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Biomedical subjects

U Wendel

Publications and source records attributed to U Wendel.

At least 19 recordsLinked to original sources

Variant maple syrup urine disease (MSUD)--the entire spectrum.

BACKGROUND: In the rare inborn autosomal recessive disorder maple syrup urine disease (MSUD) the accumulation of the branched-chain amino acids (BCAAs) and their metabolic products results in acute and chronic brain dysfunction. About 20% of the patients suffer from non-classic variant forms of MSUD of different clinical severity. AIM: Up to now variant cases have mostly been published as individual case reports; the aim of this study was to give a comparative description of 16 individuals (aged 6-30 years) with different forms of variant MSUD. METHODS: Laboratory data, information on clinical course and treatment as well as aspects of developmental, intellectual and social outcome were obtained retrospectively. Data from in vitro and in vivo methods measuring the degree of enzyme deficiency were included. RESULTS: In addition to a mild phenotype, which fits well into the so-called intermittent variant, and a more severe phenotype with a wider range from a mild variant to an almost classic form, which fits well into the so-called intermediate variant, we assume the existence of an asymptomatic, non-disease variant of MSUD. These clinical phenotypes are not unambiguously differentiable on the basis of biochemical parameters. CONCLUSION: A continuum of clinical severity from asymptomatic to very severe (border to classic) exists in variant MSUD. Apart from newborns with classic MSUD, also those with variant forms benefit from early diagnosis and start of adequate treatment.

Adolescent↗

Maple syrup urine disease: favourable effect of early diagnosis by newborn screening on the neonatal course of the disease.

BACKGROUND: In the rare autosomal recessive disorder maple syrup urine disease (MSUD) the accumulation of the branched-chain amino acids and their metabolic products results in acute and chronic brain dysfunction. Since 2002, MSUD has been part of the extended newborn screening programme in Germany and Austria. Early diagnosis and intervention during the presymptomatic or early symptomatic period should improve the outcome of the patients, which would make the case for screening for MSUD. AIM: The aim of the study was to evaluate the clinical course and alterations of marker metabolites during the first weeks of life in 10 patients with classical MSUD detected by newborn screening (NBS) in comparison with the 10 youngest German patients diagnosed clinically. METHOD: Laboratory data as well as information on clinical course and management during the neonatal period were obtained retrospectively. RESULTS: Patients detected in NBS presented with lower plasma leucine concentrations at confirmation of diagnosis and less severe clinical symptoms. Lowering of leucine to below a critical threshold of 1000 micromol/L was achieved earlier than in patients diagnosed on clinical grounds. CONCLUSION: After diagnosis in screening, treatment can be initiated before the occurrence of severe metabolic decompensation. However, a favourable effect can only be achieved with immediate transfer of the neonate to a metabolic centre for adequate treatment in case of a positive screening result.

Amino Acids, Branched-Chain↗

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↗

Diagnosis of MSUD by newborn screening allows early intervention without extraneous detoxification.

Maple syrup urine disease (MSUD) is a genetic metabolic disorder resulting from the defective activity of branched-chain 2-ketoacid dehydrogenase complex. Due to the metabolic block, high concentrations of the branched-chain amino acids (BCAA) leucine, valine, isoleucine, and allo-isoleucine as well as their corresponding branched-chain 2-keto acids accumulate in patients on a BCAA-unrestricted diet or during episodes with increased protein catabolism. Early diagnosis and management are essential to prevent permanent brain damage. Newborn screening by tandem MS allows for detection of elevated BCAA concentrations in blood in patients with classical MSUD before they show severe encephalopathic symptoms. Here, we report that newborn screening by expanded tandem MS enables for reversing the intoxication in newborns with MSUD within 24-48 h without any need for extraneous detoxification and thus decreasing the risk of brain damage during a particularly vulnerable period.

Amino Acids, Branched-Chain↗

Immunoglobulin isotype profile of tissue transglutaminase autoantibodies is correlated with the clinical presentation of coeliac disease.

