulatory response to hypoglycaemia. The activity of lactate dehydrogenase of the index patient in isolated leukocytes as well as the response to inhibition of oxamate was normal. The hypothesis of abnormal transport or metabolism of lactate/pyruvate in the beta-cells of patients with EIHI was further supported by the parallel increase of lactate and insulin in this study elicited in particular by anaerobic exercise.

Adult↗

Neurological manifestations in lysosomal storage disorders - from pathology to first therapeutic possibilities.

Lysosomal storage disorders (LSDs) represent a large and heterogeneous group of inborn errors of metabolism with a rare incidence for the single disease but a respectable overall incidence of 1 in 7700 live births. Neurological involvement in LSDs is quite common and in the last years knowledge about the pathology and clinical course of LSDs has been rapidly increased. Enormous progress has been made in the treatment of LSDs by enzyme replacement, substrate reduction and research on gene therapy. This review aims to describe the progress made as well as the present limitations in this particular field of metabolic medicine. It focuses on those storage disorders with major neurological symptoms or complications where treatment is already available (Gaucher disease, Fabry disease, mucopolysaccharidosis type I) or predictable (Pompe disease, MPS II, MPS IV, MPS VI).

Humans↗

Toxic epidermal necrolysis in a premature infant of 27 weeks' gestational age.

Toxic epidermal necrolysis (TEN) is very rare in the newborn period. So far, three cases of TEN in newborns have been reported worldwide. We report a premature infant of 27 weeks' gestational age with TEN at 4 weeks of age. Sepsis treated by an antibiotic combination regimen preceding the TEN was a common feature of all four cases. In our patient, coagulase-negative staphylococci could be identified by blood culture, whereas the previously reported patients suffered from Klebsiella pneumoniae sepsis or Escherichia coli sepsis. Possibly, the uniform association with septic infection in the cases of TEN in the neonatal period might hint at a causal association, thus differentiating it from TEN in older children or adults.

Anti-Bacterial Agents↗

Aplasia cutis congenita of the scalp: how much therapy is necessary in large defects?

AIM: To show that local antibiotic management and a regular inspection of aplasia cutis congenita of the skull can give an excellent result. METHOD: This case reports a girl born with aplasia cutis congenita of the skull presenting with a large aplasia of the epidermis, dermis, subcutaneous tissue and galea, including a bone defect without any additional risk factor, e.g. early eschar formation, cerebrospinal fluid leakage or uncommon dural blood vessels. RESULTS: A primarily conservative treatment with local wet and antibiotic dressings together with a systemic antibiotic treatment for the first 2 wk led to an excellent result and thus prevented untimely operative and peri-operative procedures. CONCLUSIONS: Here we have shown that conservative treatment might be an option, even if the wound diameter is greater than 1 cm(2), to prevent infants from any untimely operative procedure with an elevated operative risk if any additional risk factors are excluded.

Anti-Bacterial Agents↗

Acute metabolic crisis with extreme deficiency of glutathione in combination with decreased levels of leukotriene C4 in a patient with glutathione synthetase deficiency.

A 32-year-old man with glutathione synthetase deficiency developing an acute metabolic crisis is described. During this acute episode, intracellular glutathione content in erythrocytes was below the detection limit (<0.3 mmol/L). Leukotriene C4 in CSF and urinary leukotriene E4 were massively decreased, indicating an imparied synthesis of cysteinyl leukotrienes. Clinical recovery after one week was accompanied by a clear improvement of these biochemical parameters. The highly disturbed glutathione synthesis is postulated to be the reason for a deficient synthesis of cysteinyl leukotrienes, which may at least in part be responsible for the severe clinical symptoms.

Acute Disease↗

S-Acetylglutathione normalizes intracellular glutathione content in cultured fibroblasts from patients with glutathione synthetase deficiency.

Glutathione synthetase deficiency is an autosomal recessive inherited metabolic defect in the gamma-glutamyl cycle. Decreased intracellular glutathione levels are one of the characteristic biochemical features. In this study we show that addition of S-acetylglutathione to the medium raised intracellular glutathione content in cultured fibroblasts from patients with glutathione synthetase deficiency. This has implications for the treatment of patients with this inborn error of metabolism.

Cells, Cultured↗

Changes in blood carnitine and acylcarnitine profiles of very long-chain acyl-CoA dehydrogenase-deficient mice subjected to stress.

BACKGROUND: In humans with deficiency of the very long-chain acyl-CoA dehydrogenase (VLCAD), C14-C18 acylcarnitines accumulate. In this paper we have used the VLCAD knockout mouse as a model to study changes in blood carnitine and acylcarnitine profiles under stress. DESIGN: VLCAD knockout mice exhibit stress-induced hypoglycaemia and skeletal myopathy; symptoms resembling human VLCADD. To study the extent of biochemical derangement in response to different stressors, we determined blood carnitine and acylcarnitine profiles after exercise on a treadmill, fasting, or exposure to cold. RESULTS: Even in a nonstressed, well-fed state, knockout mice presented twofold higher C14-C18 acylcarnitines and a lower free carnitine of 72% as compared to wild-type littermates. After 1 h of intense exercise, the C14-C18 acylcarnitines in blood significantly increased, but free carnitine remained unchanged. After 8 h of fasting at 4 degrees C, the long-chain acylcarnitines were elevated 5-fold in knockout mice in comparison with concentrations in unstressed wild-type mice (P < 0.05), and four out of 12 knockout mice died. Free carnitine decreased to 44% as compared with unstressed wild-type mice. An increase in C14-C18 acylcarnitines and a decrease of free carnitine were also observed in fasted heterozygous and wild-type mice. CONCLUSIONS: Long-chain acylcarnitines in blood increase in knockout mice in response to different stressors and concentrations correlate with the clinical condition. A decrease in blood free carnitine in response to severe stress is observed in knockout mice but also in wild-type littermates. Monitoring blood acylcarnitine profiles in response to different stressors may allow systematic analysis of therapeutic interventions in VLCAD knockout mice.

Acyl-CoA Dehydrogenase, Long-Chain↗

Tetrahydrobiopterin sensitivity in German patients with mild phenylalanine hydroxylase deficiency.

We report the results of tetrahydrobiopterin (BH4) loading tests in 10 German patients with mild phenylketonuria. A significant decline of phenylalanine values after application of BH4 was observed in all but one patients. Molecular genetic analyses revealed a range of different PAH gene mutations. Re-testing of one patient previously reported as non-responsive to BH4 loading showed a moderate response with a higher dose of BH4. Nevertheless, there appear to be kinetic differences in phenylalanine hydroxylation in patients with the same genotype. Non-responsiveness to 20 mg/kg BH4 was observed only in a single patient who was compound heterozygous for the novel mutation R176P (c.527G>C) and the common null-mutation P281L. In summary, our data are in line with recent reports indicating that BH4 sensitivity is a normal feature of most mild forms of PAH deficiency but may be influenced by other factors.

Administration, Oral↗

Silent and symptomatic primary carnitine deficiency within the same family due to identical mutations in the organic cation/carnitine transporter OCTN2.

A family of Turkish origin with primary systemic carnitine deficiency in the father and his two sons is described. In all three individuals, the same homozygous mutation in the OCTN2 gene (R471H) was present and carnitine uptake in fibroblasts was deficient. Whereas one boy became symptomatic with a Reye-syndrome-like picture of hepatopathy and encephalopathy in infancy, the other affected family members remained asymptomatic up to their current ages of 28 and 5 years, respectively.

Adult↗