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Biomedical subjects

H Böhles

Publications and source records attributed to H Böhles.

At least 19 recordsLinked to original sources

[Diagnostic difficulties in encephalitis and glioma].

BACKGROUND: Glial neoplasms can infiltrate the central nervous system extensively with relative preservation of the underlying neuronal architecture. The differential diagnosis between cerebral glioma and infective lesions can be very difficult to distinguish by MRI only. CASE REPORT: We report a 7 year old boy with recurrent vomiting, fever, weakness, abdominal pain and diarrhea. Besides an expressive speech disturbance the neurological examination showed no pathological findings. The sonography revealed discrete hepatomegaly and small pericardial effusion. MRI showed a diffuse mesencephalic and pontine swelling without contrast medium enhancement possibly pointing to an infective lesion. Microbiological, serological and metabolic investigations of blood and CSF were normal. After initial improvement associated with antibiotic, antiviral and dexamethasone treatment the process relapsed progessively. The 1H-MR-spectroscopy showed elevated cholin and decreased N-acetyl-aspartate levels suspicious for a proliferating process. Brain biopsy revealed anaplastic astrocytoma (WHO III). Despite of radiation and chemotherapy the tumordisease deteriorated and the patient died because of progressive brainstem infiltration one year later. CONCLUSION: This case report shows that cerebral glioma can mimick infective brain disease and that MR-spectroscopy is an important non-invasive tool in this differential diagnosis.

Aspartic Acid↗

High-dose intravenous vitamin C is not associated with an increase of pro-oxidative biomarkers.

OBJECTIVE: High-dose vitamin C therapy might mediate beneficial clinical effects by counteracting reactive oxygen species. However, concerns are raised whether this approach might provoke diametrical (ie pro-oxidative) effects. The objective was to determine ascorbyl free radical (AFR) concentrations and potential variables of pro-oxidative damage. DESIGN: Crossover study; six healthy males received daily infusions of 750 or 7500 mg vitamin C for six consecutive days. Fasting concentrations of vitamin C and AFR were determined daily. On day 1, concentrations of vitamin C and AFR were measured at 0.25, 0.5, 1, 2, 4 and 8 h post infusion. Plasma concentrations of thiobarbituric acid-reactive substances (TBARS), tocopherol and urine concentrations of 8-oxoguanosine were determined on days 1 and 6. RESULTS: Kinetic studies on day 1 showed that concentrations of vitamin C and AFR displayed parallel dose- and time-dependent kinetics and elimination was highly efficient. Vitamin C and AFR fasting concentrations on days 2-6 were slightly above the baseline, suggesting new, stable steady states. TBARS decreased in both groups, whereas tocopherol and 8-oxoguanosine concentrations remained unchanged. CONCLUSION: Kinetics of AFR largely depend on plasma vitamin C concentrations and AFR is eliminated efficiently. Our data do not support induction of pro-oxidative effects in healthy volunteers given intravenous high-dose vitamin C. SPONSORSHIP: Pascoe Pharmazeutische Präparate GmbH, Giessen, Germany.

Adult↗

Stereoselective analysis of 2-hydroxysebacic acid in urine of patients with Zellweger syndrome and of premature infants fed with medium-chain triglycerides.

The chiral metabolite 2-hydroxysebacic acid (2-HS) is considered to be an important diagnostic marker for peroxisomal disorders. The pathway of formation of 2-HS, excreted in increased amounts in patients with peroxisomal diseases, is not absolutely clear. Moreover, there is no information about the enantiomeric distribution of 2-HS in human urine. Here, we describe the stereodifferentiation of 2-HS in urine samples of nine patients with Zellweger syndrome (ZS), and for the first time in urine samples of premature infants fed a medium-chain triglyceride (MCT)-containing diet. Using enantioselective multidimensional gas chromatography-mass spectrometry, an increased excretion of 2R-HS was observed in all investigated ZS patients. 2-HS was also present in urine samples of premature infants fed MCT. Analogously to the ZS patients, a dominant 2R-HS excretion in the urine samples of the premature infants was identified. The formation of 2-HS is expected to result from the same or similar pathways as described for ZS patients. Additionally, we determined the absolute configuration of urinary 3-hydroxysebacic acid (3-HS) in the cases investigated. The enantioselective analysis provides further information for the diagnosis and treatment of patients with impaired peroxisomal fatty acid oxidation. Further insight into the metabolic origin and the biochemical pathway leading to these urinary metabolites is provided.

