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R Guerrini

Publications and source records attributed to R Guerrini.

At least 145 records · Page 8Linked to original sources

A new selective antagonist of the nociceptin receptor.

[Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 has been tested in the electrically stimulated guinea pig ileum and mouse vas deferens, two nociceptin sensitive preparations. The new compound showed per se little or no effect in the two tissues, but it displaced to the right the concentration-response curves of nociceptin in a concentration-dependent manner. Schild analyses of the data indicated a competitive type of antagonism and pA2 values of 7.02 and 6.75 in the guinea-pig ileum and the mouse vas deferens, respectively. At 10 microM [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 does not modify either the inhibitory effect of deltorphin I (the selective delta opioid receptor agonist) in the mouse vas deferens or that of dermorphine (the selective mu opioid receptor agonist) in the guinea-pig ileum. The present findings indicate that [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 is a selective antagonist of the nociceptin receptor.

Animals↗

Pharmacological characterization of the nociceptin receptor mediating hyperalgesia in the mouse tail withdrawal assay.

1. The newly discovered neuropeptide nociceptin (NC) has recently been reported to be the endogenous ligand of the opioid-like orphan receptor. Despite its structural similarity to opioids, when injected intracerebroventricularly (i.c.v.) in the mouse, NC exerts a direct hyperalgesic effect and reverses opioid-induced analgesia. In the present investigation, these two effects of NC were evaluated under the same experimental conditions; in addition, a pharmacological characterization of the receptor mediating these central effects of NC was attempted. 2. NC caused a dose dependent (0.1-10 nmol/mouse), naloxone-insensitive reduction of tail withdrawal latency with a maximal effect of about 50% of the reaction time observed in saline injected mice. In the same range of doses, NC inhibited morphine (1 nmol/mouse) induced analgesia. 3. The effects of the natural peptide were mimicked by NCNH2 and NC(1-13)NH2 (all tested at 1 nmol/mouse) while 1 nmol NC(1-9)NH2 was found to be inactive either in reducing tail withdrawal latency or in preventing morphine analgesia. 4. [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 ([F/G]NC(1-13)NH2), which has been shown to antagonize NC effects in the mouse vas deferens, acted as an agonist, mimicking NC effects in both the experimental paradigms. In addition, when NC and [F/G]NC(1-13)NH2 were given together, their effects were additive. 5. These results demonstrate that both the direct hyperalgesic action and the anti-morphine effect of NC can be studied under the same experimental conditions in the mouse tail withdrawal assay. Moreover, the pharmacological characterization of the NC functional site responsible for these actions compared with the peripherally active site, indicates the existence of important differences between peripheral and central NC receptors.

Analgesia↗

Nociceptin receptor binding in mouse forebrain membranes: thermodynamic characteristics and structure activity relationships.

The present study describes the labelling of the nociceptin (NC) receptor, ORL1, in mouse forebrain membranes with a new ligand partially protected from metabolic degradation at the C-terminal; the ligand, [3H]-NC-NH2, has a specific activity of 24.5 Ci mmol(-1). Saturation experiments revealed a single class of binding sites with a KD value of 0.55 nM and Bmax of 94 fmol mg(-1) of protein. Non specific binding was 30% of total binding. Kinetic binding studies yielded the following rate constants: Kobs = 0.104 min(-1); K1 =0.034 min(-1): T1/2=20 min; K(+1)=0.07 min nM(-1). Thermodynamic analyses indicated that [3H]-NC-NH2 binding to the mouse ORL1 is totally entropy driven, similar to what has been observed for the labelled agonists to the opioid receptors OP1(delta), OP2(kappa) and OP3(mu). Receptor affinities of several NC fragments and analogues, including the newly discovered ORL-1 receptor antagonist [Phe1psi(CH2-NH)Gly2]NC(1-13)-NH2([F/G]NC(1-13)-NH2), were also evaluated in displacement experiments. The competition curves for these compounds were found to be parallel to that of NC and the following order of potency was determined for NC fragments: NC-OH = NC-NH2-NC(1-13)-NH2 > > NC(1-12)-NH2 > NC(1-13)-OH > > NC(1-11)-NH2, and for NC and NC(1-13)-NH2 analogues: [Tyr1]NC-NH2 > or = [Leu1]NC(1-13)-NH2 > or = [Tyr1]NC(1-13)-NH2 > or = [F/G]NC(1-13)-NH2 > > [Phe3]NC(1-13)-NH2 > [DF/G]NC(1-13)-NH2. Standard opioid receptor ligands (either agonists or antagonists) were unable to displace [3H]-NC-NH2 binding when applied at concentrations up to 10 microM indicating that this new radioligand interacts with a non opioid site, probably the ORL1 receptor.

