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Biomedical subjects

A Roscher

Publications and source records attributed to A Roscher.

At least 19 recordsLinked to original sources

Unidirectional steady state rates of central metabolism enzymes measured simultaneously in a living plant tissue.

The unidirectional steady state reaction rates of several enzymes and metabolic fluxes of distinct processes were measured simultaneously in hypoxic maize root tips using two-dimensional phosphorus NMR exchange spectroscopy. A single spectrum monitors ATP synthesis and hydrolysis as well as the activities of four enzymes involved in key pathways of central metabolism: UDP-glucose pyrophosphorylase, phosphoglucomutase, hexose-phosphate isomerase, and enolase. The corresponding unidirectional reaction rates and net metabolic fluxes were calculated from spectral intensities. This method provides a unique picture, at enzyme resolution, of how metabolism reacts in a concerted fashion to changes in external parameters such as temperature and oxygen concentration. By increasing hypoxia via an increase in temperature, we measured the expected increase in glycolysis through enolase activity while total ATP synthesis settled. At the same time, we observed a net flux through phosphoglucomutase and UDP-glucose pyrophosphorylase toward carbohydrate synthesis. This result is discussed in relation to the current hypothesis on the turnover of cell walls and sucrose. This reaction also produces a net flux of pyrophosphate, which is needed by pyrophosphate:fructose-6-phosphate 1-phosphotransferase to work as a glycolytic enzyme.

Adenosine Triphosphate

External quality assessment of molecular biology-based methods used in laboratories of clinical chemistry and human genetics.

The Reference Institute of Bioanalysis of the German Society of Clinical Chemistry has performed the first external assessment of molecular genetics methods used in medical diagnosis. The following procedures were tested: (I) DNA preparation from whole blood, (II) PCR amplification using "standard" primers, and (III) submarine agarose gel electrophoresis. Out of 50 participants, 45 returned samples for evaluation.

Chemistry, Clinical

Association of X-linked adrenoleukodystrophy with HLA DRB1 alleles.

Inflammatory demyelination in the central nervous system in the childhood cerebral phenotype of X-linked adrenoleukodystrophy (X-ALD) bears resemblance to that of multiple sclerosis. With a view to an association of HLA class II genes, specifically HLA-DRB1 subtype DRB1*15 to multiple sclerosis we investigated the HLA class II DR haplotype in 29 unrelated X-ALD patients including 17 childhood cerebral phenotype patients. Our results did not show an association of DRB1*15 and X-ALD, but disclosed a significant association of HLA DRB1*16 alleles and X-ALD in general. This finding suggests that in addition to the X-chromosomal ALD gene an autosomal gene linked to the HLA class II region is involved in the pathogenesis of X-ALD. This gene should affect a pathomechanism common to all ALD variants, such as defective peroxisomal metabolism of very long chain fatty acids.

Adrenoleukodystrophy

Bradykinin induces translocation of the protein kinase C isoforms alpha, epsilon, and zeta.

Bradykinin exerts a broad spectrum of cellular effects on different tissues. It is believed that these effects are predominantly mediated by the recently cloned B2 receptor. The mechanism of post-receptor signal transduction is not known in detail. Involvement of protein kinase C (PKC) was suggested and activation of the classical PKC isoforms alpha and beta was recently demonstrated. The aim of the present study was to investigate whether the B2 receptor also activates new (delta, epsilon) and atypical (zeta) PKC isoforms. To investigate this, chinese hamster ovary (CHO) cells, stably transfected with human B2 receptor, were used. In these cells the PKC isoforms alpha, delta, epsilon and zeta were detected by immunoblotting with specific antibodies. To monitor hormone-induced PKC translocation plasma membranes were prepared. Stimulation of the cells with bradykinin resulted in a rapid (30-60 s) translocation of the PKC isoforms alpha, epsilon, and zeta. Translocation of PKC delta was not detected. The effect of bradykinin was reduced by simultaneous addition of the receptor antagonist HOE 140, a bradykinin-related decapeptide. The data show that the B2 receptor in this cell model is able to activate, in addition to the classical PKC isoform alpha, the new PKC isoform epsilon and the atypical PKC isoform zeta. To test whether these effects are as well observed in a non-transfected cell, the experiments were repeated in human foreskin fibroblasts which naturally express high levels of B2 receptors. In this cell system similar results on PKC alpha, epsilon, and zeta were observed, suggesting that all three PKC isoforms are involved in signal transduction of the B2 receptor.

Animals

Thromboxane A2 analogue U 46619 enhances tumour cell proliferation in HeLa cells via specific receptors which are apparently distinct from TXA2 receptors on human platelets.

