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Biomedical subjects

A Carlsson

Publications and source records attributed to A Carlsson.

At least 163 records · Page 9Linked to original sources

Catechol metabolites in the cerebrospinal fluid as possible markers in the early diagnosis of Parkinson's disease.

This paper is a preliminary report of work aiming to elucidate the possible use of 5-S-cysteinyl metabolites of catechols in the cerebrospinal fluid as markers in the early diagnosis of Parkinson's disease (PD). The rationale for this approach is the hypothesis that this disorder is caused by a failure of antioxidative mechanisms to prevent the excessive autoxidation of dopamine and other catechols that yields highly reactive and cytotoxic semiquinones and quinones. 5-S-cysteinyl adducts of these quinones have been detected in human brains, analyzed postmortem, and appear to be formed at an increased rate in elderly individuals, who show an increased loss of dopaminergic neurons.

3,4-Dihydroxyphenylacetic Acid↗

Possibility of heat sterilization of liposomes.

Several kinds of liposomes were sterilized at 121 degrees C for 20 min. They tended to aggregate after heat sterilization (HS) in saline, while no aggregation was observed in an isotonized sugar or polyol solution. The dispersions containing egg phosphatidylcholine (EggPC) with a high peroxide value (POV) turned slightly yellowish after HS. This color change was prevented by using EggPC with a low POV, hydrogenated EggPC (H-EggPC) or dipalmitoylphosphatidylcholine (DPPC). Nitrogen gas bubbling at neutral pH also prevented the color change, but vitamin E did not. The particle size of the EggPC liposomes extruded through a 0.4 micron membrane filter did not change significantly after HS, whereas the H-EggPC or DPPC liposomes extruded through a 0.8 micron membrane filter tended to be reduced in size. On this change the type of medium had a considerable influence. The anionic 6-carboxyfluorescein leaked from the negatively charged liposomes (EggPC/cholesterol (Chol)/egg phosphatidylglycerol) during HS, while no leakage was observed from the positively charged liposomes (EggPC/Chol/stearylamine) not only during HS but also during a long period of storage. It was suggested that sterilization of liposomes by heating was practicable as well as that by filtration, if the liposomes were prepared as follows: the charged liposomes made of lipids with low POV's were dispersed in a sugar or polyol solution adjusted to nearly pH 6.5, where the amount of dissolved oxygen was minimized. An ionic water-soluble drug had to be encapsulated in the oppositely charged liposomes.

Color↗

[Monoamine research--a productive field of particular importance in neuroscience].

Modern monoamine research had its origin in work done in the 1950s and 1960s to elucidate the modes of action of the major groups of psychotropic drugs, since when it has played a spearhead role in neuroscience. For example, it has contributed much to the introduction of the chemical neurotransmission concept in CNS-research. We are now about to reap the harvest of more than three decades of intensive and successful basic research, in the form of more efficacious and safer drugs for the treatment of certain important mental and neurological disorders, and the formulation of research strategies focused on prophylaxis. The paper reviews this development.

Animals↗

Increased dopamine release by the autoreceptor antagonist (+)-AJ 76 is Ca2(+)-dependent.

The effects of the preferential autoreceptor antagonist (+)-AJ 76 on dopamine release and metabolism were studied in the brain microdialysis model. The Ca2+ dependence of the effects of (+)-AJ 76 and d-amphetamine were compared. We found that (+)-AJ 76 increased the release and metabolism of dopamine and that the release was saturable. The release of dopamine by (+)-AJ 76 was dependent on extracellular Ca2+. However, the effects of (+)-AJ 76 on dopamine metabolism were independent of extracellular Ca2+. The effects of d-amphetamine on dopamine release and metabolism were independent of Ca2+. We conclude that the dopamine released by (+)-AJ 76 is dependent on neuronal impulse flow and that the dopamine released is of vesicular origin. The effects on dopamine metabolism and release may be exerted via different mechanisms. In contrast, the release and metabolism of dopamine by d-amphetamine were independent of impulse flow and extracellular Ca2+. We suggest that (+)-AJ 76 and d-amphetamine release dopamine from different pools.

3,4-Dihydroxyphenylacetic Acid↗

Acute changes in dopamine levels in rat adrenal glands after administration of dopamine receptor agonists and antagonists.