Coeliac disease (CD) is characterized by the appearance of autoantibodies against tissue transglutaminase (tTG-Ab). Immunoglobulin A (IgA) tTG-Ab have been described as excellent diagnostic markers, but the Ig subclass distribution and the importance of isotype tTG-Ab have not yet been established. In this study, using newly developed isotype- and subclass-specific radioligand assays, we examined anti-tTG IgA1, IgA2, IgG1, IgG4 and IgE antibodies in 30 symptomatic, untreated patients with CD and 22 subjects suspected to suffer from silent CD (sCD). Among 30 patients with CD, 27 (90.0%) were positive for IgA1 tTG-Ab, whereas only 12 (40.0%) had autoantibodies of the IgA2 subclass (P <0.001). IgG1, IgG4 and IgE tTG-Ab were detected in 17 (56.6%), 0 and 3 (10.0%) individuals, respectively. IgA1 was also the predominant anti-tTG subclass in patients with sCD (n=20, 90.1%), followed by IgA2 antibodies (n=7, 31.8%), IgG1 antibodies (n=4, 18.2%), IgG4 antibodies (n=1, 4.5%) and IgE antibodies (n=1, 4.5%). The comparison between both groups revealed a significantly higher prevalence of IgG1 antibodies in patients with symptomatic CD (P <0.01). In 10 of 11 subjects undergoing an intestinal biopsy, the diagnosis of an sCD was confirmed. In this subgroup, there was a positive association between the presence of IgA2 and IgG1 tTG-Ab and severe (Marsh 2-3) mucosal abnormalities. In conclusion, patients with symptomatic and sCD predominantly have IgA1 tTG-Ab. IgG1 tTG-Ab are associated with symptomatic disease and, when present in patients with sCD, are correlated with a severe mucosal destruction. These data suggest that tTG-Ab subclasses could reflect inflammatory events associated with epithelial destruction.

Adolescent↗

Dysmyelination in the brain of adolescents and young adults with maple syrup urine disease.

Maple syrup urine disease (MSUD) is associated with increased branched-chain amino acids (BCAA), their keto acids (BCKA), and acute or chronic encephalopathy. Aim of treatment is to reduce BCAA and BCKA to prevent or minimize brain dysfunction. We investigated 14 juvenile and adult patients with MSUD by means of cerebral magnetic resonance imaging (MRI) and correlated MRI changes to biochemical control measured as median plasma BCAA concentrations over 6-36 months prior to investigation. Abnormalities consisted of an increased signal in the white matter on T2-weighted images which is compatible with a disturbed water content of the white matter and dysmyelination. Areas affected most commonly were mesencephalon, brain stem, thalamus and globus pallidus; supratentorial lesions seem to be restricted to severe cases. No patient with white matter changes had acute neurological/encephalopathic symptoms indicating that the severity of dysmyelination does not correlate to acute neurotoxicity.

Adolescent↗

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↗

Renal excretion of galactose and galactitol in patients with classical galactosaemia, obligate heterozygous parents and healthy subjects.

The age dependence of galactose and galactitol excretion was assessed in overnight-fasted galactose-1-phosphate uridyltransferase-deficient patients under dietary treatment (ages 4-34 years; n = 51), obligate heterozygous parents (ages 25-71 years; n = 49) and healthy subjects (ages 3-58 years; n = 215). Urine concentrations were analysed by stable-isotope dilution gas chromatography mass spectrometry. There was considerable interindividual variability. The intraindividual variation, however, was not age-dependent and was rather low. Excretion estimates were calculated from the creatinine-related concentrations using weight-, age- and sex-related creatinine excretion rates. Experimental evidence is presented underscoring the problems inherent in random sampling and substantiating the primary endogenous origin of galactose and galactitol in postabsorptive urine samples. Age-dependent excretion estimates were best fitted to a simple growth-related model assuming an exponential decrease with age until adulthood. According to the model, mean postabsorptive galactose and galactitol excretion in healthy subjects was similar and decreased exponentially from about 1.2 micromol/kg body weight per day in infants to about 0.2 micromol/kg body weight per day in adults. Excretion in heterozygotes was normal. In galactosaemic patients, galactose excretion was in the normal range. Galactitol excretion, however, was enhanced over 50-fold and decreased from a mean estimate of about 64 micromol/kg body weight per day in infants to about 23 micromol/kg body weight per day in adults. The results are discussed with respect to the significance of galactose and galactitol excretion for whole-body galactose removal and with respect to the applicability of urinary galactitol analysis for metabolic monitoring in galactosaemia.