In this study, we have demonstrated for the first time by using U 46619, a stable analogue of thromboxane A2 (TXA2), that TXA2 exerts a cell proliferative effect on HeLa cells which is mediated by specific TXA2 receptors, inasmuch as the cell proliferation could be dose-dependently suppressed by TXA2 receptor antagonist BM 13177. The investigation of the phospholipase C pathway by U 46619 and prostaglandin H2 (PGH2) in the presence and absence of BM 13177 in cells with or without pertussis toxin pretreatment, as well as radioligand receptor binding studies, revealed that, in contrast to TXA2 receptors on human platelets, where TXA2 and PGH2 share the same receptor binding sites, HeLa cells possess distinct receptors for TXA2 and PGH2.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Sparse hair and multiple endocrine disorders in two women heterozygous for adrenoleukodystrophy.

We describe two sisters (40 and 42 years old) heterozygous for adrenoleukodystrophy who have multiple endocrine disorders. In addition to the characteristic neurological symptoms, the younger patient has Addison disease and primary hypothyroidism attributable to autoimmune thyroiditis, and the older one has Graves disease. Both patients have loss of body hair and sparse scalp hair, which have not been reported previously in women heterozygous for adrenoleukodystrophy. After the institution of glucocorticoid replacement therapy, the younger sister, who has adrenal insufficiency, has shown unexpected neurological improvement.

Addison Disease

Clinical significance of prostacyclin and thromboxane in cancer of the female breast and genital tract.

Studies investigating the role of thromboxane A2 and prostacyclin in cancer of the female breast and genital tract are reviewed. Whereas thromboxane A2 was found to promote the tumour growth and metastasis, prostacyclin exerted a protective effect in maintaining vascular and platelet homeostasis. Thus, monitoring of prostacyclin and thromboxane levels in plasma and urine of cancer patients may be essential for the evaluation of tumour growth and metastasis. Of all modulators of thromboxane and prostacyclin biosynthesis, nafazatrom was found to exhibit promising results for the treatment of advanced breast cancer, although its use in the routine therapy is questionable at this stage.

Breast Neoplasms

Hartnup syndrome, progressive encephalopathy and allo-albuminaemia. A clinico-pathological case study.

Clinical, biochemical, neuropathological and neurochemical findings in a case of Hartnup syndrome are reported. After initially normal development, the affected girl suffered progressive neuropsychiatric decline with statomotor and mental retardation and intractable seizures and died at the age of 2 years. Postmortem neuropathological and neurochemical investigations showed a combination of extensive neuronal degeneration and cerebral dysmyelination. Pathogenetic hypotheses and the relationship between neuropsychiatric disease and Hartnup syndrome are discussed. Additionally, a fast type bisalbuminaemia present in the girl and her mother is described.

Amino Acids

Loss of cytosolic 15-lipoxygenase activity in A23187-stimulated human leukocytes: involvement of a translocation process?

We focused our study on the subcellular redistribution of 15-lipoxygenase in human leukocytes challenged with A23187 and arachidonic acid (AA). We found that in cytosolic fractions of stimulated cells the 15-lipoxygenase (15-LO) activity, measured as 15-HETE, was 65% less than in controls. However, no activity was found in cell membranes. This effect was complete within 2 min of incubation and was correlated in a dose dependent manner to exogenously added AA. No significant difference in cytosolic distribution of 15-LO activity was observed when cells were stimulated in presence of various concentrations of Ca++. Immunoblot analysis showed that the loss of cytosolic 15-LO activity registered after challenging with A23187 was associated with a concomitant loss of the enzyme content in the cytosol, suggesting the possibility of a translocation process. Neither the 15-LO activity nor the enzyme was, however, found in the cell membrane under our present experimental conditions. But, addition of protease inhibitors showed a slight increase of 15-LO activity in the membrane fraction. Despite the small effect, this may indicate a translocation of 15-LO following challenge of human leukocytes with A23187.

Adult

Influence of plasmalogen deficiency on membrane fluidity of human skin fibroblasts: a fluorescence anisotropy study.

