PubMed Health⌕ Search

Biomedical subjects

U Hacksell

Publications and source records attributed to U Hacksell.

At least 91 records · Page 5Linked to original sources

Contact allergy to dehydroabietic acid derivatives isolated from Portuguese colophony.

7-oxodehydroabietic acid and 15-hydroxydehydroabietic acid were isolated as their methyl esters from Portuguese colophony of the gum rosin type and identified as contact allergens. Another oxidation product of dehydroabietic acid, 15-hydroxy-7-oxodehydroabietic acid, was synthesized and identified as a component of Portuguese gum rosin. 7-oxodehydroabietic acid was found to a be a grade III allergen according to the GPMT method. Guinea pigs induced with gum rosin showed only a low response to the isolated compounds, while patients with a known allergy to gum rosin reacted to a greater extent. The results imply that the content of oxidized dehydroabietic acids in gum rosin is too low to give a marked sensitization in the animals. However, the patients might have come in contact with the allergens in technically modified rosins. The compounds showed a pattern of cross-reactivity in the animal experiments as well as among the patch tested patients.

Abietanes↗

Identification of 15-hydroperoxyabietic acid as a contact allergen in Portuguese colophony.

15-Hydroperoxyabietic acid (15-HPA) has been isolated from Portuguese colophony of the gum rosin type and identified as its methyl ester. The structure of the compound was elucidated using UV, IR, NMR and mass spectrometry. 15-HPA methyl ester was found to be an elicitor when tested in colophony-sensitized guinea-pigs. The sensitizing capacity was verified in the same species and 15-HPA methyl ester was considered to be a strong allergen. The eliciting potential was also verified in patients with known allergy to colophony. The Portuguese gum rosin investigated contained approximately 1% of 15-HPA. Based on its allergenicity and the amounts isolated, we conclude that 15-HPA is a main contact allergen in Portuguese gum rosin.

Abietanes↗

Effects of the C3-methylated derivatives of 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT) on central 5-hydroxytryptamine receptors.

The effects of the four possible C3-methylated stereoisomers of 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT) ((-)-CM-11, (+)-CM-11, (-)-CM-12, (+)-CM-12) on brain 5-hydroxytryptamine (5-HT) receptor functions were studied in rats. (-)-CM-11 and (+)-CM-12 inhibited dose dependently in all brain parts the accumulation of 5-hydroxytryptophan following decarboxylase inhibition. Their antipodes were inactive. The disappearance of 5-HT induced by alpha-propyldopacetamide was retarded by (-)-CM-11 and (+)-CM-12. The biochemically active isomers produced a flat body posture and forepaw treading. The results indicate that (-)-CM-11 and (+)-CM-12 stimulate 5-HT receptors directly although not as potently as 8-OH-DPAT. The concentration of dopamine was lowered and that of homovanillic acid was elevated by (+)-CM-11 and by both enantiomers of CM-12 in the corpus striatum and in the limbic system of rats. The accumulation of DOPA following decarboxylase inhibition was not markedly changed by any of the compounds. Locomotor activity was enhanced by (+)-CM-11 but not by any of the other compounds, and the effect was haloperidol-resistant. (+)-CM-11 induced no asymmetry in rats in which the corpus striatum was inactivated on one side. Thus, none of the isomers of CM-11 or CM-12 appears to have any effect on the dopamine receptors.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Resolved cis- and trans-2-amino-5-methoxy-1-methyltetralins: central dopamine receptor agonists and antagonists.

A series of 35 stereochemically well-defined C1-methyl-substituted derivatives of the potent dopamine (DA) receptor agonist 5-hydroxy-2-(di-n-propylamino)tetralin (5-OH-DPAT) have been synthesized. The compounds were tested for central DA receptor agonistic and antagonistic activity, by use of biochemical and behavioral tests in rats. In addition, the compounds were tested for in vivo interactions with 5,6-dihydroxy-2-(di-n-propylamino)tetralin (DiPr-5,6-ADTN). On the basis of pharmacological activity profiles, the active compounds have been classified into four groups: classical pre- and postsynaptic DA receptor agonists, DA receptor agonists with preferential action at presynaptic receptors, pre- and postsynaptic DA receptor antagonists, and DA receptor antagonists with preferential action at presynaptic receptors. Results obtained indicate that both 2R and 2S enantiomers of C5-oxygenated 2-aminotetralins may be able to bind to DA receptors but that only 2S antipodes are able to activate the receptors. O-Methylation of the C5-oxygenated (1S,2R)-2-amino-1-methyltetralin derivatives tends to increase their DA receptor antagonistic activity, whereas decrease of the size of the N-substituent(s) from n-propyl to ethyl or methyl appears to increase their activity at postsynaptic DA receptors.