Animals↗

Human doublecortin (DCX) and the homologous gene in mouse encode a putative Ca2+-dependent signaling protein which is mutated in human X-linked neuronal migration defects.

Subcortical band heterotopia (SBH) and classical lissencephaly (LIS) result from deficient neuronal migration which causes mental retardation and epilepsy. A single LIS/SBH locus on Xq22.3-q24 was mapped by linkage analysis and physical mapping of the breakpoint in an X;2 translocation. A recently identified gene, doublecortin ( DCX ), is expressed in fetal brain and mutated in LIS/SBH patients. We have identified four novel missense mutations in the gene, one familial mutation with LIS in a male and SBH in the carrier females, one de novo mutation in an SBH female, and two mutations in sporadic SBH female patients. The DCX gene is found to be expressed exclusively at a very high level in the adult frontal lobe. We have also cloned the X-linked mouse doublecortin (Dcx) gene. It encodes isoforms of a highly hydrophilic 40 kDa protein, homologous to its human counterpart and containing several potential phosphorylation sites. Both human and mouse DCX proteins are homologous to a CNS protein containing a Ca2+/calmodulin kinase domain, suggesting that the DCX protein may belong to a novel class of intracellular proteins involved in neuronal migration through Ca2+-dependent signaling.

Adult↗

Effect of delta-opioid receptor agonist deltorphin on circulating concentrations of luteinizing hormone and follicle stimulating hormone in healthy fertile women.

There is evidence that endogenous opioid peptides exert an inhibitory effect on pituitary luteinizing hormone (LH) secretion both in animals and in humans, by interacting with mu-opioid receptors. However, a role for delta-opioid receptors in the regulation of gonadotrophin releasing hormone (GnRH) secretion has recently been suggested. In the present study, we evaluated the effect of the highly selective delta-opioid receptor agonist deltorphin on the LH and follicle stimulating hormone (FSH) responses to naloxone in six healthy fertile women during the luteal phase of the menstrual cycle. Deltorphin infusion alone (7 microg/kg/min for 60 min) did not significantly change the basal serum concentrations of LH in this group of women. The intravenous (i.v.) bolus administration of naloxone (15 mg) induced a significant (P < 0.001) increase in serum LH concentrations (from a mean basal value of 4.24+/-1.10 IU/l to a peak of 13.27+/-1.8 IU/l). The LH response to naloxone was significantly (P < 0.001) blunted by preinfusion of deltorphin (13.27+/- 1.80 IU/l versus 4.80+/-1.18 IU/l). No significant changes in FSH concentrations were observed during deltorphin, naloxone or deltorphin plus naloxone administration. These data indicate that activation of delta-opioid receptors can reduce naloxone-induced LH release, suggesting a possible role of delta receptors in opioidergic modulation of LH secretion in women.

Adult↗

Reversible pseudoatrophy of the brain and mental deterioration associated with valproate treatment.

PURPOSE: To describe an 11-year-old girl with symptomatic localization-related epilepsy and normal intelligence who developed reversible mental deterioration and pseudoatrophic brain changes while receiving valproate (VPA). METHODS: Assessment of mental function using Wechsler Intelligence Scale for Children-III (WISC) and Raven's Progressive Matrices (PM), EEG recordings while awake and asleep, and brain magnetic resonance imaging (MRI), were performed at the beginning of VPA therapy, after 2 years and 8 months of treatment and following VPA discontinuation. RESULTS: After 2 years and 6 months on VPA (< or = 26 mg/kg/day) the girl insidiously developed mental deterioration (loss of 18 IQ points and drop in age-adjusted PM score from the 95th to the 50th percentile) associated with MRI-documented pseudoatrophy of the brain. Onset of severe cognitive impairment coincided with serum VPA concentrations near 100 microg/ml. There were no other manifestations of drug toxicity or hyperammonemia. Background EEG activity was normal. Reduction of VPA dosage and subsequent discontinuation 4 months later resulted in disappearance of clinical symptoms with a 20-point improvement at IQ testing and recovery of previous PM score. Repeat MRI showed disappearance of pseudoatrophic changes. CONCLUSIONS: The striking cognitive improvement and reversal of pseudoatrophic brain changes following VPA discontinuation strongly suggest a drug-induced condition. Based on this and previous reports, the syndrome of VPA-associated mental deterioration and pseudoatrophy of the brain appears to encompass different but possibly related clinical entities, which include parkinsonism with cognitive deterioration, mental deterioration with signs of VPA-toxicity, and isolated mental deterioration, as seen in our patient. A drug-induced effect should be considered whenever cognitive deterioration and imaging findings of brain atrophy occur in VPA-treated patients.

