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J Costentin

Publications and source records attributed to J Costentin.

At least 163 records · Page 9Linked to original sources

Time course of postmortem modifications in synaptosomal [3H]dopamine uptake and [3H]GBR 12783 binding to the dopamine uptake complex in the rat striatum.

The present study focuses on the changes of two biochemical markers of the striatal dopaminergic innervation evaluated after different postmortem storage periods of rat heads either at room temperature (21 degrees C) or at 4 degrees C: (i) the uptake of [3H]dopamine (DA) into striatal synaptosomes and (ii) the specific binding of [3H]GBR 12783, a selective ligand for the neuronal dopamine uptake sites, to a striatal membrane fraction. The uptake of [3H]DA was completely abolished after 24 and 72 h storage of the tissue at 21 degrees C and 4 degrees C, respectively, whereas in the same conditions, the binding of [3H]GBR 12783 was slightly decreased. The Km and Kd of these two processes were virtually unchanged after the different storage periods considered, whereas the Vmax and Bmax were markedly decreased.

Animals↗

Appearance of a stereotyped apomorphine-induced climbing in unresponsive DBA2 mice after subchronic manipulations of brain dopamine transmission.

DBA2 mice show an erratic spontaneous climbing which is reduced by increasing doses of direct dopamine agonists (apomorphine up to 5 mg/kg, piribedil up to 20 mg/kg). Sustained stereotyped climbing occurs when animals are treated with L-dopa plus benserazide and dexamphetamine. In this strain, which is spontaneously insensitive to apomorphine-induced climbing, this behaviour progressively appeared in a stereotyped manner after repeated administrations of apomorphine (5 mg/kg). The sensitization to apomorphine-induced climbing is long-lasting (more than 15 days). A similar sensitization may be induced by repeated administrations of either piribedil or of the dopamine uptake inhibitor GBR 12783. The semichronic reduction in dopaminergic transmission induced by four administrations of haloperidol (2 mg/kg at 2-day intervals) or by pretreatment with reserpine (3 mg/kg) induced sensitization to apomorphine-induced climbing. These results are discussed in terms of modifications in the sensitivity of two types of dopamine receptors exerting opposite effects on climbing behaviour.

Animals↗

Correlation between (3H)dopamine specific uptake and (3H)GBR 12783 specific binding during the maturation of rat striatum.

The development of the specific uptake of dopamine in the rat striatum during the early postnatal period is compared with the ontogenetic changes of the specific binding of (3H)GBR 12783 to the site of uptake inhibition. During maturation, the increase in the specific binding of (3H)GBR 12783 parallels the increase in the specific uptake of dopamine. (3H)GBR 12783 specific binding sites increase in number from day 1 postpartum until 40 days, when they reach the adult level. In 40 day-old rats, the weight of the striatum represents 80% of adult values. The affinity of (3H)GBR 12783 for the inhibition site is similar in membrane preparations obtained from 6 day-old pups and adults; this results in a same ability of the inhibitor to block the specific uptake of dopamine into synaptosomes obtained from pups or adult rats. These data support the hypothesis of the existence of a single molecular entity including both the inhibition site and the carrier itself.

Age Factors↗

Stimulation of central D1 dopamine receptors reverses reserpine-induced hypothermia in mice.

In mice rendered poikilothermic by a prior (18 h) subcutaneous administration of reserpine (3 mg/kg) the injection of the D1 dopamine agonist SKF 38393 in doses of 1 mg/kg or more increased dose-dependently, the body temperature. The D1 dopamine antagonist SCH 23390, administered subcutaneously, antagonized, with an ID50 of 16 micrograms/kg, the reversal by SKF 38393 of reserpine-induced hypothermia. The intracerebroventricular administration of 1 microgram per mouse of SKF 38393 was sufficient to elevate by about 7 degrees C the temperature of reserpinized mice. It is concluded that stimulation of central D1 dopamine receptors leads to a marked reversal of reserpine-induced hypothermia; this may constitute a new test to investigate interaction of drugs with these receptors. In reserpine-pretreated mice, the dopamine (DA) agonist apomorphine, which stimulates both the D1 and D2 subtypes of DA receptors, increases body temperature according to a mechanism insensitive to the specific D2 DA antagonist sulpiride (Horowski 1978) or the preferential D2 DA antagonist haloperidol (Danielson, Coutts, Keashly and Tang 1985). This observation led us to believe that D1 DA receptors could be involved in the reversal of the hypothermia induced by reserpine. To check more directly the involvement of D1 DA receptors in the reversal of the reserpine-induced hypothermia we have tested the specific D1 agonist SKF 38393 (Setler, Sarau, Zirckle and Saunders, 1978), administered peripherally or intracerebroventricularly and we have studied its interaction with the specific D1 antagonist SCH 23390 (Iorio, Barnett, Leitz, Houser and Korduba, 1983).