Child, Preschool↗

Hyperinsulinaemic hypoglycaemia--leading symptom in a patient with congenital disorder of glycosylation Ia (phosphomannomutase deficiency).

A male infant is described who presented with persistent hyperinsulinaemic hypoglycaemia, responding to diazoxide treatment. However, this therapy was discontinued because of seizures as a consequence of disturbed water and electrolyte balance. Glucose homeostasis could only be maintained by subtotal pancreatectomy, which was performed at 3 8/12 years of age. He developed a severe thrombosis, whereon a congenital disorder of glycosylation (CDG) was suspected. An abnormal transferrin isoelectric focusing pattern was found and the diagnosis of CDG Ia was confirmed by enzyme and molecular genetic analysis. This is the first patient with phosphomannomutase deficiency (McKusick 601785) described presenting with severe hyperinsulinaemic hypoglycaemia.

Child, Preschool↗

Screening for an AIRE-1 mutation in patients with Addison's disease, type 1 diabetes, Graves' disease and Hashimoto's thyroiditis as well as in APECED syndrome.

OBJECTIVE: Autoimmune polyendocrinopathy-candidiasis-ectodermal dystrophy (APECED) is a rare systemic autoimmune disorder of monogenic and autosomal-recessive inheritance. To date, 29 APECED causing mutations have been identified in the responsible gene AIRE-1, coding for a regulator of transcription. The aim of this study was to examine whether mutations in AIRE-1, in their heterozygous form, predispose to the more common isolated autoimmune endocrinopathies Addison's disease, type 1 diabetes mellitus, Graves' disease and Hashimoto's thyroiditis. DESIGN: Patients with isolated autoimmune endocrine disorders as well as healthy controls were analysed for two of the most common AIRE-1 mutations, mutation R257X in exon 6 and a 13-bp deletion in exon 8. Mutations were detected by polymerase chain reaction based techniques. PATIENTS: In total, 726 individuals were investigated for mutation R257X. Subjects comprised patients with Addison's disease, IDDM, Graves' disease and Hashimoto's thyroiditis. With regard to the 13 bp deletion we could screen 91 patients with Addison's disease. In addition, six patients with the APECED syndrome including one family were analysed for both mutations. RESULTS: Out of the 12 alleles in APECED patients six contained either mutation R257X or the 13 bp deletion, confirming that these mutations prevail in Europe. R257X was found in one subject with Hashimoto's thyroiditis in its heterozygous form. The 13 bp deletion was not detected in any subject with Addison's disease. CONCLUSIONS: The two studied AIRE-1 mutations are so rare in the general population that they can not contribute to susceptibility for the more common isolated autoimmune disorders.

Addison Disease↗

Enantioselective analysis of ketone bodies in patients with beta-ketothiolase deficiency, medium-chain acyl coenzyme A dehydrogenase deficiency and ketonemic vomiting.

Enantioselective multidimensional gas chromatography-mass spectrometry (enantio-MDGC-MS) is a valuable tool for the differentiation of enantiomers from complex matrices when present in trace amounts. The separation of chiral compounds provides further information on the diagnosis of diseases, and on normal and abnormal biochemical pathways. The formation of the normal urinary metabolite 3-hydroxy-2-methylbutanoic acid (HMBA), excreted in abnormally high amounts in beta-ketothiolase deficiency, is not absolutely clarified. Metabolic pathways involving this metabolite are isoleucine catabolism, as well as presumably beta-oxidation of fatty acids and ketogenesis. The latter two pathways are distinguishable in their enantioselectivity. Enantioselective analysis gives further information on interfering metabolic pathways and the selectivity of the enzyme(s) forming HMBA. Different ratios of the stereoisomers of HMBA in control urine samples and patients with beta-ketothiolase deficiency were detected. Analogous to HMBA urinary 3-hydroxybutanoic acid (HBA) was investigated in several diseases. The formation of HBA and HMBA is expected to result from the same or similar metabolic pathways. Differences in the enantiomeric ratio of HMBA may originate from the enantioselectivity of different enzyme systems.

