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The significance of COMT activity in controlling dopamine agonist levels in brain and serum: studies with a prodrug and a metabolite of 6,7-ADTN.

After i.p. administration of the dibenzoylester of 2-amino-6,7-dihydroxytetralin (DB-6,7-ADTN) a metabolite was found in rat brain and serum, which was identified as 2-amino-6-hydroxy-7-methoxytetralin (7-O-MeADTN). By means of HPLC coupled with amperometric detection, time-concentration curves of 7-O-MeADTN in rat brain and serum were determined after 100 mumol/kg DB-6,7-ADTN. These showed a rapid formation and homogeneous distribution of high peak levels (4 nmol/g) of 7-O-MeATN. Brain and serum concentrations of 6,7-ADTN after 100 mumol/kg DB-6,7-ADTN, determined during catechol-O-methyltransferase (COMT) inhibition by tropolone, were 5--7 times higher than those during normal COMT activity, thus equalling 5,6-ADTN concentrations after 100 mumol/kg DB-5,6-ADTN. The greater susceptibility of 6,7-ADTN to metabolic degradation by COMT was confirmed by preliminary results of in vitro studies, which showed that two methoxy derivatives are formed from 6,7-ADTN and one, in very small amounts, from 5,6-ADTN. 7-O-MeADTN had no dopaminergic activity of its own, as after i.p. injection of 100 mumol/kg it was devoid of behavioural and biochemical effects typical for DA agonists. A homogeneous distribution and high peak concentrations (20 nmol/g after 15 min) were found in rat brain after this dose of the metabolite. The results indicate that a substantial amount of 6,7-ADTN, in contrast to 5,6-ADTN, is metabolized by COMT and that differences between brain concentrations of both isomers are almost exclusively due to differences in susceptibility for COMT. This has implications for the design of new DA agonists.

3,4-Dihydroxyphenylacetic Acid↗

Effects of specific alpha-adrenoceptive agents on extraneuronal uptake (uptake2) of isoproterenol in perfused rat heart.

Effects of specific alpha-adrenoceptive agents (alpha 1-agonist, alpha 1-antagonist, alpha 2-agonist and alpha 2-antagonist) on the extraneuronal accumulation of 3H-isoproterenol in the perfused rat heart were examined. The extraneuronal accumulation of 3H-isoproterenol in the hearts perfused with 3H-isoproterenol (10(-6)M) under COMT inhibition by tropolone (10(-4)M) was about 6 times higher than that of intact COMT. The increase in the accumulation by COMT inhibition was regarded as 100% and the effects of specific alpha-adrenoceptive agents on the accumulation was evaluated. alpha 1-agonists, methoxamine and phenylephrine, did not affect the accumulation. alpha 1-antagonists, prazosin, bunazosin and YM-12617, significantly decreased the accumulation of 3H-isoproterenol and these IC50 values were 2 x 10(-6)M, 3.5 x 10(-6)M and 2.3 x 10(-5)M, respectively. alpha 2-agonists, clonidine and guanabenz, significantly reduced the accumulation and these IC50 values were 3.4 x 10(-5)M and 2.9 x 10(-7)M, respectively. The alpha 2-antagonist, yohimbine, did not affect the accumulation. The present experiments clearly demonstrated that the tested alpha 1-antagonists and alpha 2-agonists inhibited uptake2 in rat heart but the tested alpha 1-agonists and an alpha 2-antagonist did not inhibit it.

Adrenergic alpha-Agonists↗

Indium-111-radiolabeled guinea pig peripheral leukocytes. In vivo distribution and response to leukotriene B4.

The preparation of indium-111 tropolonate-radiolabeled guinea pig peripheral mixed white cells (greater than 80% neutrophils) is described. Autologous rather than homologous cells are required to provide a population of labeled, functional cells on reintroduction to the animals. Surgery has been shown to result in a profound neutropenia from which the animals must recover before removal of blood for cell preparation. The response of radiolabeled cells parallels that of the unlabeled cell population to a chemotaxin, leukotriene B4. This material causes a profound neutropenia of rapid onset accompanied by a parallel fall in blood radioactivity. The fall in circulating radiolabel is accompanied by an increase in radioactivity in the thoracic region. These changes have been monitored externally using an automated isotope monitoring system.

Animals↗

Trypanosoma brucei brucei: a systematic screening for alternatives to the salicylhydroxamic acid-glycerol combination.

