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J Ekblom

Publications and source records attributed to J Ekblom.

At least 37 records · Page 2Linked to original sources

Inhibitors of catecholamine metabolizing enzymes cause changes in S-adenosylmethionine and S-adenosylhomocysteine in the rat brain.

Previous studies have shown that the biochemical changes that occur in parkinsonism are associated with disturbances in methylation reactions. Therefore, our hypothesis was that MAO and COMT inhibitors, which inhibit the metabolism of dopamine, might affect the methylation reaction. In the present study, we analyzed levels of S-adenosylmethionine (SAM) and S-adenosylhomocysteine (SAH) in brain homogenates from rats which had received a one-week treatment with tolcapone or phenelzine, inhibitors of COMT and MAO, respectively. Tolcapone treatment caused an increase in the levels of SAM (130% as compared with control animals, p < 0.001). In animals treated with phenelzine, the SAM levels were 78% of those of the controls (p < 0.05). SAH levels were slightly increased (115% as compared with controls, p < 0.05) in the phenelzine group, while they were unchanged in the tolcapone treated animals. Treatment with tolcapone decreased the catalytic activity of methionine adenosyltransferase (MAT) (from 15.4 +/- 1.6 to 11.3 +/- 1.4 pmol mg-1 min-1, p < 0.0001) while phenelzine treatment had no significant effect. In addition the transmethylation ratio (SAM/SAH) were significantly increased with tolcapone (120%, p < 0.05) and decreased with phenelzine (71%, p < 0.05) as compared to the controls. The essential finding of this paper was that brain SAM levels were reduced by MAO inhibition and enhanced by COMT inhibition.

Animals↗

Cytoprotection by deprenyl and tolcapone in a cell culture model of cerebral ischaemia.

Foetal rat brain aggregation cultures were exposed to a single episode of anoxia and hypoglycaemia for 30 min. Lactate dehydrogenase specific activity was estimated in the culture medium after ischaemia as a marker of lost cell integrity. Release of lactate dehydrogenase was most prominent during the first 24 hr period after the ischaemic damage, then it gradually declined. Immediately after ischaemic exposure, the cultures were treated with different concentrations of L-deprenyl or tolcapone. Significantly lower amounts of lactate dehydrogenase leaked into the culture medium during the first 24 hr after the ischaemic episode in cultures treated with deprenyl or tolcapone (1-100 nM). These results suggest that deprenyl and tolcapone may reduce cell damage after ischaemia, at doses causing enzyme inhibition.

Animals↗

Transmethylation reactions and autoradiographic distribution of vitamin B12: effects of clioquinol treatment in mice.

The catastrophic epidemic of subacute myelo-optic neuropathy (SMON) affected Japan around 1970 with thousands of victims. The cause was attributed to high doses of locally acting oxyquinolines. It has been speculated that oxyquinoline derivatives of the clioquinol type can disturb the retention of vitamin B12 through chelation of Co2+. In the present paper, possible effects of clioquinol on the uptake and tissue distribution of [57Co]-cyanocobalamin have been studied in mice. In vivo experiments showed markedly decreased accumulation of radiolabelled vitamin B12 in the kidney and skin in animals that were pre-treated with clioquinol. The chloroform:water partition coefficients for [57Co]-cyanocobalamin in the presence or absence of clioquinol were also determined. No statistically significant alterations in the partition coefficient for [57Co]-cyanocobalamin in the presence of clioquinol was evident, indicating that clioquinol does not bind cobalt. In addition, transmethylation reactions in the CNS in mice treated with clioquinol were studied. Specific activities of methionine adenosyltransferase, and S-adenosylhomocysteine levels were not affected. In contrast, clioquinol treatment caused a significant increase in the levels of S-adenosylmethionine in the brain. The data of the present study show that clioquinol treatment can affect the accumulation of vitamin B12 in the kidney and the skin but not in the brain. These results do not support the hypothesis that clioquinol causes its damage to the nervous system by a direct chemical interaction with vitamin B12.

Animals↗

Levels of L-methionine S-adenosyltransferase activity in erythrocytes and concentrations of S-adenosylmethionine and S-adenosylhomocysteine in whole blood of patients with Parkinson's disease.