Acetyl-CoA C-Acyltransferase↗

Stereodifferentiation of 3-hydroxyisobutyric- and 3-aminoisobutyric acid in human urine by enantioselective multidimensional capillary gas chromatography-mass spectrometry.

The chiral metabolites 3-hydroxyisobutyric acid (HIBA) and 3-aminoisobutyric acid (AIBA) are intermediates in the pathways of L-valine and thymine and play an important role in the diagnosis of the very rare inherited metabolic diseases 3-hydroxyisobutyric aciduria (McKusick 236975) and methylmalonic semialdehyde dehydrogenase deficiency (McKusick 603178-MSDD). Until now only a few approaches have been made in enantioselective analysis of HIBA and AIBA and for that reason very little information is available on enantiomeric ratios of these metabolites in man. This paper reports on the simultaneous stereodifferentiation of HIBA and AIBA in human urine as corresponding N(O)-methoxycarbonyl methyl esters by derivatization with methyl chloroformate (MCF) using enantioselective multidimensional gas chromatography-mass spectrometry (enantio-MDGC/MS) with heptakis-(2, 3-di-O-methyl-6-O-tert.-butyl-dimethylsilyl)-beta-cyclodextrin as the chiral stationary phase. During this investigation urine samples from different patients and healthy controls were analyzed in order to reveal characteristic enantiomeric patterns of these metabolites. A trend of dominating R-HIBA excretion in the control urine samples investigated was observed. An excretion of more than 80% S-HIBA was found in the urines of two patients with ketonemic vomiting. There are some clues indicating a possible renal reabsorbtion of S-HIBA similar to those of S-AIBA. Furthermore, there was a significant finding with regard to the enantiomeric distribution of AIBA in a patient with MSDD - a markedly increased excretion of the S-enantiomer in contrast to the other samples. Using the enantiomeric ratios of AIBA, a previously investigated case of benign methylmalonic aciduria (bMMA) could be excluded from the diagnosis of MSDD.

Aldehyde Oxidoreductases↗

Nitric oxide modulates expression of matrix metalloproteinase-9 in rat mesangial cells.

UNLABELLED: Nitric oxide modulates expression of matrix metalloproteinase-9 in rat mesangial cells. BACKGROUND: High-output levels of nitric oxide (NO) are produced by rat mesangial cells (MCs) in response to proinflammatory cytokines such as interleukin-1beta (IL-1beta) and tumor necrosis factor-alpha (TNF-alpha) by the inducible isoform of NO synthase (iNOS). We tested modulatory effects of NO on the expression and activities of matrix metalloproteinases-9 and -2 (MMP-9 and MMP-2), respectively. Temporal and spatial expression of these MMPs and their specific inhibitors, the tissue inhibitors of metalloproteinases (TIMPs), seems to be critical in the extensive extracellular matrix (ECM) remodeling that accompanies sclerotic processes of the mesangium. Methods and Results. Using the NO donors S-Nitroso-N-acetyl-D,L-penicillamine (SNAP) and DETA-NONOate, we found strong inhibitory effects of NO mainly on the IL-1beta-induced MMP-9 mRNA levels. NO on its own had only weak effects on the expression of MMP-9 and MMP-2. The addition of the NOS inhibitor NG-monomethyl L-arginine (L-NMMA) dose dependently increased steady-state mRNA levels of cytokine-induced MMP-9, suggesting that endogenously produced NO exerts tonic inhibition of MMP-9 expression. MMP-9 activity in conditioned media from MCs costimulated with IL-1beta and NO donor contained less gelatinolytic activity than media of cells treated with IL-1beta alone. Exogenously added NO did not alter gelatinolytic activity of MMP-9 in cell-free zymographs. The expression levels of TIMP-1 were affected by NO similarly to the expression of MMP-9. CONCLUSION: We conclude that NO modulates cytokine-mediated expression of MMP-9 and TIMP-1 in rat MCs in culture. Our results provide evidence that NO-mediated attenuation of MMP-9 gelatinolytic activity is primarily due to a reduced expression of MMP-9 mRNA, and not the result of direct inhibition of enzymatic activity.