Salicylhydroxamic acid (SHAM) and glycerol, when administered together, cause destruction of bloodstream forms of Trypanosoma brucei brucei, both in vitro and in vivo, but the dose required is exceedingly high. In an attempt to improve the efficacy of this drug combination, we examined the ability of various polyols and hydroxamic acids to substitute for glycerol and SHAM, respectively. No satisfactory substitute for glycerol was found. The inhibition of the trypanosomal alpha-glycerophosphate oxidase system (GPO) by SHAM (Ki 21 microM) was uncompetitive. Only primary and secondary aromatic hydroxamates were inhibitory. Among a series of 19 benzhydroxamates, no correlation existed between their acidity or their affinity for iron and their inhibition of the GPO in a cell free preparation. The Ki's of most of the primary hydroxamates ranged from 10 to 24 microM, with the more lipophilic derivatives being slightly more active. The Ki's of secondary hydroxamates were more variable, the best having Ki's of about 10 microM. Several other classes of iron chelators were also evaluated. Tropolones were active with 3-bromo-4,5-benzotropolone being as active as SHAM. 3,4-Dihydroxybenzaldehyde (Ki 15 microM) also inhibited the GPO. On the other hand, diphenylamine and 8-hydroxyquinoline, known inhibitors of the GPO, were 30 to 50 times less active. The results suggest that a lipophilic aromatic iron-chelating agent may be useful as a substitute for SHAM in combination therapy.

Animals↗

Triton X-114-aided purification of latent tyrosinase.

Mushroom tyrosinase was partially purified using an aqueous two-phase system with Triton X-114. The purification achieved was 5.5-fold from a crude extract of mushroom pileus, with a high recovery of 84%. The phenols were reduced to 8% of the original content, avoiding pre- and post-purification tanning of the enzyme. The enzyme obtained was latent and was activated 3-fold by trypsin, 2.7-fold by changes in the pH and to different extents by cationic and anionic detergents, the latter being the more effective. There was also a synergistic effect between trypsin and detergent, at low detergent concentrations. When kinetically characterized, latent enzyme showed both monophenolase and diphenolase activities, the latter activity displaying an unexpected lag period before reaching the steady-state rate. This behaviour is characteristic of a hysteretic enzyme, and has not been previously described for this enzyme. In addition, inhibition studies with substrate analogues were carried out, tropolone being found to be the most effective inhibitor.

Agaricus↗

Quantitation of thrombogenicity of hemodialyzer with technetium-99m and indium-111 labeled platelets.

The platelet thrombogenicity of a hemodialyzer was quantified with 99mTc- and 111In-labeled platelets. The platelets collected from blood of Beagle dogs, Yorkshire pigs and human volunteers were labeled with 111In-tropolone (detergent-free) and 99mTc-HMPAO. Hemodialysis was performed with a hollow-fiber dialyzer (HFD) in a flow-loop, the temperature of which was maintained at 37 degrees C, with flow-rates of 7, 150 and 270 mL/min; after dialysis, the HFD radioactivity was measured with an ionization chamber and imaged with a gamma-camera. The radioactivity of samples of hollow-fibers taken from the top, middle and bottom of the dialyzer was determined with a gamma-counter. The mean values of hemodialyzer-adherent platelet radioactivity were calculated for both radionuclides. The canine platelets were found to be more thrombogenic than porcine and human platelets. The adhesivity of porcine platelets to the biomaterial (cellulose-acetate) of the dialyzer approximated that of human platelets. The 99mTc label underestimated the thrombus formation (P < 0.01). The dynamic processes of thrombosis and embolization from the hemodialyzer resulted in the large standard deviations around the mean values of the adherent thrombus. In spite of this limitation of the dynamic pathology, the quantitation of comparative thrombogenicity with 111In- and 99mTc-labeled platelets suggests that both radionuclides could be used for measurement of device-induced thrombogenicity and may provide an estimation of prosthesis-induced thrombogenicity of human platelets from animal studies.

Animals↗

Platelet radiolabelling with 111 Indium for in vivo studies: a methodological reappraisal.

Two ligands widely used for 111In labeling of human platelets, oxine and tropolone, were compared as to the degree of their influence on platelet function. The labelling efficiency was assessed as a function of experimental variables. A good preservation of platelet function as evaluated by ex vivo aggregation was obtained with both techniques. The extent of tracer detached from platelets was evaluated in vitro and in vivo: in normal subjects 111In was virtually all bound to platelets. A significant reduction in radiolabelling efficiency and a decreased percentage of 111In bound to platelets in vivo was observed in patients with platelet counts < 150,000/mL.