In the present study, levels of S-adenosylmethionine (SAM) and S-adenosylhomocysteine (SAH) in whole blood as well as L-methionine S-adenosyltransferase (MAT) activity in erythrocytes were assayed in a series of 20 patients with Parkinson's disease and 12 healthy control subjects. A significant difference was found with regard to SAM levels between patients and controls, with the detected levels being 383.1 +/- 41.5 nM for the parkinsonian patients and 680.6 +/- 30.9 nM for the controls. With regard to SAH, we found no difference between the groups. The catalytic activity of MAT was increased by 30% in patients compared to controls, with the Vmax for methionine being 17.9 +/- 3.7 and 13.9 +/- 2.2 pmol/mg/h, respectively.

Antiparkinson Agents↗

Platelet monoamine oxidase activity in relation to alleles of dopamine D4 receptor and tyrosine hydroxylase genes.

Human personality characteristics and vulnerability to psychopathology are to a large extent dependent upon genetic factors which have yet to be fully defined. The allele distribution of the dopamine D4 receptor (D4DR) and thrombocyte monoamine oxidase (trbc MAO) activity have both been associated with personality traits which are supposedly related, namely 'sensation seeking' according to Zuckerman and 'novelty seeking' according to Cloninger, respectively. In this report, the D4DR allele distribution and trbc MAO activity were studied in 31 psychiatric patients and 21 control subjects. Trbc MAO activity is a biochemical marker of personality that has been shown to be under strong genetic influence. However, no association between the D4DR alleles and trbc MAO could be observed in this material. To our knowledge, this is the first report comparing these two markers, and based upon the results obtained, we speculate that they may be connected with different types of overlapping personality characteristics. The allele distribution of the tyrosine hydroxylase (TH) gene was also determined. TH is the rate-limiting enzyme in the biosynthesis of catecholamines, and it is believed to be involved in different kinds of psychopathology. No covariation between TH gene alleles and trbc MAO activity or D4DR alleles was observed in this material.

Alleles↗

Characterization and partial purification of human monoamine oxidase-B expressed in Escherichia coli.

Monoamine oxidases (MAO-A and MAO-B) are enzymes that play a key role in the degradation of endogenous and dietary monoamines. A full-length cDNA of the B-type of MAO, isolated from a human liver cDNA library, was cloned into a prokaryotic expression vector (pET11c). Escherichia coli which was transfected with the recombinant plasmid expressed an insoluble protein product with the expected molecular weight (65 kDa). However, in the inclusion body fraction, where most of the recombinant protein was present, no MAO activity was observed. In contrast, the membrane fraction of the bacterial lysates expressed catalytic activity as estimated by oxidative deamination of beta-phenylethylamine and tyramine. The active enzyme protein was solubilized with Triton X-100 and partly purified (80-fold) on a DEAE-Sepharose column. This enzyme activity showed properties very similar to those of human brain and platelet MAO-B. Moreover, a single band of the expected molecular size was observed on an immunoblot. The peak fraction from the DEAE-Sepharose separation was further purified on a tyramine-Sepharose column, yielding a highly purified enzyme (190-fold), visible as a band on a sodium dodecyl sulfate-containing polyacrylamide gel.

Blood Platelets↗

Monoamine oxidase gene transcription in human cell lines: treatment with psychoactive drugs and ethanol.

In the present study transcriptional activities has been measured with different fragments of the 5'-flanking sequence of the human monoamine oxidase (MAO) genes linked to human growth hormone which was used as a reporter gene. SH-SY5Y neuroblastoma cells and 1242 MG glioma cells were compared under basal conditions as well as after treatments with different drugs. Under basal conditions, the relative reporter activities of the different promoter fragments were similar for both cell lines. No changes in promoter activities, were observed when cells were treated with L-deprenyl, lithium chloride or raclopride. In contrast, increases (2-3-fold) in both reporter gene expression and enzyme activity were observed after ethanol treatment of cells transfected with MAO-B fragments. Gel retardation analysis showed that ethanol caused changes in transcription factor binding to the MAO-B core promoter in both the SH-SY5Y and 1242 MG cell lines in a cell-type specific fashion.

Alcohol Drinking↗

Double blind cross over trial with deprenyl in amyotrophic lateral sclerosis.

In this paper we present results from a double blind cross over trial with deprenyl, a selective and irreversible monoamine oxidase-B (MAO-B) inhibitor, in 10 patients suffering from amyotrophic lateral sclerosis. The patients were randomised in such a way that half of the patients started with the active drug and half with the placebo treatment. Each patient was given 10 mg deprenyl (eldepryl, 10 mg tablets) per day for 12 weeks and then placebo for the same length of time. There was a drug free period of 12 weeks between the courses. The neurological status of the patients were evaluated every six weeks by using Norris, spinal and bulbar scores and it was observed that all cases deteriorated in their clinical status during the 36 weeks of the controlled study. MAO-B activity in blood platelets was completely inhibited during treatment with deprenyl. In the preliminary analysis performed so far, no obvious retardation in the progress of the disease could be observed with deprenyl treatment.