Adolescent↗

Cardiomyopathy and pericardial effusion in infancy point to a fatty acid b-oxidation defect after exclusion of an underlying infection.

Pericardial effusion and cardiomyopathy in the first year of life point to a fatty acid b-oxidation defect as underlying disease after exclusion of infectious causes. We report two patients with the early-onset, cardiac phenotype of very long-chain acyl-CoA dehydrogenase (VLCAD) deficiency; in one patient, severe pericardial effusion was the predominating symptom. Because specific noninvasive treatment is available in fatty acid b-oxidation defects that reverses cardiomyopathy and pericardial effusion, early diagnosis is essential to adjust therapy accordingly.

Acyl-CoA Dehydrogenase, Long-Chain↗

Maple syrup urine disease: mutation analysis in Turkish patients.

Maple syrup urine disease (MSUD), the most frequently occurring organic acidaemia in Turkey, is caused by a deficiency of the activity of branched-chain keto acid dehydrogenase enzyme (BCKAD) complex. Mutation analysis of the E1alpha, E1beta, and E2 genes of the BCKAD complex in 12 Turkish MSUD patients yielded three disease-specific mutations and a polymorphism in the E1alpha gene, none in the E1beta gene and one mutation in the E2 gene. Among them, three missense mutations (Q80E, C213Y, T106M) and the F280F polymorphism occurring in the E1alpha gene and the splice site mutation (IVS3 - 1G>A) in the E2 gene were novel. Three of the missense mutations and the splicing mutation occurred homozygously and caused classical MSUD. One patient carried the splicing mutation homozygously and the T106M mutation in the heterozygous state; this patient is the first case having simultaneously two different mutations in two different genes in the BCKAD complex. IVS3 - IG>A splicing mutation detected on the E2 gene causes deletion of the first 14 bp of exon 3 in the mutant mRNA extending between 190 and 204 nt. The deletion spans the cleavage point between mitochondrial targeting and lipoyl-bearing site of the E2 protein.

3-Methyl-2-Oxobutanoate Dehydrogenase (Lipoamide)↗

General screening for celiac disease is advisable in children with type 1 diabetes.

The association between celiac disease (CD) and diabetes mellitus type 1 is well known. Only about one-third of all patients with CD are diagnosed in childhood as a result of typical gastrointestinal symptoms or growth retardation. To evaluate the feasibility of CD screening in diabetic children, we tested autoantibodies to tissue transglutaminase (tTGA) in all children with type 1 diabetes from our pediatric department during a 12-month period. In antibody-positive cases, we analyzed the clinical presentation and offered a duodenal biopsy to confirm the diagnosis and grade the severity of the inflammatory process. Of 205 children, 13 (6.3 %) were tTGA-positive. In seven of eight children who agreed to perform a biopsy, CD typical histological signs were detected (Marsh 1: n = 1, Marsh 3: n = 6). In three patients with confirmed disease, symptoms (iron deficiency, recurrent abdominal pain) remained undiscovered up to time of screening (latent form); in four, the disease was asymptomatic (silent form). Since clinical symptoms are mostly mild or absent in spite of severe signs of duodenal inflammation, we recommend tTGA screening in all diabetic children. This strategy may allow the identification of patients in an early stage in respect of prevention of long-term complications.