Atrophy↗

Lamotrigine and seizure aggravation in severe myoclonic epilepsy.

PURPOSE: In severe myoclonic epilepsy of infancy (SME), multiple drug-resistant focal and generalized seizure types occur. Lamotrigine (LTG), found effective in many generalized and partial seizures, has been little used in severe childhood epilepsy syndromes with multiple seizure types. We studied the effects of LTG in SME. METHODS: Twenty-one patients with SME, aged 2-18 years, were treated with LTG, 20 in add-on and one in monotherapy. LTG was started at 0.2-2.5 mg/kg/day and increased to 2.5-12.5 mg/kg/day. For each seizure type, excluding atypical absences, >50% variations compared with the 2 months preceding LTG were considered indicators of response, also taking into account the degree of disability each seizure type produced. RESULTS: LTG induced worsening in 17 (80%) patients, no change in three, and improvement in one. There was >50% increase in convulsive seizures in eight (40%) of 20 patients. Myoclonic seizures worsened in six (33%) of 18 patients. Of five patients improving in at least one seizure type, four had concomitant worsening of more invalidating seizures. Clear-cut worsening appeared within 3 months in most patients but was insidious in some. LTG was suspended in 19 patients after 15 days-5 years (mean, 14 months) with consequent improvement in 18. CONCLUSIONS: The pronounced seizure deterioration during LTG treatment was not attributable to the natural course of the disease and could be a direct effect of therapeutic LTG doses. LTG treatment seems inappropriate in SME.

Acute Disease↗

Myoclonic absence-like seizures and chromosome abnormality syndromes.

PURPOSE: We explored the relationship between myoclonic absence seizures (MAS) and underlying chromosome disorders. METHODS: Among 14 patients with MAS observed in three centers, 5 had typical cryptogenic myoclonic absence epilepsy (MAE), 2 had MAS associated with other seizure types (1 with signs of a neuronal migration abnormality and 1 with signs of a metabolic disorder), and 7 had MAS, with or without other seizure types, complicating a chromosome abnormality syndrome-2 with trisomy 12p, 4 with Angelman syndrome, and 1 with inv dup (15). RESULTS: In the 7 patients with chromosomopathy, MAS appeared at a mean age of 2.9 years (range 4 months to 6 years 6 months), had a duration of 4-20 s, and were accompanied by reduced awareness and rhythmic myoclonic jerks involving proximal limb muscles. Ictal EEG showed 2- to 3-Hz generalized spike-and-wave discharges. CONCLUSIONS: In these patients, MAS differed slightly from those of typical MAE: age of onset was earlier, absences were of shorter duration, and no clear increase in muscular tone was noted. Abnormal expression of genes codifying for the subfamily of K+ channels and for gamma-aminobutyric acid-3 subunit receptors (GABRB3), both located in the chromosome segments involved in the chromosomopathies presented by our patients, could be responsible for the same generalized seizure type. Chromosome analysis should be performed in patients with mental retardation and MAS, especially when the ictal pattern does not completely overlap that observed in MAE.

Adult↗

Antiepileptic drug-induced worsening of seizures in children.