Animals↗

Effect of carnitine on muscular glutamate uptake and intramuscular glutathione in malignant diseases.

Abnormally low intramuscular glutamate and glutathione (GSH) levels and/or a decreased muscular uptake of glutamate by the skeletal muscle tissue have previously been found in malignant diseases and simian immunodeficiency virus (SIV) infection and may contribute to the development of cachexia. We tested the hypothesis that an impaired mitochondrial energy metabolism may compromise the Na+-dependent glutamate transport. A randomized double-blind clinical trial was designed to study the effects of L-carnitine, i.e. an agent known to enhance mitochondrial integrity and function, on the glutamate transport and plasma glutamate level of cancer patients. The effect of carnitine on the intramuscular glutamate and GSH levels was examined in complementary experiments with tumour-bearing mice. In the mice, L-carnitine treatment ameliorated indeed the tumour-induced decrease in muscular glutamate and GSH levels and the increase in plasma glutamate levels. The carnitine-treated group in the randomized clinical study showed also a significant decrease in the plasma glutamate levels but only a moderate and statistically not significant increase in the relative glutamate uptake in the lower extremities. Further studies may be warranted to determine the effect of L-carnitine on the intramuscular GSH levels in cancer patients.

Adult↗

Maternal plasma homocysteine, placenta status and docosahexaenoic acid concentration in erythrocyte phospholipids of the newborn.

UNLABELLED: The enhanced transport of long-chain polyunsaturated fatty acids, in particular docosahexaenoic acid (22:6 omega-3) (DHA), to the fetus is a placental function important for adequate membrane phospholipid formation and herewith decisive for the quality of fetal CNS myelination. A compromised placental function is correlated with signs of vascular pathology. As elevated plasma total homocysteine (tHcy) concentrations are considered an independent risk for premature occlusive vascular disease, the influence of maternal plasma tHcy concentrations on placental function was indirectly studied, determining the DHA content in erythrocyte membrane phospholipids of the newborn. A total of 60 unselected pregnant women (age range: 21 to 39 years) were investigated at delivery. Gestational age ranged from 26 to 41 weeks. Prior to delivery a placental ultrasound scan was performed. Complete sets of data could be obtained from 43 mothers and their offspring. tHcy concentrations were determined in the plasma of cord and maternal blood. The fatty acid pattern of erythrocyte membrane phospholipids was determined in the mothers and their newborns. Z-scores of the birth weights ranged from -3.4 to 2.1 and of the placental weights from -3.8 to 4.7. The mean maternal plasma tHcy concentration was 6.29 +/- 3.34 micromol/l ranging from below our limit of detection up to 15 micromol/l. These maternal concentrations were correlated with those of their infants (r = 0.71; P < 0.0001). The tHcy concentrations were significantly higher in mothers with pregnancies complicated by gestosis or placental calcifications. The Z-scores of birth weights as well as placental weights showed a significant negative correlation with maternal plasma tHcy concentrations. The mean DHA percentage of total fatty acids in erythrocyte phospholipids was 3.2 +/- 2.2% in the mothers and 3.4 +/- 2.3% in their newborns. Most importantly the maternal plasma tHcy levels and the erythrocyte phospholipid DHA concentrations of their offspring were significantly correlated (r = -0.51; P < 0.0003). CONCLUSION: In this study, total homocysteine concentrations were elevated in the plasma of pregnant women with signs of placental vasculopathy. Maternal plasma total homocysteine concentrations were positively correlated with erythrocyte phospholipid docosahexaenoic acid of their offspring and may be an indicator for the integrity of placental vascular function. The nutritional status as well as predisposing genetic factors of pregnant mothers need to be investigated more thoroughly.

Adult↗

4,5-dimethyl-3-hydroxy-2[5H]-furanone (sotolone)--the odour of maple syrup urine disease.

