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A J Friedhoff

Publications and source records attributed to A J Friedhoff.

At least 55 records · Page 3Linked to original sources

Clinical and treatment effects on 3H-clonidine and 3H-imipramine binding in elderly depressed patients.

3H-clonidine and 3H-imipramine binding were measured in depressed patients, 55 years and older. There was no significant difference in either 3H-clonidine or 3H-imipramine binding between depressed patients and age- and sex-matched controls. There was no significant correlation between 3H-clonidine or 3H-imipramine binding and severity of depression before treatment. There was a significant negative correlation between the KD of 3H-imipramine binding sites and Hamilton score over seven weeks of antidepressant treatment. There was no significant difference between receptor data of responders and nonresponders to antidepressant treatment.

Blood Platelets↗

Relationship between receptor occupancy and response at striatal dopamine autoreceptors.

The irreversible dopamine (DA) receptor antagonist N-ethoxy-carbonyl-2-ethoxy-1,2-dihydroquinoline (EEDQ) was used to determine the extent of receptor reserve at DA autoreceptors regulating in vivo tyrosine hydroxylase activity. Rats were treated with vehicle or EEDQ (1 X 0.5-2 X 6 mg/kg, subcutaneously) and, 24 hr later, dose response curves were generated for DA agonist reversal of gamma-butyrolactone-induced striatal L-3,4-dihydroxyphenylalanine (L-DOPA) accumulation. Double reciprocal plots were obtained of equieffective doses of agonist required to elicit response at several levels of effect before and after partial irreversible receptor inactivation. A pseudo-dissociation constant (pseudo-KA, in units of dose) and the fraction of receptors remaining active (q) were determined; these values were then used to calculate the relationship between receptor occupancy and response. The ED50 (1 microgram/kg) for the full DA receptor agonist N-propylnorapomorphine (NPA) was shifted 2.8, 4.8-, and 11.3-fold to the right after partial irreversible receptor blockade which left the fraction of receptors remaining active (q) at 0.37, 0.17 and 0.058, respectively. Corresponding maximal reversal of L-DOPA accumulation was 100, 77, and 58%, indicating a nonlinear relationship between receptor occupancy and response for NPA and the presence of a large receptor reserve; maximal and half-maximal responses were calculated to require occupancy of 30 and 3.8% of the total receptor pool, respectively. Dose response curves were also obtained for the DA autoreceptor-selective agents EMD 23,448 and (+)- and (-)-3-PPP before and after EEDQ treatment. In controls, EMD 23,448 and (+)-3-PPP, like NPA, completely reversed striatal gamma-butyrolactone-induced L-DOPA accumulation, whereas the maximal effect of (-)-3-PPP was 52% reversal. After EEDQ treatment (6 mg/kg), EMD 23,448 and (+)-3-PPP showed relatively small shifts in ED50 values. Furchgott analysis demonstrated that all three atypical agents are partial agonists at the DA autoreceptor with efficacies of 0.19 (EMD 23,448), 0.12 [(+)-3-PPP], and 0.05 [(-)-3-PPP] relative to NPA. The presence of a larger receptor reserve at pre-versus postsynaptic D2 DA receptors and the partial agonist character of drugs such as EMD 23,448 and the enantiomers of 3-PPP may account for their autoreceptor selectivity.

4-Butyrolactone↗

Selective dopamine D2 receptor reduction enhances a D1-mediated oral dyskinesia in rats.

We have previously shown, through the use of selective D1 and D2 dopamine receptor interactive drugs, that repetitive jaw movements in rats can be produced by activation of the D1 system or blockade of the D2 system. In the present study we have shown that genetic or developmental factors resulting in a lesser number of D2--relative to D1--receptors is associated with repetitive jaw movements. We have found in two strains of rats with different striatal D2 to D1 ratios, the strain with fewer D2 sites had more jaw movements. We also found that experimental reduction of D2 receptors via prenatal intervention resulted in an increase in spontaneous jaw movements, as did aging, which is accompanied by a decrease in the number of D2 receptors. The findings of these studies carried out in rats, parallel, in a number of ways, findings in human oral dyskinesia associated with either aging or neuroleptic treatment.

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

Receptor reserve at striatal dopamine autoreceptors: implications for selectivity of dopamine agonists.