Amyotrophic Lateral Sclerosis↗

Monoamine oxidase-B in motor cortex and spinal cord in amyotrophic lateral sclerosis studied by quantitative autoradiography.

The distribution of MAO-B was studied by using an in vitro quantitative autoradiographical method in the post-mortem spinal cord and motor cortex from control and ALS cases. 3H-L-deprenyl was used as a radiotracer. Sections stained with thionine were used to count glial cells. In both control and ALS spinal cords, high density of 3H-L deprenyl binding was observed around the central canal, in the substantia gelatinosa and other grey matter regions. In the ALS cases a pronounced and statistically significant increase of MAO-B was observed in the corticospinal tract, the motor neuron areas and in the ventral white matter. An increase in the number of glial cells in spinal cords from ALS cases was also evident. Moreover, the concentration of MAO-B was highly correlated with glial cell counts in thionine stained sections in various regions of the spinal cord, both in controls and ALS cases. An elevated level of 3H-L-deprenyl binding, in ALS cases, was observed in all the individual laminae of the pre- and post-central gyri of the cerebral cortex. There was no difference in MAO-B concentration between the two groups in the occipital cortex. A substantial increase in the concentration of MAO-B was observed in the white matter of ALS cases. Reactive gliosis has been shown to be associated with neurodegenerative disorders and experimental lesions in animals. The most likely explanation for the increase of MAO-B in ALS and in other neurodegenerative disorders seems to be that the increase is a consequence of the reactive gliosis associated with these disorders.

Amyotrophic Lateral Sclerosis↗

Reactive gliosis and monoamine oxidase B.

A double-staining method was applied to cryosections of human spinal cord from patients who died with amyotrophic lateral sclerosis (ALS) and corresponding controls in order to investigate cellular content of monoamine oxidase B (MAO-B). 3H-L-Deprenyl emulsion autoradiography was used in combination with histochemical methods for the detection of astrocytes and monocytes/microglia. In the ALS spinal cords an increased number of astrocytes as well as an increased content of MAO-B in reactive species of astrocytes was demonstrated. No significant 3H-L-deprenyl binding was observed in cells derived from the mesoderm, e.g. monocytes or microglia. Furthermore, a sub-population of reactive astrocytes that contained low levels of MAO-B was observed in spinal sections. These findings were further substantiated by studies performed on primary astrocyte cultures.

Amyotrophic Lateral Sclerosis↗

Insulin-like growth factor-1 receptors in human spinal cord: changes in amyotrophic lateral sclerosis.

Neurotrophic factors are important for neuronal survival and maintenance in the adult nervous system. The regional distribution of insulin-like growth factor-1 (IGF-1) receptors in human spinal cords from controls and amyotrophic lateral sclerosis (ALS) patients was studied by immunohistochemistry and quantitative autoradiography. When comparing 125I-IGF-1 binding in the different spinal levels of normal spinal cord the same distribution pattern was found in which the binding was highest in the central canal > dorsal horn > ventral horn > white matter. In the ALS cases although a general upregulation of IGF-1 receptors was observed throughout the spinal cord, significant increases were observed in the cervical and sacral segments compared to controls. IGF-1 receptor immunoreactivity showed a similar pattern to that for 125I-IGF-1 binding, with immunoreactivity being found in the gray matter of the spinal cord and enhanced immunoreactivity occuring in ALS patients compared to controls. In agreement with the distribution of IGF-1 receptors, IGF-1 immunoreactivity was found within the gray matter of the spinal cord. The cartography of IGF-1 receptors in the normal spinal cord as well as the change of these receptors in diseased spinal cord may be of importance in future treatment strategies of ALS.

Aged↗

Monoamine oxidase-B in astrocytes.