Maple syrup urine disease is an autosomal recessive inherited disorder of branched-chain amino acid metabolism due to deficiency of the branched-chain alpha-keto acid dehydrogenase complex. The disease was originally named after the characteristic sweet aroma, reminiscent of maple syrup, present in the body fluids of affected patients. Until now, the substance responsible for the odour has not been positively identified. Using enantioselective multidimensional gas chromatography-mass spectrometry (enantio-MDGC-MS), we could demonstrate that 4,5-dimethyl-3-hydroxy-2[5H]-furanone (sotolone), a well-known flavour impact compound present in fenugreek and lovage, was present in urine from seven patients with maple syrup urine disease. Urine samples from healthy control persons lacked sotolone. We have shown that sotolone is responsible for the characteristic odour of maple syrup urine disease and, since maple syrup also contains sotolone, the naming of this disease appears to be correct.

Furans↗

Hypoleptinaemia in patients with anorexia nervosa and in elite gymnasts with anorexia athletica.

Leptin, the product of the ob-gene, is specifically released by adipocytes. In addition to its metabolic function it seems to affect the feedback-mechanisms of the hypothalamic-pituitary-gonadal-axis. We studied 13 female juvenile elite gymnasts with anorexia athletica (AA) and 9 female patients with anorexia nervosa (AN) regarding the relation between leptin, fat stores, and the reproductive hormone levels. Leptin levels in females with anorexia nervosa (Tanner stage B4 [median]; mean age: 17.8 +/- 1.7 years) were low (2.9 +/- 2.7 microg/L), and were related to body mass index (BMI) (r = 0.71; p = 0.03) and percentage body fat mass (r = 0.78; p = 0.01). Leptin levels of the elite gymnasts were even more decreased (1.2 +/- 0.8 microg/L) caused by the low amount of fat stores. Leptin correlated with BMI (r= 0.77; p = 0.004) and the percentage body fat mass (r = 0.6; p = 0.04). In elite gymnasts leptin levels correlated with CA showing an age-dependent increase (r= 0.59; p = 0.04). Oestradiol was secreted at a low level in both groups (AN: 25.6 +/- 17.4 microg/L; AA: 24.4 +/- 13.5 microg/L). A delay in menarche and a retarded bone maturation occurred in AA. Our results clearly show that leptin levels are low in restrained eaters. Leptin levels represent the fat stores in the body and play a permissive role for female pubertal development. There is evidence that the mechanisms leading to a dysregulation of the reproductive-axis in patients with AN are comparable with those leading to delayed puberty in juvenile elite gymnasts with AA. This implies that AN and AA are overlapping groups and AA can lead to the development of AN.

Adolescent↗

Enantioselective multidimensional gas chromatography-mass spectrometry in the analysis of urinary organic acids.

Enantioselective multidimensional gas chromatography-mass spectrometry is a valuable tool for the enantioselective analysis of compounds from complex matrices. Samples are separated initially on a precolumn and selected substances then transferred on-line to a main-column coated with suitable chiral stationary phase for enantioselective analysis with subsequent mass selective detection. In this paper the method is used as an adjunct to urinary organic acid analysis to provide information in patients with suspected inborn errors of metabolism. Lactic acid, alpha-hydroxyisocaproic acid, 3-phenyllactic acid and 3-(4-hydroxyphenyl)-lactic acid are separated in a single run. In addition, the enantioselective analysis of pyroglutamic acid is presented. D-Enantiomers of amino acids and alpha-hydroxycarboxylic acids derived from amino acids, point to a bacterial origin whereas the L-enantiomer is predominantly of endogenous origin. Therefore the enantiomeric ratio of chiral metabolites is an important parameter for the understanding of metabolic processes.

Carboxylic Acids↗

Reflections about possible nutritional supplements in infant milk formula.

The composition of infant milk formula intends to mirror breast milk as close as possible. However, there are a variety of substances, like amino acids, fatty acids, polyamines, nucleotides, oligosaccharides, functional proteins, hormones, vitamins, and minerals, which are attributed effects in special situations. A concept is proposed to develop problem oriented "supplementation packages" for infant milk formula.

Amino Acids↗