The study was aimed at in vivo pharmacological identification of the possible dopamine (DA) receptor(s) involved in changes of the DA level in rat adrenal glands. Previous work in this laboratory has shown that the DA level is largely controlled by the rate of catecholamine synthesis. The rats were killed by decapitation after various periods of drug administration and the catecholamine content of adrenal glands and forebrain was measured by high-performance liquid chromatography with electrochemical detection. Administration of the DA D-1 + D-2 receptor agonist, apomorphine, induced a statistically significant increase in DA levels in the adrenal glands. The same effect was noted after administration of the DA D-2 receptor agonist, quinpirole. The DA D-2 receptor antagonist, raclopride, blocked the apomorphine-induced increase in adrenal DA levels but had no effect per se on these levels. The DA D-1 receptor agonist, SKF 38393, and the DA D-1 receptor antagonist, SCH 23390, did not have any effect on apomorphine-induced changes in DA content in the adrenals. The DA elevating effect of the DA D-2 receptor agonist, quinpirole, in the adrenals was completely blocked by the DA D-2 receptor antagonist, domperidone. This compound does not cross the blood-brain barrier readily and is thus supposed to act mainly on peripheral tissues. In support of this, the dose of domperidone used did not affect brain DOPAC levels. Our data, together with observations reported in the literature, indicate that the adrenal medulla contains DA receptors of the D-2 subtype, which are capable of controlling the DA level in rat adrenal glands.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Interactions between glutamatergic and monoaminergic systems within the basal ganglia--implications for schizophrenia and Parkinson's disease.

Recent animal experiments suggest that dopamine plays a less crucial role than formerly supposed in the regulation of psychomotor functions. This is illustrated by the finding that even in the almost complete absence of brain dopamine, a pronounced behavioural activation is produced in mice following suppression of glutamatergic neurotransmission. This paper discusses the possibility that a deficient activity within the corticostriatal glutamatergic/aspartergic pathway may be an important pathophysiological component in schizophrenia, and that glutamatergic agonists may be beneficial in the treatment of this disease. In addition, it is suggested that glutamatergic antagonists may be valuable supplements in the treatment of Parkinson's disease.

Animals↗

Pre- and postsynaptic dopaminergic activities of indolizidine and quinolizidine derivatives of 3-(3-hydroxyphenyl)-N-(n-propyl)piperidine (3-PPP). Further developments of a dopamine receptor model.

Pre- and postsynaptic dopaminergic activities of a series of indolizidine and quinolizidine analogues of 3-(3-hydroxyphenyl)-N-(n-propyl)piperidine (3-PPP) have been studied. The pharmacological data have been interpreted in terms of a previously reported model for interactions with dopamine pre- and postsynaptic D2-receptors and molecular mechanics (MM2(85] calculated geometries and conformational energies. The model has been further developed with respect to the receptor topography in the vicinity of the nitrogen binding site. In particular, a novel spatial orientation of the important "propyl cleft" has been proposed. This cleft is suggested to be located mainly above a plane through the receptor-bound substrate. The biologically active agonist and antagonist conformations of the enantiomers of 3-PPP have been reinvestigated.

3,4-Dihydroxyphenylacetic Acid↗

Synthesis and pharmacology of the enantiomers of cis-7-hydroxy-3-methyl-2-(dipropylamino)tetralin.

The enantiomers of cis-7-hydroxy-3-methyl-2-(dipropylamino)tetralin (3) have been synthesized and evaluated for activity at central dopamine (DA), 5-hydroxytryptamine, and norepinephrine (NE) receptors, by use of biochemical and behavioral tests in rats. In addition, the affinities of the compounds for striatal [3H]spiroperidol and [3H]N-propylnorapomorphine binding sites were determined. The absolute configuration of the enantiomers was determined by X-ray diffraction of (+)-3. The pharmacological effects of both enantiomers are complicated, but (2R,3S)-7-hydroxy-3-methyl-2-(dipropylamino)tetralin [(-)-3] produced biochemical effects in vivo similar to those elicited by classical DA D2-receptor antagonists.

5-Hydroxytryptophan↗

Schizophrenia: a subcortical neurotransmitter imbalance syndrome?

Recent animal experiments suggest that glutamate plays a fundamental role in the control of psychomotor activity. This is illustrated by the finding that even in the virtually complete absence of dopamine, a marked behavioral activation is produced in mice following suppression of glutamatergic neurotransmission. This article discusses the possibility that a deficient activity within the cortico-striatal glutamatergic pathway is an important pathophysiological component in some cases of schizophrenia and that glutamatergic agonists may prove beneficial in this disorder. In a broader perspective, schizophrenia may be looked upon as a syndrome induced by a neurotransmitter imbalance in a feedback-regulated system, where dopamine and glutamate play a crucial role in controlling arousal and the processing of signals from the outer world to the cerebral cortex via the thalamus.