Antiepileptic drugs (AEDs) may aggravate pre-existing seizures and trigger new seizure types. However, the extent and mechanisms of this problem are unclear, for several reasons. AED trials are not designed to detect worsening of seizures, severe childhood epilepsies may fluctuate in severity, and worsening of seizures may be over-hastily ascribed to the introduction of a new AED. Moreover, the seizure and the epilepsy type may have been incorrectly diagnosed. The problem is identification of true aggravation of epilepsy in the absence of overdosage or toxicity. This is a common and clinically important problem that concerns both established and newer AEDs, but the biologic mechanisms involved are unknown. An increase in seizure frequency due to overdosage has been reported with phenytoin but is rare with other AEDs. Paradoxical reaction has been reported with carbamazepine (CBZ), benzodiazepines, and vigabatrin (VGB). Exacerbation of seizures may also occur during AED-induced encephalopathy or hepatopathy. An inappropriate choice of the AED (i.e., a purely pharmacodynamic mechanism) can induce worsening when CBZ or VGB is used in absence and myoclonic seizures. Further research should determine whether seizure exacerbation is associated with the type of epilepsy or with the type of EEG abnormality. Recent evidence indicates that lamotrigine is inappropriate in severe myoclonic epilepsy. Some childhood epileptic encephalopathies have been affected by certain seizure-worsening mechanisms. Whether this is due to a predisposition in specific syndromes or to an increased risk for adverse effects in patients undergoing multiple AED manipulations is unclear. Furthermore, some syndromes are not the sum of accompanying seizure types but have unique neurobiology.

Acute Disease↗

Agenesis of the corpus callosum with Probst bundles owing to haploinsufficiency for a gene in an 8 cM region of 6q25.

Agenesis of the corpus callosum (ACC) is a relatively common brain abnormality resulting from developmental defects either limited to the structures leading to the proper formation of the corpus callosum or involving the embryo forebrain more generally. ACC is genetically heterogeneous with autosomal dominant, autosomal recessive, and X linked inheritance and has also been reported in subjects with aneuploidies involving several chromosomes. Among them, distal 6q deletions have been consistently reported in association with ACC, suggesting that there is a gene in the deleted region whose haploinsufficiency impairs normal corpus callosum development. We have studied a child with ACC with Probst bundles and a deletion at 6q25 of about 8 cM, from D6S1496 to D6S437. Probst bundles are the axons that should have formed the corpus callosum but, unable to cross the midline owing to absence of the massa commissuralis, they run longitudinally along the medial walls of the lateral ventricles from the frontal to the occipital lobes. Thus, their presence suggests that a gene located in the 6q deleted region is specifically involved in the formation of the massa commissuralis and that its haploinsufficiency leads to primary ACC.

Agenesis of Corpus Callosum↗

Bilateral periventricular nodular heterotopia with mental retardation and frontonasal malformation.

BACKGROUND AND OBJECTIVE: Bilateral periventricular nodular heterotopia (BPNH) is a recently recognized malformation of neuronal migration in which nodular masses of gray matter line the walls of the lateral ventricles. Most affected individuals are females with epilepsy and normal intelligence, but no other congenital anomalies. Studies in families with multiple affected individuals, always all females, have mapped one BPNH gene to chromosome Xq28. Several other BPNH syndromes associated with mental retardation and epilepsy but without significant dysmorphic facial features have been observed in males only, which may also be X-linked. This report describes a new syndrome with BPNH. METHODS: Clinical and MRI study and cognitive testing of two unrelated boys, aged 8 and 5.5 years, and review of the enlarging spectrum of syndromes associated with BPNH. RESULTS: Similarities between the two boys are sufficient to delineate a new multiple congenital anomaly-mental retardation syndrome that consists of BPNH, regional cortical dysplasia, mild mental retardation, and frontonasal malformation. CONCLUSIONS: The cause of this unusual syndrome is unknown; based on linkage of other BPNH syndromes to chromosome Xq28 and the report of possible X-linked inheritance of frontonasal malformation, we suspect the cause is genetic, with possible X-linked inheritance.

Abnormalities, Multiple↗

Multilobar polymicrogyria, intractable drop attack seizures, and sleep-related electrical status epilepticus.

BACKGROUND AND OBJECTIVE: Patients with cortical malformations often have intractable seizures and are candidates for epilepsy surgery. Within an unselected series of patients with various forms of cortical malformation, nine patients with multilobar polymicrogyria had electrical status epilepticus during sleep (ESES) accompanied by infrequent focal motor seizures. Eight patients also had intractable atonic drop attack seizures. Because ESES usually is accompanied by a good long-term seizure prognosis, the objective of this study was to examine ESES outcome among patients with a structural lesion that is usually highly epileptogenic and has a low seizure remission trend. METHODS: The nine patients had follow-up periods lasting 4 to 19 years. All underwent brain MRI, serial sleep EEG recordings, and cognitive testing during and after ESES. RESULTS: ESES and drop attack seizures appeared between the ages of 2 and 5 years (mean, 4 years) and ceased between the ages of 5 and 12 years (mean, 8 years). At the last visit patients were 8 to 23 years of age (mean, 14.5 years) and were either seizure free or had very infrequent focal motor seizures during sleep. Three patients were free from antiepileptic drugs. In no patient was definite cognitive deterioration apparent after ESES in comparison with earlier evaluations. CONCLUSIONS: Age-related secondary bilateral synchrony underlying ESES may be facilitated in multilobar polymicrogyria. The good seizure outcome contrasts with that usually found in the presence of cortical malformations. For children with polymicrogyria and drop attack seizures, surgical treatment of the epilepsy should be considered cautiously, and sleep EEG recordings should be performed systematically.