Adolescent↗

Proton MR spectroscopy of the lumbar spine in patients with glycogen storage disease type Ib.

Glycogen storage disease type Ib is an autosomal recessive inherited metabolic disorder resulting from deficiency of the microsomal glucose-6-phosphatase enzyme system. Six patients (three of which were treated with granulocyte colony stimulating factor) suffering from this disease were examined using image guided localized proton magnetic resonance (MR) spectroscopy. The relative signal intensities of water and lipid protons of the lumbar spine were determined. Comparison was made with iliac crest biopsies in the glycogen storage disease type Ib patients and localized proton MR spectroscopic values of the lumbar spine obtained by thirteen healthy volunteers. The data demonstrate for the first time that hypercellularity and myeloid hyperplasia in subjects with glycogen storage disease type Ib due to functionally impaired leucocytes results in a strongly increased water proton signal with a very low or absent lipid signal in localized proton MR spectroscopy. Upon granulocyte colony stimulating factor treatment, the water proton signal in the lumbar spine is not further augmented.

Adolescent↗

Modelling the phenylalanine blood level response during treatment of phenylketonuria.

A vast body of phenylketonuria (PKU) patient monitoring data is deposited in clinical files and, after having served the actual needs, has remained there largely unused. We propose a kinetic model that will allow continued analysis of such data for further elucidation of the patient's metabolic phenotype and phenylalanine (Phe) disposal characteristics. Our PKU model of a single compartment with the input of alimentary Phe and two outputs--(1) first-order Phe conversion to tyrosine and acidic metabolites, and (2) zero-order Phe usage for net protein synthesis--has been developed with the graphics-oriented ModelMaker (then Cherwell Scientific Ltd, Oxford, UK) software package. The corresponding differential and integrated rate equations are presented to enable transfer of the model to equation-oriented simulation packages. The model offers a possible explanation for discrepancies in some genotype-phenotype data.

Child↗

[Signal changes of the bone marrow in MRI under long-term treatment with granulocyte colony-stimulating factors].

PURPOSE: Recurrent infections in patients with glycogen storage disease (GSD) type Ib resulting from an associated neutropenia are frequently treated with granulocyte colony-stimulating factors (G-CSF). The aim of this study was to evaluate the changes occurring in bone marrow by magnetic resonance imaging (MRI) in these patients. MATERIAL AND METHODS: The distal femoral and tibial bones of six patients with GSD Ib were evaluated by MRI. Four of these patients were treated with G-CSF for at least 3.9 to a maximum of 8.2 years (mean 5.8 years). The imaging sequences encompassed spin-echo as well as short-time inversion recovery sequences. 4 of the 6 patients had bone marrow aspirations. RESULTS: The patients who had undergone therapy with G-CSF showed a marked increase in signal strength in STIR sequences which encompassed the entire medullar cavity. In T1-weighted images these areas were hypointense. Biopsies obtained from these patients showed a bone marrow hypercellularity. The patients without G-CSF therapy showed the same signal intensity changes but with a more discrete and localized pattern in the metaphyseal cavities. CONCLUSION: In subjects with GSD Ib, an increased myelopoetic activity of the bone marrow which is intensified under long-term treatment with G-CSF can be demonstrated by MRI.

Adolescent↗

Infantile presentation of the mtDNA A3243G tRNA(Leu (UUR)) mutation.