Animals↗

Very high blood pressure in acute stroke.

In a study sample consisting of 388 unselected, consecutive acute stroke patients, 27 with systolic blood pressure greater than or equal to 200 mmHg and diastolic blood pressure greater than or equal to 115 mmHg were compared with the other 361 patients. The patients with high blood pressure were younger (65 vs. 73 years) and much more often had a history of hypertension (78 vs. 42%). Cardiac and vascular hypertensive manifestations were more frequent, particularly when only those patients with a history of hypertension were compared in the two groups. Alcohol abuse was mentioned in a higher proportion of hypertensives in the summaries of their medical records. No definite conclusions could be drawn with regard to the size and location of the brain lesions. Clinical symptoms did not differ between the groups, neither did the proportion of patients who could be discharged from hospital immediately. Mortality was higher in the high blood pressure group (30 vs. 14%, P less than 0.05). Thus the characteristics of patients with very high blood pressure were: younger age, much more frequent and severe previous hypertension. Alcohol abuse might be an important factor. The type, size and location of the brain lesion itself could not be statistically related to the high blood pressure, but very large lesions, particularly haemorrhages, might be associated with a reactive blood pressure response.

Age Factors↗

An improved HPLC-electrochemical detection method for measuring brain levels of 5-S-cysteinyldopamine, 5-S-cysteinyl-3,4-dihydroxyphenylalanine, and 5-S-cysteinyl-3,4-dihydroxyphenylacetic acid.

Brain levels of the 5-S-cysteinyl adducts of 3,4-dihydroxyphenylalanine (DOPA), 3,4-dihydroxyphenylacetic acid (DOPAC), and dopamine were determined in several mammalian species. The low levels of the compounds and the risk of artifacts during sample preparation necessitated rather profound modifications of the assaying method. The refined method has made it possible to present more accurate data than those previously reported from this laboratory. The occurrence of low levels of the 5-S-cysteinyl adducts in dopamine-rich brain areas, but not in cerebellum, is indirect evidence of in vivo autoxidation of DOPA, DOPAC, and dopamine. The products generated during catechol autoxidation, including quinones and reduced forms of oxygen, are known to be potentially cytotoxic.

Animals↗

In vivo autoxidation of dopamine in guinea pig striatum increases with age.

Catechols are known to react readily with molecular oxygen to form the corresponding quinones together with reduced oxygen species. These products have been shown to be toxic in in vivo and in vitro systems. 5-S-Cysteinyl adducts of catechols are believed to be formed through the spontaneous reaction between quinones and thiol-containing compounds, like cysteine and glutathione (GSH). Thus, the brain levels of these adducts probably indicate the autoxidation rate of catechols in vivo. In the present study, the striatal concentrations of 5-S-cysteinyldopamine (5-S-cysteinyl-DA), 5-S-cysteinyl-3,4-dihydroxyphenylalanine (5-S-cysteinyl-DOPA), and 5-S-cysteinyl-3,4-dihydroxyphenylacetic acid (5-S-cysteinyl-DOPAC) were determined in 2-week-, 2-month- and 3-year-old guinea pigs. In addition, brain levels of DA, the DA metabolite DOPAC, and GSH were assessed. The concentration of 5-S-cysteinyl-DA increased markedly with age. The 3-year-old guinea pigs had the highest level, i.e., 248% of the concentration in the 2-week-old animals and 219% of the concentration in the 2-month-old animals. Furthermore, the striatal 5-S-cysteinyl-DOPA level in the 3-year-old group was 68% higher than in the 2-week-old group and 46% higher than in the 2-month-old group. No age difference in the striatal concentration of DA was found. In contrast, the concentration of DOPAC increased with age: The DOPAC level in the 3-year-old animals was 153% of the level in the 2-week-old animals and 116% of the level in the 2-month-old animals.(ABSTRACT TRUNCATED AT 250 WORDS)

3,4-Dihydroxyphenylacetic Acid↗

Loss of dopamine uptake sites labeled with [3H]GBR-12935 in Alzheimer's disease.