Animals↗

C3-methylated 5-hydroxy-2-(dipropylamino)tetralins: conformational and steric parameters of importance for central dopamine receptor activation.

C3-Methyl-substituted derivatives of the potent dopamine (DA) receptor agonist 5-hydroxy-2-(di-n-propylamino)tetralin (5-OH-DPAT) have been synthesized and their conformational preferences have been studied by use of NMR spectroscopy, X-ray crystallography, and molecular mechanics calculations (MMP2). The compounds were tested for activity at central DA receptors, by use of biochemical and behavioral tests in rats. (2R,3S)-5-Hydroxy-3-methyl-2-(di-n-propylamino)tetralin [(-)-8] was demonstrated to be a highly potent DA receptor agonist, while the other new compounds were of low potency or inactive. Results obtained confirmed the hypothesis that the tetralin inversion angle phi and the direction of the N-electron pair (N-H) tau N are conformational parameters of critical importance for DA D2 receptor activation in the 2-aminotetralin series. The high potency of (-)-8 allowed an extension of a previously defined "partial DA D2 receptor excluded volume".

Animals↗

C1- and C3-methyl-substituted derivatives of 7-hydroxy-2-(di-n-propylamino)tetralin: activities at central dopamine receptors.

C1- and C3-methyl-substituted derivatives of the potent dopamine (DA) receptor agonist 7-hydroxy-2-(di-n-propylamino)tetralin (7-OH-DPAT) have been synthesized, and their conformational preferences have been studied by use of NMR spectroscopy, X-ray crystallography, and molecular mechanics (MMP2) calculations. The compounds were tested for activity at central DA receptors, by use of biochemical and behavioral tests in rats. (1S,2R)-7-Hydroxy-1-methyl-2-(di-n-propylamino)tetralin [(+)-10] was demonstrated to be sevenfold less potent than (2R)-7-OH-DPAT as a DA receptor agonist. The other new compounds were of lower potency or inactive.

Animals↗

(+)-cis-8-Hydroxy-1-methyl-2-(di-n-propylamino)tetralin: a potent and highly stereoselective 5-hydroxytryptamine receptor agonist.

C1-Methylated derivatives of the potent 5-hydroxytryptamine (5-HT) receptor agonist 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT, 1) were synthesized and tested for central 5-HT and dopamine receptor activity by use of a biochemical test method in rats. cis-8-Hydroxy-1-methyl-2-(di-n-propylamino)tetralin (8) was found to be a 5-HT receptor agonist. The (+)-enantiomer of 8 had a potency equal to that of 1, whereas (-)-8 and the trans isomer (+/-)-9 were inactive.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

(+)-UH 232 and (+)-UH 242: novel stereoselective dopamine receptor antagonists with preferential action on autoreceptors.

The (+)- and (-)-enantiomers of the 2-aminotetralin derivatives cis-5-methoxy-1-methyl-2-(di-n-propylamino)tetralin (UH 232) and cis-5-hydroxy-1-methyl-2-(di-n-propylamino)tetralin (UH 242), were pharmacologically evaluated in rats in an extensive series of in vivo biochemical and behavioral experiments. These studies showed that the (+)- and (-)-enantiomers have differential effects on central dopamine (DA) receptors. Thus, (-)-UH 242 is a DA-receptor agonist stimulating both pre- and postsynaptic receptors. (-)-UH 232 is also active as a DA receptor agonist, although with much lower potency than (-)-UH 242. In contrast, (+)-UH 242 and (+)-UH 232 are characterized as DA receptor antagonists. Both (+) forms markedly accelerated DA synthesis and turnover and reversed the biochemical and behavioral effects of apomorphine. Locomotor activity was stimulated by the (+)-enantiomers over a wide dose range; hypomotility was induced only by high doses. The pharmacological profile of the (+)-enantiomers clearly differs from that of classical neuroleptics and suggests a preferential antagonistic action on DA autoreceptors. (+)-UH 232 and (+)-UH 242 may prove useful as experimental tools and as potential therapeutic agents (selectively increasing DA-ergic neurotransmission), e.g. in geriatric practice.

4-Butyrolactone↗

Conformational analysis of the dopamine-receptor agonist 5-hydroxy-2-(dipropylamino)tetralin and its C(2)-methyl-substituted derivative.