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

Role of endogenous enkephalins in locomotion and nociception studied with peptidase inhibitors in two inbred strains of mice (C57BL/6J and DBA/2J).

Acetorphan, a parenterally active enkephalinase inhibitor, induced dose-dependently a naloxone-reversible analgesia on the hot-plate jump test in DBA/2J (DBA2) mice but was devoid of effects in C57BL/6J (C57) mice. By contrast, acetorphan increased locomotion in both strains; however, the DBA2 strain was much more sensitive than C57 mice to the locomotor stimulant effect. The increased locomotion was antagonized by naloxone in both strains. These data suggest that endogenous enkephalins modulate nociception and locomotion in the two inbred strains differently.

Analgesics↗

Characteristics of the dopamine receptors involved in the anorectic effects of apomorphine in mice.

In food-deprived mice apomorphine injected SC induced a brief (15-30 min) dose-dependent (30-150 micrograms/kg) reduction in food intake. This effect occurred in naive mice as well as in mice habituated to a food deprivation procedure. The anorectic effect of apomorphine (150 micrograms/kg SC) was antagonized by sulpiride (ID50 = 8.6 mg/kg) and by haloperidol (ID50 = 66 micrograms/kg) but domperidone was ineffective (250 micrograms/kg). Mice submitted to a semi-chronic (6 d) blockade of dopamine receptors by haloperidol or injected intracerebroventricularly with 125 micrograms 6-hydroxydopamine 21 d before testing failed to develop a hypersensitivity to the anorectic effect of apomorphine (60 micrograms/kg). Although a single apomorphine injection (5 mg/kg) induced tolerance to the hypothermic effect of a second apomorphine injection of 150 micrograms/kg, it did not modify the anorectic effect. Repeated apomorphine injection (5 x 5 mg/kg) resulted in a slight but significant reduction in apomorphine-induced anorexia. A similarly significant reduction was not observed in mice submitted to repeated injections of dexamphetamine (5 x 5 mg/kg).

Animals↗

In vivo and in vitro autoradiographic labelling of central dopaminergic systems with [3H]GBR12783 in rodents.

Labelling of central dopaminergic systems with the dopamine uptake inhibitor [3H]GBR12783 was performed in vivo in mice by i.v. injection of a tracer dose of the ligand (40 microCi) 1 h before sacrifice. Autoradiographic pictures obtained from these experiments were quantified. The data were compared to those obtained by in vitro labelling of rat brain slices with this ligand. Significant specific labelling was observed both in vivo and in vitro in the striatum, the nucleus accumbens, the olfactory tubercle and the substantia nigra.

Animals↗

Acute effects of direct dopamine agonists in the mouse behavioral despair test.

All the dopamine agonists (apomorphine, dipropylamino-5,6-dihydroxytetrahydronaphtalene, piribedil, bromocriptine, CBM 36-733) tested in the 'behavioral despair' test performed in mice had a dose-dependent anti-immobility effect, with the exception of the D-1 dopamine agonist, SKF 38393. This effect occurred at doses that reduced locomotor activity and decreased colonic temperature. A profound hypothermia of the same amplitude resulted from the immersion in water of the control and apomorphine (Apo)-treated mice. The anti-immobility effect of dopamine agonists depends on the stimulation of central dopamine receptors; this effect was antagonized more easily by haloperidol than by domperidone, and dipropylamino-5,6-dihydroxytetrahydronaphtalene was more effective than amino-5,6-dihydroxytetrahydronaphtalene. Their high sensitivity to sulpiride make it likely that the receptors involved correspond to the D-4 subtype. Blockade of dopamine receptors by haloperidol for about 5 days induced a slight hypersensitivity to the Apo effects. In contrast, tolerance to Apo occurred after administration of Apo, 5 mg/kg s.c., 24 and 16 h before testing. These data might reflect the potential antidepressant activity of direct dopamine agonists.

Animals↗

Hypothermic effect of neuromedin N in mice and its potentiation by peptidase inhibitors.

The intracerebroventricular administration of neuromedin N (from 50 ng to 5 micrograms) elicited a dose- and time-dependent hypothermia in mice. Two aminopeptidase inhibitors, bestatin (50 micrograms) and puromycin (50 micrograms), the endopeptidase 24.11 inhibitor, thiorphan (10 micrograms), and the angiotensin-converting enzyme inhibitor, captopril (50 micrograms), were tested for their ability to potentiate the neuromedin N-induced hypothermia. Only bestatin significantly increased the response to the peptide. In addition, thiorphan, though devoid of effect on the neuromedin N-induced hypothermia when given alone, further potentiated the response elicited by neuromedin N and bestatin. The combinations of puromycin/thiorphan and bestatin/captopril did not potentiate the neuromedin N-induced hypothermia.