Mitochondrial DNA (mtDNA) disorders are clinically very heterogeneous, ranging from single organ involvement to severe multisystem disease. One of the most frequently observed mtDNA mutations is the A-to-G transition at position 3243 of the tRNA(Leu (UUR)) gene. This mutation is often related to MELAS syndrome. However, not all patients with the A3243G mutation share the same clinical disease expression and, on the contrary, patients clinically exhibiting MELAS syndrome may have other mtDNA mutations. Here we describe two patients with a very early infantile presentation of disease associated with the A3243G mutation. Patient 1 presented with hypotonia, feeding difficulties and failure to thrive (FTT) at the age of 3 months. Laboratory investigations showed persistent hyperlactic acidemia, elevated lactate/pyruvate ratios and elevated alanine concentrations in blood. Developmental delay was progressive and he developed cardiomyopathy and seizures. Death occurred at the age of 3.5 years. Patient 2 was born prematurely and had persistent, severe lactic acidosis from birth on. Moderate biventricular hypertrophy was seen on ultrasound studies of the heart and, suffering from progressive lactic acidosis, he died at the age of 13 days. Because of the rarity of this very early presentation, we searched the literature for other infantile cases associated with the A3243G mutation and found 8 additional ones. In infants presenting with lactic acidosis/hyperlactic acidemia, failure to thrive, hypotonia, seizures and/or cardiomyopathy, mtDNA mutational analysis, also for the disease entities, usually only observed in juveniles or adults is warranted.

Acidosis, Lactic↗

Normal clinical outcome in untreated subjects with mild hyperphenylalaninemia.

ABSTRACT There is international consensus that patients with phenylalanine (Phe) levels <360 microM on a free diet do not need Phe-lowering dietary treatment whereas patients with levels >600 microM do. Clinical outcome of patients showing Phe levels between 360 and 600 microM in serum on a free nutrition has so far only been assessed in a small number of cases. Therefore, different recommendations exist for patients with mild hyperphenylalaninemia. We investigated in a nationwide study 31 adolescent and adult patients who persistently displayed serum Phe levels between 360 and 600 microM on a normal nutrition with a corresponding genotype. Because of limited accuracy of measurements, Phe levels should be looked on as an approximation, but not as an absolute limit in every instance. In addition to serum Phe levels, the assessment program consisted of comprehensive psychological testing, magnetic resonance imaging of the head, (1)H magnetic resonance spectroscopy, and genotyping. We found a normal intellectual (intelligence quotient, 103 +/- 15; range, 79-138) and educational (school performance and job career) outcome in these subjects as compared with healthy control subjects (intelligence quotient, 104 +/- 11; range, 80-135). Magnetic resonance imaging revealed no changes of cerebral white matter in any patient, and (1)H magnetic resonance spectroscopy revealed brain Phe levels below the limit of detection (<200 microM). In the absence of any demonstrable effect, dietary treatment is unlikely to be of value in patients with mild hyperphenylalaninemia and serum Phe levels <600 microM on a free nutrition, and should no longer be recommended. Because of a possible late-onset phenylketonuria, Phe levels of untreated patients should be monitored carefully at least during the first year of life. Nevertheless, problems of maternal phenylketonuria should still be taken into account.

Adolescent↗

Whole-body L-leucine oxidation in patients with variant form of maple syrup urine disease.

Whole-body L-leucine oxidation was assessed in patients with maple syrup urine disease of different severity using oral L-[1-(13)C]leucine bolus tests (38 micromol/kg body weight). Residual whole-body L-leucine oxidation was estimated on the basis of the 3-h kinetics of (13)CO(2) exhalation and (13)C-isotopic enrichment in plasma 4-methyl-2-oxopentanoate using a noncompartmental mathematical approach. In four patients with classical maple syrup urine disease (two females and two males; mean age, 13 +/- 5 y; range, 7--17 y), L-leucine oxidation was too low to be measurable. In two females (aged 11 and 15 y) with a severe variant form of the disease, whole-body L-leucine oxidation was reduced to about 4% of control. In six milder variants (two females and four males; mean age +/- SD, 15 +/- 10 y; range, 6--34 y), the estimates for residual whole-body L-leucine oxidation ranged from 19 to 86% (59 +/- 24%) of control and were substantially higher than the residual branched-chain 2-oxo acid dehydrogenase complex activities in the patients' fibroblasts (10--25% of control). Possible mechanisms are considered that might contribute to a comparatively high residual in vivo L-leucine oxidation in (mild) variant maple syrup urine disease.

Adolescent↗