The conformational preferences of the dopamine (DA) receptor agonist 5-hydroxy-2-(di-n-propylamino)tetralin (1) and the DA-inactive 5-hydroxy-2-methyl-2-(di-n-propylamino)tetralin (2) have been studied by use of molecular mechanics (MMP2) calculations and NMR spectroscopy. A good agreement is demonstrated between the experimentally determined (by NMR) and the calculated (by MMP2) conformational distribution of 1 and 2. In addition, there is a good agreement between bond distances and bond angles in the X-ray structure of the hydrobromide of 1 and those in the corresponding MMP2 conformation. Results obtained demonstrate that the energetically preferred conformations of 1 and 2 are different: Compound 1 preferentially adopts half-chair conformations with a pseudoequatorial nitrogen substituent whereas the low-energy conformations of compound 2 have a pseudoaxial nitrogen substituent. However, the results also indicate that the difference in conformational preferences is too small to account for the dopaminergic inactivity of 2. Therefore it is suggested that the steric bulk of the C(2)-methyl group per se prevents a proper alignment of (2S)-2 with DA receptors.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Dopaminergic 2-aminotetralins: affinities for dopamine D2-receptors, molecular structures, and conformational preferences.

A combination of X-ray crystallography, NMR spectroscopy, and molecular mechanics (MMP2) calculations was used to determine the three-dimensional structures and conformational preferences of the enantiomers of 5-hydroxy-2-(di-n-propylamino)tetralin and their C1-methylated derivatives. In addition, the affinities of the compounds for striatal 3H-spiroperidol- and 3H-N-n-propylnorapomorphine-binding sites were determined. In the present series, the dopamine D2-receptor agonists have the S-configuration at the nitrogen-bearing carbon (C2), whereas the only established D2-receptor antagonist, 1S,2R-5-hydroxyl-1-methyl-2-(di-n-propylamino)tetralin (1S,2R-UH-242), has the opposite absolute configuration at C2. Two conformational parameters, the tetralin inversion angle (phi) and the dihedral angle tau(C1, C2, N, N-H or electron pair) (tau N), are shown to be critical for D2-receptor agonism; phi values around 0 degrees and tau N values around 60 degrees appear to be optimal. The low D2-affinity of 1S,2S-5-hydroxyl-1-methyl-2-(di-n-propylamino)tetralin seems to be related to its inability to assume a low-energy "D2-receptor agonistic conformation." It is noted that the common structural denominator between the D2-receptor antagonists 1S,2R-UH-242 and 6aS-apomorphine is their inability to assume "dopamine D2-receptor agonistic nitrogen electron pair orientations."

Apomorphine↗

Novel dopamine receptor agonists and antagonists with preferential action on autoreceptors.

The enantiomers of cis-5-hydroxy-1-methyl-2-(di-n-propylamino)tetralin and its methyl ether have been synthesized. The compounds were tested for central dopamine (DA) receptor activity, by using biochemical and behavioral tests in rats. The (1R,2S)-(-) enantiomers of 1 and 2 are characterized as centrally acting DA-receptor agonists while the corresponding (1S,2R)-(+) enantiomers are characterized as centrally acting DA-receptor antagonists. Compounds (+)-1 and (+)-2 differ from classical neuroleptics in being able to increase DA synthesis rate in a wide dose range without reducing locomotor activity, suggesting a pronounced selectivity for DA autoreceptors. Also the (-) enantiomers seem to act preferentially on DA autoreceptors.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Stable glucopyranosylpalladium complexes with cis-beta-hydrogen. A six-membered ring metallocycle with an oxygen donor ligand.

Two stable glucopyranosylpalladium complexes, chloro[1,3-dimethyl-5-(3,4,6-tri-O-acetyl-2-deoxy-alpha-D -arabinohexopyranosyl)-2,4(1H,3H)-pyrimidinedionnato] (triphenylphosphine)-palladium and the corresponding triphenylarsine analog, were studied using fast atom bombardment mass spectrometry, 1H, 13C and 31P nuclear magnetic resonance, UV and IR spectroscopy to establish structures for these complexes. The data obtained indicate that the pyranosyl ring is in a chair conformation in which palladium (C2'), acetoxy (C3' C4') and acetoxymethyl (C5') are equatorial and 1,3-dimethyl-2,4(1H,3H) pyrimidinedion-5-yl (C1') is axial. The palladium(II) ion is encompassed in a six-membered ring metallocycle in which C2' of the glucopyranosyl ring and the oxygen of the C4 carbonyl of the pyrimidinedionyl group occupy adjacent ligand sites. The other two ligand sites on square planar palladium are occupied by triphenylphosphine (or triphenylarsine) cis to C2' and trans to carbonyl oxygen, and chloride trans to C2' and cis to oxygen. This stable metallocycle has three unusual features, a cis-beta-hydrogen, a six-membered Pd-containing ring and an oxygen donor ligand. Its surprising stability is due to conformational barriers to the proper alignment of Pd with pyranosyl ring substituents required for elimination reactions.

Carbohydrate Conformation↗