Blood Platelets↗

Signal transduction and metabolic flux of beta-thujaplicin and monoterpene biosynthesis in elicited Cupressus lusitanica cell cultures.

beta-Thujaplicin is an antimicrobial tropolone derived from geranyl pyrophosphate(GPP) and monoterpene intermediate. Yeast elicitor-treated Cupressus lusitanica cell cultures accumulate high levels of beta-thujaplicin at early stages and other monoterpenes at later stages post-elicitation. The different regulation of beta-thujaplicin and monoterpene biosynthesis and signal transduction directing metabolic flux to beta-thujaplicin firstly and then shifting metabolic flow from beta-thujaplicin to other monoterpene biosynthesis were investigated. The earlier rapid induction of beta-thujaplicin accumulation and a later stimulation of monoterpene biosynthesis by yeast elicitor are in well agreement with elicitor-induced changes in activity of three monoterpene biosynthetic enzymes including isopentenyl pyrophosphate isomerase, GPP synthase, and monoterpene synthase. Yeast elicitor induces an earlier and stronger beta-thujaplicin production and monoterpene biosynthetic enzyme activity than methyl jasmonate (MeJA) does. Profiling all monoterpenes produced by C. lusitanica cell cultures under different conditions reveals that beta-thujaplicin biosynthesis parallels with other monoterpenes and competes for common precursor pools. Yet beta-thujaplicin is produced pre-dominantly at early stage of elicitation whereas other monoterpenes are mainly accumulated at late stage while beta-thujaplicin is metabolized. It is suggested that yeast elicitor-treated C. lusitanica cells preferentially accumulate beta-thujaplicin as a primary defense and other monoterpenes as a secondary defense. Inhibitor treatments suggest that immediate production of beta-thujaplicin post-elicitation largely depends on pre-existing enzymes and translation of pre-existing transcripts as well as recruitment of precursor pools from both the cytosol and plastids. The later beta-thujaplicin and other monoterpene accumulation strictly depends on active transcription and translation. Induction of beta-thujaplicin production and activation of monoterpene biosynthetic enzymes by elicitor involves similar signaling pathways, which may activate early beta-thujaplicin production and later monoterpene biosynthesis and induce a metabolic flux shift from beta-thujaplicin to monoterpene accumulation.

Monoterpenes↗

Role of tyrosinase in the genoprotective effect of the edible mushroom, Agaricus bisporus.

A heat-labile protein has been identified in fruit bodies of the edible mushroom, Agaricus bisporus, which protects Raji cells (a human lymphoma cell line) against H2O2-induced oxidative damage to cellular DNA. This protein has been purified following salt fractionation, combined with ion-exchange, hydrophobic interaction and adsorption chromatography. Based on catalytic and electrophoretic properties, and inhibition studies using tropolone, the protein was identified as tyrosinase. The genoprotective effect of A. bisporus tyrosinase, determined using the single-cell gel electrophoresis met") assay, has been shown to be dependent upon the enzymic hydroxylation of tyrosine to L-DOPA and subsequent conversion of this metabolite to dopaquinone. The possible role of dopaquinone, and other L-DOPA oxidation products, in enhancing the cellular antioxidant defence mechanisms is discussed.

Agaricus↗

Quantification of deposition of neutrophilic granulocytes on vascular grafts in dogs with 111In-labeled granulocytes.

A new radioisotopic technique has been developed for quantification of deposition of neutrophilic granulocytes on vascular grafts. Nine healthy mongrel dogs underwent bilateral femoral artery resection and reconstruction with grafts of femoral vein and Gore-Tex. Pure granulocytes that had been separated from whole blood by centrifugal elutriation were labeled with 111In-tropolone in plasma. The granulocyte harvesting efficiency was 25 +/- 12%, and the labeling efficiency was 87 +/- 7%. Three hours after injection of labeled granulocytes and 2 hours after reperfusion, the grafts were harvested and cut into several segments for study of areas of anastomoses and midsections. On the basis of the radioactivity in the blood and in anastomotic and graft sections, the area of graft sections, and the neutrophilic granulocyte and differential leukocyte counts, the number of neutrophilic granulocytes adherent to a unit area and the total number of neutrophilic granulocytes on graft sections were calculated. These quantifications of the deposition of neutrophilic granulocytes indicated that the midsections of Gore-Tex grafts retained more neutrophilic granulocytes than did the midsections of vein grafts. Although the anastomotic areas retained more neutrophilic granulocytes than did the midsections of vein grafts, the opposite finding prevailed for the Gore-Tex grafts. A major fraction of neutrophilic granulocytes on Gore-Tex grafts was incorporated into thrombus. Semiquantitative information obtained by scintigraphy of the deposition of neutrophilic granulocytes on vascular grafts also confirmed this observation.