The dose response curve for apomorphine reversal of gamma-butyrolactone (GBL)-induced L-DOPA accumulation in rat striatum was shifted almost 6-fold to the right after partial irreversible blockade (83%) of dopamine (DA) autoreceptors with N-ethoxycarbonyl-2-ethoxy-1,2-dihydroquinoline (EEDQ); however, the maximal response was not reduced. In contrast, the major effect of a similar degree of irreversible blockade (86%) on the dose-response curve for the autoreceptor-selective agent EMD 23,448 was a reduction in maximal response (60% of control), indicating that EMD 23,448 is a partial agonist. A large receptor reserve therefore exists at the DA autoreceptor, which may explain in part why many DA agonists are more potent in models pre- than postsynaptic receptor activation.

4-Butyrolactone↗

Development of specificity and stereoselectivity of rat brain dopamine receptors.

Prenatal exposure to the neuroleptic haloperidol has been reported to produce an enduring decrement in the number of dopamine D2 receptors in rat striatum and a persistent diminution of a dopamine dependent behavior, stereotypy. The ontogeny of rat brain dopamine binding sites has been studied in terms of the kinetic properties and phenotypic specificity in rat fetal brain through early postnatal development. Sites showing some properties of the D2 binding site can be found prior to gestational day (GD) 18, can be labeled with [3H]dopamine or [3H]spiroperidol and can be displaced with dopaminergic agonists and antagonists. Saturation kinetics for specific [3H]spiroperidol has previously been found to occur on or about GD 18. It is of interest that the critical period for the prenatal effect of haloperidol to reduce striatal D2 binding sites, GD's 15-18, coincides with the period during which dopamine binding sites lack true specificity, but can be labeled with dopaminergic ligands. In these experiments the development of stereoselectivity of brain dopamine binding sites has been examined. When rat mothers were given either the neuroleptic (+)-butaclamol or its therapeutically inactive isomer (-)-butaclamol during the critical period GD's 15-18, the number of [3H]spiroperidol binding sites in striata of offspring was significantly reduced by both stereoisomers. This is in marked contrast to the postnatal treatment effect by a neuroleptic in which upregulation of striatal D2 binding sites occurs only by treatment with the therapeutically active isomer (+)-butaclamol. In vitro studies of the direct effect of the stereoisomers of butaclamol indicate that the recognition sites detected during fetal brain development with [3H]spiroperidol do not distinguish between the isomers of butaclamol.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Prenatal neuroleptic exposure alters postnatal striatal cholinergic activity in the rat.

Previous studies in our laboratory have shown that prenatal exposure to a neuroleptic during a critical period of gestation in the rat results in a marked deficit in the number of striatal dopamine-binding sites and in a diminution of dopamine agonist-induced stereotyped behavior. In the present studies, we examined the effect of prenatal neuroleptic exposure on biochemical parameters of cholinergic activity to determine whether the balance between striatal dopaminergic and cholinergic activity might be altered. The number of muscarinic cholinergic-binding sites and the specific activity of choline acetyltransferase were found to be significantly increased by prenatal treatment with the neuroleptics haloperidol or (+)-butaclamol. From the present studies and previous observations made in our laboratory, it is concluded that the ability of a neuroleptic to affect the number of muscarinic cholinergic receptors in postnatal life may be a result of the phenotypically undifferentiated state of the developing dopamine-binding site. Our findings of increased striatal cholinergic activity accompanied by a marked decrease in dopaminergic activity may have implications for an increased vulnerability to extrapyramidal motor disturbances during postnatal development.

Animals↗

Insights into the pathophysiology and pathogenesis of Gilles de la Tourette syndrome.

The role of D1 and D2 dopaminergic receptors in the occurrence of dyskinesia, particularly that of tics, is discussed. Observation of neuroleptic-induced oral movements in rats strongly suggests that stimulation of D1 receptors triggers or increases dyskinesia. Such distinction between the action of D1 and D2 dopamine agonists is not yet possible in humans. Experiments on the resting finger tremor in man or women enable to suspect and interaction between D1 and D2 receptors. Prenatal neuroleptic exposure during vulnerable periods of pregnancy decreases the density of dopaminergic D2 receptors in rat.

Animals↗

Selective D2 dopamine receptor agonists prevent catalepsy induced by SCH 23390, a selective D1 antagonist.