Age of Onset↗

Design of mu selective opioid dipeptide antagonists.

We have recently designed potent delta selective opioid antagonist dipeptides on the basis of a simple conformational analysis. Following a similar procedure we found a mu selective dipeptide antagonist, 2,6-dimethyl-Tyr-D-Phe-NH2. Although its selectivity is not as high as those of the quoted delta selective dipeptides it has good in vitro activity and looks very promising for further development since the 2,6-dimethyl-Tyr-D-Phe message, like the delta selective 2,6-dimethyl-Tyr-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid counterpart, seems able to impart antagonism to longer peptides.

Animals↗

Evolution of the Dmt-Tic pharmacophore: N-terminal methylated derivatives with extraordinary delta opioid antagonist activity.

The delta opioid antagonist H-Dmt-Tic-OH (2',6'-dimethyl-L-tyrosyl-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid) exhibits extraordinary delta receptor binding characteristics [Ki delta = 0.022 nM; Ki mu/Ki delta = 150,000] and delta antagonism (pA2 = 8.2; Ke = 5.7 nM). A change in chirality of Dmt at C alpha (1, 2, 6, 8, 10, 13) curtailed delta receptor parameters, while replacement of its alpha-amino function by a methyl group (3) led to inactivity; Tyr-Tic analogues 4 and 11 weakly interacted with delta receptors. N-Alkylation of H-Dmt-Tic-OH and H-Dmt-Tic-Ala-OH with methyl groups produced potent delta-opioid ligands with high delta receptor binding capabilities and enhanced delta antagonism: (i) N-Me-Dmt-Tic-OH 5 had high delta opioid binding (Ki delta = 0.2 nM), elevated delta antagonism on mouse vas deferens (MVD) (pA2 = 8.5; Ke = 2.8 nM), and nondetectable mu activity with guinea pig ileum (GPI). (ii) N,N-Me2-Dmt-Tic-OH (12) was equally efficacious in delta receptor binding (Ki delta = 0.12 nM; Ki mu/Ki delta = 20000), but delta antagonism rose considerably (pA2 = 9.4; Ke = 0.28 nM) with weak mu antagonism (pA2 = 5.8; Ke = 1.58 microM; GPI/MVD = 1:5640). N-Me-(9) and N,N-Me2-Dmt-Tic-Ala-OH (15) also augmented delta opioid receptor binding, such that 15 demonstrated high affinity (Ki delta = 0.0755 nM) and selectivity (Ki mu/Ki delta = 20132) with exceptional antagonist activity on MVD (pA2 = 9.6; Ke = 0.22 nM) and weak antagonism on GPI (pA2 = 5.8; Ke = 1.58 microM; GPI/MVD = 1:7180). Although the amidated dimethylated dipeptide analogue 14 had high Ki delta (0.31 nM) and excellent antagonist activity (pA2 = 9.9; Ke = 0.12 nM), the increased activity toward mu receptors in the absence of a free acid function at the C-terminus revealed modest delta selectivity (Ki mu/Ki delta = 1655) and somewhat comparable bioactivity (GPI/MVD = 4500). Thus, the data demonstrate that N,N-(Me)2-Dmt-Tic-OH (12) and N,N-Me2-Dmt-Tic-Ala-OH (15) retained high delta receptor affinities and delta selectivities and acquired enhanced potency in pharmacological bioassays on MVD greater than that of other peptide or non-peptide delta antagonists.

Animals↗

Synthesis and pharmacological activity of deltorphin and dermorphin-related glycopeptides.