Animals↗

Feedback regulation of beta-thujaplicin production and formation of its methyl ether in a suspension culture of Cupressus lusitanica.

Suspension cell cultures of Cupressus lusitanica produce beta-thujaplicin, a tropolone found mostly in Cupressaceae heartwood. The factors controlling beta-thujaplicin accumulation in this cell culture system were investigated. Initial cell density of the cultures did not affect beta-thujaplicin levels, though initial addition of beta-thujaplicin suppressed its de novo production. When beta-thujaplicin accumulation reached a certain level (ca. 40 mg/l) in the medium, the cultures seemed to cease beta-thujaplicin production. However, beta-thujaplicin productivity was restored when the beta-thujaplicin-containing medium was exchanged for fresh medium; the formation of 2-methoxy-6-(methylethyl)cyclohepta-2,4,6-trien-1-one, an isomer of methylated beta-thujaplicin, in medium was also observed. These results suggest that beta-thujaplicin synthesis was regulated by product feedback mechanism in this cell line, and that excess accumulation of beta-thujaplicin is relieved by conversion of beta-thujaplicin to its methyl ether.

Cell Count↗

Bis-tropolonato derivatives of cobalt(III) complexes of bidentate aliphatic nitrogen mustards as potential hypoxia-selective cytotoxins.

A series of cobalt(III) complexes, [Co(trop)2(L)]+, where trop is the tropolonate anion and L is a bidentate amine or nitrogen mustard, have been prepared as potential hypoxia-selective cytotoxins (L = BEE, N,N'-diethylethylenediamine; DEE, N,N-diethylethylenediamine; BCE, N,N'-bis(2-chloroethyl)ethylenediamine; DCE, N,N-bis(2-chloroethyl)ethylenediamine). The 1H NMR and 13C{1H} NMR spectra of the complexes were assigned on the basis of chemical shift considerations, 2D NMR studies (including 13C-1H and 1H-1H COSY correlation experiments), and comparison to the related, known acetylacetonato (acac) complexes [Co(acac)2(L)]+. An x-ray crystal structure determination of the analogue [Co(trop)2(BEE)]ClO4 showed it to be the delta SS/lambda RR enantiomeric pair of diastereomers. The tropolonato complexes have significantly higher reduction potentials than the corresponding acac complexes, suggesting more facile cellular reduction. In agreement with this, the mustard complexes have IC50 values in cells little different to those of the free mustards even under aerobic conditions, and do not show hypoxic selectivity in a clonogenic assay under conditions where the corresponding 3-methylacac complex of DCE showed significant selectivity.

Animals↗

Carbon-13 CP-MAS nuclear magnetic resonance studies of teas.

13C CP-MAS NMR spectra of green and black tea were obtained and assigned based on the solid-state NMR spectra of tropolone, (+)-catechin hydrate, gallic acid, caffeine and flavone derivatives. The peak shape and chemical shifts observed for carbonyl carbons in CP-MAS spectra of teas indicate the existence of different chemical species, mainly free phenollic acids and ester derivatives of flavonoids. The peak patterns allow to establish differences between both teas.

Biflavonoids↗

Labeled polymorphonuclear leukocytes: a comparison of methodology.

Polymorphonuclear neutrophilic granulocytes were separated from anti-coagulated whole blood using three techniques. The methods employed included volex sedimentation (VS), volex sedimentation with hypotonic lysis (VSHL), and Ficoll-Hypaque gradient separation (FH). The cells were labeled with 111In-oxine and 111In-tropolone. Studies were done with both blood from normal human volunteers and with canine blood. From the cell counts and differential, the harvested granulocytes, platelets, and red blood cells per milliliter of whole blood were calculated. Using the granulocyte chemotactic response to E. coli in agarose plates, the ratio of chemotactic migration to random migration (c.m./r.m.) was determined. Survival time for 111In labeled granulocytes were also determined in a canine model. The studies demonstrated that all procedures yielded 100% viability by the Trypan blue exclusion test. Chemotactic migration and leukocyte survival times were similar amongst all techniques. With the VSHL technique, there were significantly fewer red blood cells and platelets in the final preparation approaching the results of FH separation. The results suggest that for a relatively pure granulocyte preparation VSHL is an acceptable alternative to FH.

