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R Guerrini

Publications and source records attributed to R Guerrini.

At least 109 records · Page 6Linked to original sources

[Nphe(1)]NC(1-13)NH(2) selectively antagonizes nociceptin/orphanin FQ-stimulated G-protein activation in rat brain.

[Phe(1)psi(CH(2)-NH)Gly(2)]noc/OFQ(1-13)-amide ([F/G]NC(1-13)NH(2)) and acetyl-RYYRIK-amide (Ac-RYYRIK-NH(2)), two peptidic ligands of the nociceptin/orphanin FQ (noc/OFQ) receptor, have been shown to exert both agonist and antagonist activity in different in vitro and in vivo systems. This is despite the observation that both peptides competitively antagonized the coupling of the activated receptor to G-proteins in brain preparations, measured in GTPgamma(35)S binding assays. In this study, [Nphe(1)]NC(1-13)-amide ([Nphe(1)]NC(1-13)NH(2)), a new noc/OFQ analog recently characterized as a pure and selective noc/OFQ receptor antagonist in several in vitro and in vivo assay systems, was shown to competitively inhibit the noc/OFQ-stimulated GTPgamma(35)S binding to rat cerebral cortex membranes with pA(2) of 7.76 (Schild analysis). This antagonism of noc/OFQ receptor G-protein coupling was selective because the peptide inhibited the noc/OFQ-evoked GTPgamma(35)S binding to rat brain membranes but not that evoked by selective agonists of the mu-, delta-, and kappa-opioid receptors. In rat cortical membranes, the effects of [F/G]NC(1-13)NH(2) and Ac-RYYRIK-NH(2) on the binding of GTPgamma(35)S were clearly differentiated from the effect of [Nphe(1)]NC(1-13)NH(2) when the concentration of GDP, competing with GTPgammaS for binding, was lowered from 100 microM (assay optimum) to 5 microM. At 5 microM GDP, the former peptides showed clear partial agonist activity, whereas [Nphe(1)]NC(1-13)NH(2) did not. These data indicate that only [Nphe(1)]NC(1-13)NH(2) was a pure antagonist of noc/OFQ receptor G-protein coupling. Furthermore, it is suggested that the variable behavior of [F/G]NC(1-13)NH(2) and Ac-RYYRIK-NH(2) (agonist, partial agonist, and antagonist) in different in vitro and in vivo systems may be explained by different partial GTP binding agonism and the existence of a GTP binding stimulus/response reserve (coupling reserve).

Amino Acid Sequence↗

[Nphe(1)]nociceptin-(1-13)-NH(2) antagonizes nociceptin effects in the mouse colon.

Nociceptin, nociceptin-(1-13)-NH(2), Ac-RYYRWK-NH(2), [Phe(1)psi(CH(2)&z.sbnd;NH)Gly(2)]nociceptin-(1-13)-NH(2), the new nociceptin analog [Nphe(1)]nociceptin-(1-13)-NH(2), and endomorphin-1 have been tested in the isolated mouse colon. All peptides, except [Nphe(1)]nociceptin-(1-13)-NH(2), caused concentration-dependent, tetrodotoxin-sensitive contractions showing similar maximal effects. Naloxone (1 microM) blocked the effect of endomorphin-1 but not that of the other peptides. [Nphe(1)]nociceptin-(1-13)-NH(2) (10 microM) was inactive against endomorphin-1, but antagonized the contractile effects of nociceptin receptor ligands showing similar pA(2) values (approximately 6.0). The present findings indicate that [Nphe(1)]nociceptin-(1-13)-NH(2) is a low-potency, selective nociceptin receptor antagonist, devoid of residual agonist activity.

Animals↗

Further studies on the Dmt-Tic pharmacophore: hydrophobic substituents at the C-terminus endow delta antagonists to manifest mu agonism or mu antagonism.

Twenty N- and/or C-modified Dmt-Tic analogues yielded similar K(i) values with either [(3)H]DPDPE (delta(1) agonist) or [(3)H]N, N(Me)(2)-Dmt-Tic-OH (delta antagonist). N-Methylation enhanced delta antagonism while N-piperidine-1-yl, N-pyrrolidine-1-yl, and N-pyrrole-1-yl were detrimental. Dmt-Tic-X (X = -NHNH(2), -NHCH(3), -NH-1-adamantyl, -NH-tBu, -NH-5-tetrazolyl) had high delta affinities (K(i) = 0.16 to 1 nM) with variable mu affinities to yield nonselective or weakly mu-selective analogues. N, N-(Me)(2)Dmt-Tic-NH-1-adamantane exhibited dual delta and mu receptor affinities (K(i)delta = 0.16 nM and K(i)mu = 1.12 nM) and potent delta antagonism (pA(2) = 9.06) with mu agonism (IC(50) = 16 nM). H-Dmt-betaHTic-OH (methylene bridge between C(alpha) of Tic and carboxylate function) yielded a biostable peptide with high delta affinity (K(i) = 0.85 nM) and delta antagonism (pA(2) = 8.85) without mu bioactivity. Dmt-Tic-Ala-X (X = -NHCH(3), -OCH(3), -NH-1-adamantyl, -NHtBu) exhibited high delta affinities (K(i) = 0.06 to 0.2 nM) and elevated mu affinities (K(i) = 2.5 to 11 nM), but only H-Dmt-Tic-Ala-NH-1-adamantane and H-Dmt-Tic-Ala-NHtBu yielded delta receptor antagonism (pA(2) = 9.29 and 9.16, respectively). Thus, Dmt-Tic with hydrophobic C-terminal substituents enhanced mu affinity to provide delta antagonists with dual receptor affinities and bifunctional activity.