The influence of plasmalogen deficiency on membrane lipid mobility was determined by measuring fluorescence anisotropy of trimethylammoniumdiphenylhexatriene (TMA-DPH) and diphenylhexatrienylpropanoylhydrazylstachyose (glyco-DPH) inserted in the plasma membranes of human skin fibroblasts deficient in plasmalogens. The cells used were from patients affected with cerebrohepatorenal (Zellweger) syndrome (CHRS) or rhizomelic chondrodysplasia punctata. Their plasmalogen content (0-5% of total phospholipid) is significantly reduced compared with that of control cells from healthy donors (13-15% of total phospholipid) or of CHRS fibroblasts supplemented with the plasmalogen precursor, hexadecylglycerol. Plasmalogen-deficient cells consistently showed lower fluorescence anisotropies of membrane-bound DPH fluorophores corresponding to higher membrane lipid mobilities as compared to controls. However, very similar lipid mobilities were found for sonicated aqueous dispersions of phospholipids extracted either from CHRS or control cells. Therefore, the differences observed with living cells are not due to differences in the overall physical properties of the membrane lipid constituents. Other phenomena such as lipid asymmetry and/or plasmalogen-protein interactions may be responsible for the effects observed in the biomembranes.

Cell Membrane

Plasmalogen biosynthesis in the diagnosis of peroxisomal disorders.

Fibroblasts of patients suffering from peroxisomal disorders such as chondrodysplasia punctata (rhizomelic type), neonatal adrenoleukodystrophy, Zellweger syndrome and control fibroblasts were used for the evaluation of a procedure suitable for pre- and postnatal diagnosis. This technique is based on the detection of impaired peroxisomal plasmalogen synthesis by means of a double substrate, double labelling technique using 14C-labelled hexadecanol and 3H-labelled hexadecylglycerol as precursors for peroxisomal and microsomal plasmalogen synthesis. Pathological cells are characterized by a decreased utilization of hexadecanol, thus resulting in an increased 3H/14C ratio within plasmalogens. Sensitivity and reproducibility of this method were improved by changing both the chromatographic conditions and the calculation of the diagnostic parameters.

Adrenoleukodystrophy

The effect of D-(+)-glucosamine on levels of free N-acetylneuraminic acid and UDP-N-acetylhexosamines in infantile sialic acid storage disease (ISSD) fibroblasts.

An impairment in the regulation of N-acetylneuraminic acid (NANA) biosynthesis might potentially contribute to accumulation of free NANA in fibroblasts of patients with sialic acid storage disease (ISSD). By the use of a glucosamine loading test an increase in uridine-diphosphate-N-acetyl-hexosamines (UDP-HexNAc) but not in free NANA was found. NANA biosynthesis therefore appears to be under normal regulatory control in ISSD.

Fibroblasts

[Sweat collection and osmometry in the diagnosis of cystic fibrosis: a new method].

Two methods of sweat testing (Gibson and Cooke's vs. sweat osmolality) for the diagnosis of cystic fibrosis were compared in 33 subjects (26 healthy subjects and 7 patients aged 23 days to 28 years). Sweat was collected with a "macroduct"-sweat collection-system, osmolality was measured with the Wescorvapor-pressure osmometry. In a further 18 subjects (13 healthy, 5 patients) electrolytes were determined from filter-paper and the Vescor-macroduct-system. The osmolality in sweat of healthy subjects and patients with CF differed significantly (p less than 0.001). In healthy subjects maximum osmolality was 198 mmol/kg (means 158 +/- 21.3 mmol/kg), in patients with CF 283.9 +/- 10.2 mmol/kg. Assessment of sweat osmolality is a highly reliable procedure for confirming the diagnosis of CF provided borderline-values between 180 and 220 mmol/kg are reevaluated with the conventional filter-paper assay.

Cystic Fibrosis

Very long chain fatty acids in genetic peroxisomal disease fibroblasts: differences between the cerebro-hepato-renal (Zellweger) syndrome and adrenoleukodystrophy variants.

Very long chain fatty acids were investigated by gas chromatography in fibroblasts of patients with genetic peroxisomal diseases (cerebro-hepato-renal (Zellweger) syndrome, childhood adrenoleukodystrophy, adrenomyeloneuropathy, neonatal adrenoleukodystrophy) and of controls. Concentrations of C 26:0 were increased to about the same extent in all disorders investigated. C 26:1 concentrations, on the other hand, were considerably elevated only in the cerebro-hepato-renal syndrome. In all control, adrenoleukodystrophy, and adrenomyeloneuropathy cases the C 22:0 concentration was higher than the respective C 26:0 concentration; the reverse was found in the cerebro-hepato-renal syndrome. These differences seem to reflect different impairment of peroxisomes in the cerebro-hepato-renal syndrome and adrenoleukodystrophy variants, respectively. Additional experiments to characterize C 26:1 by thin layer chromatography, gas chromatography and mass spectrometry revealed the presence of two straight-chain C 26:1 isomers with similar fragmentation patterns.

Abnormalities, Multiple