Animals↗

Kinetic studies on the O-methylation of dopamine by human brain membrane-bound catechol O-methyltransferase.

Km values for dopamine and S-adenosylmethionine (AdoMet) of human brain membrane-bound catechol O-methyltransferase are 3.3 microM and 3.1 microM, respectively. S-Adenosylhomocysteine is a very potent competitive inhibitor with respect to AdoMet with a Ki value of 1 microM. Product inhibition patterns strongly support a steady-state compulsory-order ternary complex mechanism in which AdoMet binds to the enzyme before dopamine. Inhibition of membrane-bound COMT by tropolone is competitive with respect to dopamine (Ki = 5 microM) and uncompetitive with respect to AdoMet and is consistent with this type of mechanism. The mechanism proposed is different from that suggested for soluble catechol O-methyltransferases.

Brain↗

Beta-thujaplicin: new quantitative CZE method and adsorption to goethite.

Beta-thujaplicin (beta-TH) is a toxic tropolone derivative present in the heartwood of western red cedar (Thuja plicata) and is used as a preservative and antimicrobial additive in a number of commercial goods. beta-TH released from western red cedar timber used outdoor and from other products containing beta-TH may transfer to soil and leach to groundwater and surface waters. The objective of this study was to quantify the adsorption of beta-TH to goethite as a typical model for geosorbents. Adsorption was studied using pH-adjusted goethite suspensions with solid:solution ratios of 1:500, 0.01 M NaNO(3) electrolyte, and 20 degrees C. beta-TH was determined using a new capillary zone electrophoresis (CZE) method providing a detection limit of 0.21 microM. Near-sorption equilibrium was attained within 48 h. beta-TH showed maximum adsorption at low pH (3.8) and a 70% drop in adsorption from pH 6.2 to 8.8. The Langmuir type adsorption isotherm at pH 5.5 approached a maximum adsorption of 220 micromol/g (= 6.2 micromol/m(2)), which is more than twice the amount of phosphate adsorbed under similar conditions. The affinity of beta-TH for goethite is low as compared with organic ligands such as citrate, oxalate, and 2,4-dihydroxybenzoate. The adsorption data and FTIR analyses indicate that beta-TH is most likely adsorbed as monodentate mononuclear surface complexes at the surface of goethite. Hydrophobic adsorption is thought to contribute to the adsorption, in particular at low pH. The strong adsorption of beta-TH to goethite suggests low mobility in most soil environments, the risk of contamination increasing in soils with high pH (calcareous material), low contents of iron and aluminum oxides, phyllosilicates, and organic matter.

Adsorption↗

Troponoids. 3. Synthesis and antiallergy activity of N-troponyloxamic acid esters.

A number of oxamic acid derivatives of tropones and tropolones were synthesized and their antianaphylactic activity was determined in passive paw anaphylaxis (PPA). Several of these esters possessed oral activity. A comparison of the effect on the biological activity of the esters and the corresponding acid and its salt is reported. The experiments suggesting a relationship between the activity and the bioavailability of the ester 19 are also described. A study of the fate of ester 19 in serum on oral or intravenous administration to rats and dogs is reported. In vitro results of the effect of the compounds 19, 45, and 45a on the activity of the guinea pig lung and beef heart phosphodiesterase are presented. The various factors that may contribute to the antiallergy activity of compounds of this series are discussed.

3',5'-Cyclic-AMP Phosphodiesterases↗

Monoaryl- and bisaryldihydroxytropolones as potent inhibitors of inositol monophosphatase.

The first successful preparation of mono- and disubstituted 3,7-dihydroxytropolone involves a four-step synthetic scheme. Thus, bromination of 3,7-dihydroxytropolone (8) followed by permethylation of the resultant products furnished gram quantities of intermediates 13-18. Single or double Suzuki coupling reactions between these permethylated monobromo- and dibromodihydroxytropolone derivatives and a variety of boronic acids delivered the expected products whose deprotection yielded the desired compounds 1a-u and 26a-n, usually in fair to good yields. Tropolones 1 and 26 were found to be potent inhibitors of inositol monophosphatase with IC50 values in the low-micromolar range. The results are discussed in the context of the recently described novel mode of inhibition of the enzyme by 3,7-dihydroxytropolones.

Binding Sites↗