In the present report we describe the astrocytic localization and content of monoamine oxidase-B (MAO-B) by means of a 3H-L-deprenyl emulsion autoradiography in primary cultures of rat astrocytes, in cryosectioned astrocytoma surgical specimen, and in cryosections of human spinal cords from patients dying in amyotrophic lateral sclerosis (ALS) and controls. The occurrence of MAO-B enzyme protein depends on the degree of cellular differentiation as demonstrated by studies on astrocytes in primary cultures analyzed at two different stages of maturation. Highly differentiated cells exhibited high relative enzyme concentration whereas glioblasts lacked or showed very low contents of MAO-B enzyme. This was further substantiated by studies performed on human astrocytoma tissue using 3H-L-deprenyl emulsion autoradiography in combination with immunohistochemical detection of glial fibrillary acidic protein (GFAP). Regional increases of MAO-B concentration were found in ALS lumbar sections with quantitative 3H-L-deprenyl autoradiography. On the basis of results obtained from double staining for GFAP and MAO-B, the increase in MAO-B seemed to be due to an increased number of astrocytes as well as an increased content of MAO-B in reactive species of astrocytes. A cell culture model has been used that produces cells with morphology and GFAP-content similar to reactive cells. These astrocytes exhibited high relative content of the MAO-B enzyme protein. In the light of the presented data, taking into account the finding that a subpopulation of reactive cells contained low levels of MAO-B, a heterogeneity among reactive astrocytes was observed.

Amyotrophic Lateral Sclerosis↗

Differential increases in catecholamine metabolizing enzymes in amyotrophic lateral sclerosis.

The activity of three catecholamine-metabolizing enzymes, monoamine oxidase type A and type B (MAO-A and MAO-B) as well as catechol-O-methyltransferase (COMT), were estimated in homogenates of human spinal cord using radiometric assays. The enzyme activities were determined in postmortem spinal cord tissue from controls and cases with amyotrophic lateral sclerosis (ALS). The activity of MAO-A was below the limit of detectability in both controls and ALS cases. The activities of MAO-B and COMT were evenly distributed at the various spinal levels. The MAO-B activity was substantially elevated in ALS spinal homogenates, whereas only a slight, but not statistically significant, increase in COMT activity was observed. A significant correlation between COMT and MAO-B activities was observed for controls. However, this covariation was not apparent for the ALS cases. These results suggest that the two enzyme proteins are regulated by more complex mechanisms in the spinal cord in amyotrophic lateral sclerosis than simple general increases caused by elevated astroglial cell numbers. In addition, the MAO-A, MAO-B, and COMT activities were estimated in spinal cords from rats treated with the selective MAO-B inhibitor L-deprenyl, a drug with putative neuroprotective effects in neurodegenerative disorders. After 3 weeks of L-deprenyl treatment (0.25 mg/kg/day, sc), the spinal MAO-A and MAO-B activities were decreased by 50 and 80%, respectively. In contrast, the COMT activity was not altered by L-deprenyl administration.

Aged↗

Immunotargeting with monoclonal cytokeratin 8 antibodies of human urothelial cancer transplanted to nude mice.

The possibility of using cytokeratin antibodies for the radioimmunolocalization of urinary bladder cancer was studied. A monoclonal murine IgG antibody was raised against cytokeratin 8 and labelled with iodine-125; normal murine IgG was used for control purposes. The urothelial cancer cell line RT4 was transplanted into immunodeficient nude mice. The anti-cytokeratin 8 antibody was administered intraperitoneally and its uptake in the tumour and other organs was analyzed with a computerized gamma camera. Optimal scintigraphic visualization occurred 11 days after antibody administration. The tumour/blood ratio of the specific antibody was 5.64 (+/- 5.01 SD) on day 11, compared with 0.73 (+/- 0.35 SD) in the control. Autoradiography demonstrated antibody uptake preferentially in viable sections of the tumour. The antibody uptake is presumed to be the result mainly of binding to the released cytokeratin in and around cells lysed during natural cellular death. The monoclonal murine anti-cytokeratin antibody is of potential interest in studies aimed at improving the clinical staging of urinary bladder cancer.

Animals↗

Monoamine oxidase-B in motor cortex: changes in amyotrophic lateral sclerosis.

The occurrence of monoamine oxidase-B in cerebral cortex and white matter in brains from three patients with the diagnosis of amyotrophic lateral sclerosis and three controls was quantified by means of an autoradiographical method. [3H]L-Deprenyl, an irreversible and selective monoamine oxidase-B inhibitor, was used as ligand and the autoradiographs were analysed by computer-assisted densitometry. In both amyotrophic lateral sclerosis and control cerebral cortex, lamina I showed the highest, laminae II and III intermediate, laminae IV, V and VI the lowest [3H]L-deprenyl binding. White matter showed about one-third of the binding in the cortex. Amyotrophic lateral sclerosis cases showed significantly higher binding of [3H]L-deprenyl in all the cortex laminae of the pre- and postcentral gyri. There was no difference in the binding between the amyotrophic lateral sclerosis cases and the controls in area 7 of the occipital cortex, an area which is relatively spared in amyotrophic lateral sclerosis.

Aged↗