The solid phase procedure, based on the Fmoc chemistry, was used to prepare some opioid deltorphin (H-Tyr-D-Ala-Phe-Asp-Val-Val-Gly-NH2, DEL C) and dermorphin (H-Tyr-D-Ala-Phe-Gly-Tyr-Pro-Ser-NH2, DER) analogues in which a D-glucopyranosyl moiety is beta-O-glycosidically linked to a Thr4 or Thr7 side chain. Their activities were determined in binding studies based on displacement of mu- and delta-receptor selective radiolabels from rat brain membrane synaptosomes, in guinea pig ileum and rabbit jejenum bioassays, and, in vivo, by a mouse tail-flick test after intracerebroventricular (icv) and subcutaneous (sc) administrations. The glyco analogues modified at position 4 displayed low opioid properties, while Thr7-glycosylated peptides retained high delta- or mu-selectivity and remarkable activity in vivo. In particular, as systemic antinociceptive agents, the latter glucoside-bearing compounds were more potent than the parent unglycosylated peptide counterparts, showing a high blood to brain rate of influx which may be due to the glucose transporter GLUT-1.

Amino Acid Sequence↗

Helix-inducing alpha-aminoisobutyric acid in opioid mimetic deltorphin C analogues.

The achiral symmetric alpha-aminoisobutyric acid (Aib) replaced the critical N-terminal residues of the amphibian skin opioid deltorphin C (H-Tyr-D-Ala-Phe-Asp-Val-Val-Gly-NH2) without detriment to the physicochemical requirements for delta opioid receptor recognition. Substitutions by the alpha, alpha-dialkyl amino acid in place of D-Ala2 or Phe3, or both, exhibited high delta receptor affinity (Ki delta = 0.12-3.6 nM) and 5-9-fold greater selectivity (Ki mu/Ki delta = 5000-8500) than the parent compound. This is the first definitive demonstration that the D-chirality of alanine and the aromaticity of phenylalanine are replaceable by an achiral alpha, alpha-dialkylated residue without detrimental effects on ligand binding. Incorporation of the mono-alpha-alkyl amino acid L- or D-Ala at the third position also produced highly selective delta ligands (Ki mu/Ki delta = 2000-3500), albeit with reduced delta affinities (Ki delta = 6-15 nM). Replacement of the anionic residue Asp4 by Aib yielded an opioid peptide that fit two-site binding models for the delta receptor (eta = 0.763; P < 0.0001) and displayed dual high affinity for both delta and mu receptors, emphasizing the repulsive effect by a negative charge at mu receptor sites and the insignificance of Asp for delta affinity. Molecular dynamics conformation analyses suggested that Aib residues caused distinct changes in deltorphin C secondary structure when substituted for D-Ala2, Asp4, and simultaneously D-Ala2 and Phe3 but not when substituted for Phe3. These conformational changes might be critical factors for the proper orientation of reactive constituents of residues in the N-terminal region of deltorphin C. Disparities between binding data and functional bioassays of [Aib3] indicated that Phe3 was required for bioactivity in mouse vas deferens but not for interaction with delta opioid receptors in rat brain membranes.

Amino Acid Sequence↗

Design and solution structure of a partially rigid opioid antagonist lacking the basic center--models of antagonism.

To discriminate between two general models of antagonism (participation and allosteric), an opioid antagonist lacking the basic nitrogen of tyramine was designed and characterized. Cyclo-[Tyr(Me)2-Tic-], the diketopiperazine of 2,6-dimethyltyrosyl-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid, is a partially rigid opioid antagonist; its pA2 (5.8) is one smaller than that of N,N-bisallyl-enkephalin but it has a very high binding affinity (10 nM) and has a delta selectivity (66 with respect to the binding to mu receptors) higher than that of naltrindole. The conformational state of this diketopiperazine, studied under a variety of solvent and temperature conditions by NMR and molecular dynamics, can be described in terms of only three conformers whose relative populations vary widely with solvent. Only one of the three conformers, characterized by a 90 degree arrangement of the aromatic rings of Tyr(Me)2 and Tic similar to those of rigid agonists and of the bioactive conformation of the corresponding linear antagonist, is consistent with the antagonist activity. This finding favors the participation model among the general mechanisms proposed to explain antagonism. Due to the simple composition of the conformational mixture and to the rigidity of the molecule, it is possible to propose a quantitative explanation for the discrepancy between the very high binding affinity (10 nM) and the fairly small in mouse vas deferens value (1.5 microM).

Animals↗