Animals↗

Involvement of norepinephrine neurons in the hypothermia induced by intracerebroventricular administration of 6-hydroxydopamine in mice, evidenced by antidepressants.

The intracerebroventricular (i.c.v.) administration of increasing doses of 6-hydroxydopamine (6OHDA) (12.5-50 micrograms) induces in mice a dose-dependent hypothermic effect. This hypothermic effect is not affected either by serotonin uptake inhibitors (indalpine, clomipramine, trazodone, fluoxetine) or by dopamine uptake inhibitors (GBR 12783, amineptine). On the contrary, the hypothermia is partly antagonized by norepinephrine uptake inhibitors (desipramine, nomifensine, viloxazine, maprotiline, protryptiline), as well as amfonelic acid. The antagonism elicited by desipramine is observed when the drug is administered intraperitoneally (from 5 mg/kg) or intracerebroventricularly (from 5 microgram per mouse). 6-hydroxydopamine-induced hypothermia is antagonized by imipramine after a time lag of 1 hour; this antagonism lasts 6-11 hours after intraperitoneal administration of the drug (20 mg/kg). The hypothermic effect of 6-hydroxydopamine is diminished by a previous 6-hydroxydopamine i.c.v. administration (50 micrograms, 7 days before), except in mice pretreated with desipramine at the time of the first 6-hydroxydopamine injection. The hypothermic effect is completely abolished by two previous 6-hydroxydopamine i.c.v. administrations (50 micrograms, 7 days interval). It is also decreased in mice receiving DSP4 15 days before testing (50 mg/kg, i.p.). Finally, neither haloperidol (0.5 mg/kg i.p.) nor SCH23390 (100 micrograms/kg s.c.) antagonize 6-hydroxydopamine-induced hypothermia. It is concluded that this effect is largely depending on central norepinephrine neurons.

Animals↗

Potent inhibition of cerebral aminopeptidases by carbaphethiol, a parenterally active compound.

We designed phethiol (1-amino-1-benzyl-2-mercaptoethane) as a potent and selective inhibitor of Zn-containing aminopeptidases. This compound inhibited purified aminopeptidase M (EC.3.4.11.2) with a Ki of 5 nM but was at least 1000 times less potent against other metallopeptidases comprising angiotensin-converting enzyme EC 3.4.15.1), enkephalinase (EC 3.4.24.11), thermolysin (EC 3.4.24.4), or dipeptidylaminopeptidases. Phethiol alone significantly but partially protected endogenous (Met5) enkephalin released from depolarized brain slices, total protection being achieved when it was associated with an enkephalinase inhibitor. In order to obtain a parenterally-active inhibitor of cerebral aminopeptidases, the prodrug carbaphetiol, a readily hydrolyzable S-phenylcarbamoyl derivative of phethiol, was designed. Carbaphethiol (i.v.) elicited a rapid rise in mouse striatal level of Tyr-Gly-Gly, a characteristic extracellular metabolite of enkephalins. Carbapethiol alone and, even more, when associated with an enkephalinase inhibitor, exerted a potent naloxone-reversible antinociceptive activity. Carbaphethiol appears as the first parenterally-active inhibitor of cerebral aminopeptidases, potentially useful in neuropeptides degradation studies and as a pain-suppressing agent.

Aminopeptidases↗

Ionic requirements for the specific binding of [3H]GBR 12783 to a site associated with the dopamine uptake carrier.

At 0 degrees C, when Na+ was the only cation present in the incubation medium, increasing the Na+ concentration from 3 to 10 mM enhanced the affinity of [3H]1-[2-(++di-phenylmethoxy)ethyl]-4-(3-phenyl-2-propenyl)piperaz ine [( 3H]GBR 12783) for the specific binding site present in rat striatal membranes without affecting the Bmax. For higher Na+ concentrations, specific binding values plateaued and then slightly decreased at 130 mM Na+. In a 10 mM Na+ medium, the KD and the Bmax were, respectively, 0.23 nM and 12.9 pmol/mg of protein. In the presence of 0.4 nM [3H]GBR 12783, the half-maximal specific binding occurred at 5 mM Na+. A similar Na+ dependence was observed at 20 degrees C. Scatchard plots indicated that K+, Ca2+, Mg2+, and Tris+ acted like competitive inhibitors of the specific binding of [3H]GBR 12783. The inhibitory potency of various cations (K+, Ca2+, Mg2+, Tris+, Li+, and choline) was enhanced when the Na+ concentration was decreased from 130 to 10 mM. In a 10 mM Na+ medium, the rank order of inhibitory potency was Ca2+ (0.13 mM) greater than Mg2+ greater than Tris+ greater than K+ (15 mM). The requirement for Na+ was rather specific, because none of the other cations acted as a substitute for Na+. No anionic requirement was found: Cl-, Br-, and F- were equipotent. These results suggest that low Na+ concentrations are required for maximal binding; higher Na+ concentrations protect the specific binding site against the inhibitory effect of other cations.