The binding of the dopamine uptake inhibitor [3H]GBR-12935 to postmortem putamen from a control group and patients with Alzheimer's disease/senile dementia of Alzheimer type (AD/SDAT) or vascular dementia (VD) was studied. The binding density (Bmax) in AD/SDAT was significantly reduced to 50% of control. A reduction of Bmax in VD was also noted, but it did not reach statistical significance. No differences in apparent binding affinity (Kd) between controls and dementia groups were obtained. The concentrations of dopamine (DA), dihydroxyphenylacetic acid (DOPAC), 3-methoxytyramine (3-MT) and homovanillic acid were also determined. The concentrations of DA and DOPAC were reduced by 30-40% in AD/SDAT and VD, but the reductions did not reach statistical significance. The concentration of 3-MT was reduced by 40% in AD/SDAT and by 30% in VD. The [3H]GBR-12935-binding densities correlated significantly with corresponding concentrations of DA in control brains. It is suggested that the loss of [3H]GBR-12935-binding sites in human putamen in AD/SDAT reflects a degeneration of dopamine neurites.

Aged↗

The putatively antipsychotic agent amperozide produces behavioural stimulation in the rat. A behavioural and biochemical characterization.

Amperozide (FG 5606; N-ethyl-4-[4',4'-bis(p-fluorophenyl)butyl]-1-piperazinecarboximide ) is a new putatively antipsychotic compound with a postulated 5-HT2 antagonistic profile. Somewhat surprisingly amperozide dose dependently induced a behavioural stimulation in reserpinized and in nonpretreated rats. The behaviour consisted of both forward and backward locomotion as well as forepaw circling and a grooming like behaviour. Since the behavioural pattern clearly differ from that produced by classical dopaminergic or serotonergic agonists (e.g. apomorphine or 8-hydroxy-2-(di-n-propylamino)tetralin, 8-OH-DPAT), and has not been previously reported, we decided to investigate the origin of this effect. In the behavioural paradigms it was not possible to antagonize the amperozide stimulation in reserpinized rats with the dopamine receptor blockers haloperidol, raclopride or R(+)-7-chloro-8-hydroxy-3-methyl-1-phenyl-2,3,4,5-tetrahydro-1 H-3-benzazepine, SCH 23390. Neither the 5-HT2 receptor blocking agent ritanserin nor the tryptophan and tyrosine hydroxylase inhibitor DL-3,4-dihydroxy-phenyl-alpha-propylacetamide, H22/54, could block the motoric stimulation or the forepaw circling behaviour produced by amperozide. However, the noradrenaline synthesis inhibitor bis-(4-methyl-1-homopiperazinylthiocarbonyl)-disulfide, FLA 63, as well as the alpha-adrenoceptor antagonist phenoxybenzamine, could partly inhibit the locomotor stimulation. Hence, noradrenaline seems to be, at least in part, involved in the behavioural stimulatory effect of amperozide. Biochemically amperozide had no effect on the dopamine synthesis rate (DOPA formation) in normal or reserpinized animals in the striatal or the limbic brain regions. In reserpinized animals amperozide also failed to antagonize the decrease in DOPA formation after apomorphine and 3-hydroxy-benzylhydrazine HCl, NSD 1015, in these regions.(ABSTRACT TRUNCATED AT 250 WORDS)

5-Hydroxytryptophan↗

Effects of mild stress on adrenal and heart catecholamines in male and female rats.

The present study was undertaken with the aim of evaluating the sensitivity and convenience of a stress model reflecting sympatho-adrenal activation. Rats of both sexes were subjected to mild stress, consisting of four body temperature recordings, and investigated with regard to adrenal and heart catecholamine levels. Adrenal dopamine (DA) levels were considered to reflect medullary synthesis activity and heart adrenaline (A) concentrations were presumed to reflect A released from the adrenals. Expressed in relation to heart weight, adrenal catecholamine levels were about 50% higher in female rats. Following stress, adrenal DA levels were enhanced in both male and female rats; the magnitude of the stress response appeared similar in the two sexes. Concentrations of A in the hearts of unstressed animals were about 85% higher in females than in males but rose to a similar extent in male and female rats following stress. On the other hand, the stress-induced alterations in heart DA and NA concentrations, reflecting sympathetic activity, were gender-dependent. The advantages of the present model in relation to other techniques for measuring sympatho-adrenal activation in response to mild stress are discussed.

Adrenal Glands↗