SCH 23390, an apparently selective antagonist of central D1 dopamine receptors, produced profound catalepsy at low doses (0.1 mg/kg, s.c.). Pretreatment with the selective D2 receptor agonists LY 141865, RU 24213 or LY 171555, the active (-) enantiomer of LY 141865, elicited a dose-dependent inhibition of the cataleptic response. Pergolide and apomorphine were also effective. This effect was not due to altered disposition or penetration of SCH 23390 into the brain since pretreatment with a dose of LY 171555 which completely blocked catalepsy had no effect on the ID50 of SCH 23390 to inhibit 3H-cis-piflutixol binding to D1 receptors measured ex vivo. Alternative mechanisms are considered to explain the results, which offer new insights into striatal dopaminergic regulation of motor activity.

Animals↗

Chronic haloperidol does not alter agonist affinity for dopamine receptors in vitro.

Agonist competition for [3H]spiperone binding to striatal dopamine D2 receptors was studied in rats rendered supersensitive by chronic treatment with haloperidol. The classical dopamine agonist (-)-N-n-propylnorapomorphine displaced [3H]spiperone biphasically, with IC50 values of 0.5 and 140 nM for the high and low affinity components, respectively. Neither the relative density nor the affinity of either site for (-)-N-propylnorapomorphine was affected by chronic haloperidol treatment. On the other hand, the novel agonist EMD 23 448 displaced [3H]spiperone monophasically. Although this agent only displays potent dopaminergic agonism in supersensitive animals, chronic treatment with haloperidol likewise did not alter the affinity of this drug for [3H]spiperone binding sites. The results suggest that the enhanced in vivo potency of certain agonists in supersensitive animals is probably not mediated by changes in D2 receptor affinity.

Animals↗

Inactivation of D1 and D2 dopamine receptors by N-ethoxycarbonyl-2-ethoxy-1,2-dihydroquinoline in vivo: selective protection by neuroleptics.

Treatment of rats with the peptide coupling agent N-ethoxycarbonyl-2-ethoxy-1,2-dihydroquinoline (6 mg/kg i.p.) irreversibly reduced the binding of [3H]spiperone ([3H]SPIP) and cis-[3H] piflutixol to striatal D2 and D1 receptors, respectively, by 70 to 75%. In each instance only the receptor density was affected, without a change in the dissociation constant (Kd) of either radioligand. Pretreatment with sulpiride (200 mg/kg i.p.), a selective D2 antagonist, preferentially protected [3H]SPIP sites against N-ethoxycarbonyl-2-ethoxy-1,2-dihydroquinoline-induced inactivation, whereas pretreatment with SCH 23390 (3 mg/kg i.p.), a putative selective D1 antagonist, preferentially blocked the inactivation of cis-[3H]piflutixol binding sites. N-ethoxycarbonyl-2-ethoxy-1,2-dihydroquinoline markedly reduced radioligand binding to cortical alpha-1 ([3H]prazosin) and alpha-2 [( 3H]yohimbine) receptors (10-20% of control) but had a lesser effect on serotonin-2 ([3H]SPIP) and serotonin-1 ([3H]5-HT) receptors (30-40% of control). Muscarinic cholinergic ([3H] quinuclidinyl benzilate) and beta adrenergic ([3H]dihydroalprenolol) receptors were only slightly affected. None of these nondopaminergic sites were protected by sulpiride or SCH 23390, with the exception of serotonin-2 and serotonin-1 which were partially protected by the latter. SPIP (0.2 mg/kg i.p.), haloperidol (1 mg/kg i.p.) and pimozide (2 mg/kg i.p.) all selectively protected the D2 receptor, whereas cis-flupenthixol (2 mg/kg i.p.) protected both dopamine receptors; its inactive isomer trans-flupenthixol (20 mg/kg i.p.) protected neither. Bulbocapnine (25 mg/kg s.c.) selectively, but partially, protected the D1 site.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Antagonists↗

Differential effects of chronic clorgyline and amfonelic acid on desensitization of striatal dopamine receptors.

Chronic treatment of rats with the MAOI clorgyline significantly reduced the density (Bmax) of cortical beta-adrenergic receptors but did not alter either the Bmax or dissociation constant (Kd) of 3H-spiperone binding to striatal DA receptors. Clorgyline co-treatment also did not significantly affect either behavioral supersensitivity to apomorphine or the increase in 3H-spiperone binding induced by chronic haloperidol. In contrast, repeated treatment with the DA uptake inhibitor amfonelic acid elicited behavioral subsensitivity and reduced striatal 3H-spiperone binding. Furthermore, amfonelic acid co-treatment prevented haloperidol-induced behavioral and receptor binding changes. The possible relevance of these findings in relation to drug choice in clinical trials of receptor sensitivity modification are discussed.

Animals↗