Animals↗

Naloxone-reversible antidiarrheal effects of enkephalinase inhibitors.

Thiorphan and acetorphan, two potent inhibitors of enkephalinase (EC 3.4.24.11 membrane-metalloendopeptidase) significantly reduced the castor oil-induced diarrhea in rats when administered intravenously (or orally, for acetorphan) but not when administered intracerebroventricularly. These effects were more marked during the 90 min period following the castor oil challenge but were still significant up to 4-8 h after the latter. Acetorphan was about 6 times more potent than thiorphan. The antidiarrheal activity of both compounds was completely prevented in rats receiving naloxone subcutaneously but not intracerebroventricularly (in the case of thiorphan). In contrast to loperamide, a peripherally acting opiate receptor agonist, the enkephalinase inhibitors did not significantly reduce gastrointestinal transit as measured in the charcoal meal test. The antidiarrheal activity of enkephalinase inhibitors therefore seems attributable to protection of endogenous opioids, presumably outside the brain, and to reduction of intestinal secretion rather than transit.

Amino Acids, Sulfur↗

In vivo binding of [3H]GBR 12783, a selective dopamine uptake inhibitor, in mouse striatum.

[3H]GBR 12783 (1,2-(diphenylmethoxy)ethyl-4-(3-phenyl-2-propenyl)-piperazine), a specific dopamine uptake inhibitor, was tested for in vivo central binding in mice. The difference between the striatal and cerebellar levels of radioactivity was maximal 1 hour after the i.v. injection of a tracer dose of [3H]GBR 12783. The additional accumulation of radioactivity in striatum, relatively to cerebellum, was dose-dependently decreased by dopamine uptake inhibitors. It was unaffected by high doses of dopamine receptor agonists or antagonists and of serotonin or norepinephrine uptake blockers. The intrastriatal injection of 6-hydroxydopamine (6-OHDA) resulted in an almost similar decrease in both the synaptosomal [3H]dopamine uptake and the in vivo [3H]GBR 12783 binding. These data suggest that [3H]GBR 12783 injected i.v. labels the dopamine transport complex in the striatum and thus can be used for the in vivo assessment of the density of dopaminergic nerve endings in brain areas.

Animals↗

Sodium independence of the binding of [3H]GBR 12783 and other dopamine uptake inhibitors to the dopamine uptake complex.

When Na+ was the only cation present in the incubation medium used for the determination of the specific binding of [3H]GBR 12783 in rat striatal membranes, the Na+-dependence between 10 and 210 mM Na+ was not observed. In media with low (10 mM) or high (130 mM) Na+ concentration, mazindol and nomifensine competed with [3H]GBR 12783 for its specific binding site with the same affinities. With the exception of amineptine, all the tested catecholamine uptake inhibitors were equally potent to compete with [3H]GBR 12783 when Na+ concentration was decreased from 130 to 10 mM. These data suggest that the media previously used for the binding studies of tritiated inhibitors of dopamine uptake (Tris-ions buffer and Krebs-Ringer medium) contain ions which could exert inhibitory effects on the specific binding at low Na+ concentration.

Animals↗

Interactions of amineptine with the neuronal dopamine uptake system: neurochemical in vitro and in vivo studies.

The effects of amineptine on 3H-dopamine uptake and 14C-dopamine release have been studied simultaneously in double labelling test performed on rat striatal synaptosomes. 3H-dopamine uptake was completely inhibited at 10 microM amineptine, a concentration which produced only a weak 14C-DA release (13% of the 14C-radioactivity stored). The IC 50 for the inhibition of 3H-DA uptake was not modified by a previous treatment with reserpine whereas the IC 50 of (+) amphetamine and the IC 50 of clomipramine were decreased 9 fold and increased two fold, respectively. In binding studies on rat striatal membranes amineptine displaces in vitro the 3H-GBR 12783, bound specifically to a component of the neuronal DA uptake complex. The apparent affinity of amineptine for this binding site was more than 150 times higher than its affinity for the binding site of 3H-desipramine on rat cortical membranes. In mice, increasing doses of amineptine injected i.p. reduced in a dose dependent manner the specific retention of radioactivity in the striatum after an i.v. injection of a tracer dose of 3H-GBR 12783. These data indicate that amineptine inhibits DA uptake and is virtually devoid of DA releasing effects. It displays a relatively low affinity for the NE uptake system. Its neurochemical profile in the double labelling test clearly differs from that of (+) amphetamine and from that of classical tricyclic anti-depressants.

Animals↗