Adamantane↗

Nociceptin binding sites in frog (Rana esculenta) brain membranes.

The recently discovered natural heptadecapeptide nociceptin (orphanin FQ) shares some homology with the opioid peptides but it binds to a distinct receptor type, termed nociceptin receptor. This study demonstrates the presence of specific nociceptin recognition sites in brain membrane fractions of an amphibian, Rana esculenta. Para-iodo-Phe(1)-nociceptin-amide was radiolabelled by catalytic dehalotritiation, resulting in p[(3)H]Phe(1)-nociceptin-amide of 25 Ci/mmol specific radioactivity. Specific binding of [(3)H]nociceptin-amide to frog brain membranes was found to be saturable and of high affinity with equilibrium K(d) values in the low nanomolar range. A single set of binding sites with about 180 fmol/mg protein maximal binding capacity was obtained in saturation and competition experiments. [(3)H]Nociceptin-amide binding could easily be inhibited by synthetic nociceptin compounds but not by opioid ligands. Both sodium ions and 5'-guanylylimidodiphosphate decreased the binding of the radioligand by transferring the receptor to a lower affinity state. Nociceptin dose-dependently stimulated the binding of the nonhydrolysable, radiolabeled GTP-analogue guanosine-5'-O-(3-thio)triphosphate ([(35)S]GTPgammaS) to G-proteins in frog brain membranes. Addition of 1 microM naloxone caused no significant change in the curves, indicating that nociceptin-mediated activation of G-proteins occurred through nonopioid mechanism.

Amides↗

Bilateral perisylvian polymicrogyria in three generations.

A family is described in which bilateral perisylvian polymicrogyria was present in 6 members of 3 consecutive generations. Typical anatomic and clinical findings of the syndrome, with a mild phenotype, were present in the 5 affected women from all 3 generations. More severe impairment was observed in the only affected male individual, a boy, in the third generation. Analysis of the pedigree and severity of the phenotype in the affected boy are consistent with transmission of an X-linked dominant trait, although other patterns of inheritance cannot be ruled out with certainty.

Adult↗

A single specific amino acid residue in peptide antigens is sufficient to activate memory CTL: potential role of cross-reactive peptides in memory T cell maintenance.

In the present study, we examined the structural requirements of peptide Ags for productive interactions with the TCR of CTL. For this purpose, we used as a model a previously identified immunodominant epitope that represents the target of EBV-specific HLA-A11-restricted CTL responses. By the use of peptides having minimal sequence homology with the wild-type epitope, we demonstrated that it is possible to selectively expand and reactivate memory CTL precursors without triggering the lytic mechanisms of wild-type specific effectors. In fact, stimulation of PBL from EBV-seropositive donors by polyalanine analogues, sharing only the putative TCR contact residue with the natural epitope, exclusively induced clonal expansion and reactivation of EBV-specific memory CTL precursors. Interestingly, these polyalanine peptides failed to trigger the cytotoxic function of CTLs specific for the wild-type viral epitope. This clearly indicates that reactivation of memory CTL precursors and triggering of the cytotoxic function have different requirements. The same phenomenon was observed using as stimulators naturally occurring peptides carrying the appropriate TCR contact residue. These data strongly suggest that cross-reactive peptides may play an important role in the expansion and reactivation of CTL clones from the memory T cell pool, and may be involved in long-term maintenance of T cell memory.

Amino Acid Substitution↗

Selective amino acid substitutions of a subdominant Epstein-Barr virus LMP2-derived epitope increase HLA/peptide complex stability and immunogenicity: implications for immunotherapy of Epstein-Barr virus-associated malignancies.

The latent membrane protein 2 is an immunogenic antigen expressed in Epstein-Barr virus (EBV)-associated tumors and consequently it may represent a target for specific cytotoxic T lymphocyte (CTL)-based immunotherapies. However, the efficacy of such a therapy is limited by the poor immunogenicity of the protein that induces weak CTL responses directed to the CLGGLLTMV (CLG) epitope only in the minority of EBV-seropositive donors. We have now demonstrated that selective peptide stimulation of peripheral blood lymphocytes induced CLG-specific CTL in all donors, suggesting that this epitope can be a suitable target for specific immunotherapies. We found that the CLG peptide has a low affinity for HLA-A*0201 and does not produce stable complexes, both factors that are likely to determine the strength of CTL responses to this epitope. Therefore, we synthesized and tested CLG analogues carrying single or combined amino acid substitutions to increase HLA/peptide stability. Among the analogues tested we identified two peptides which, compared to the natural epitope, showed higher affinity for HLA-A*0201 molecules, and produced stable complexes. These peptides demonstrated a potent, specific stimulatory capacity and could be used for selective CTL-based therapies.

Amino Acid Sequence↗

Characterization of mutations in the gene doublecortin in patients with double cortex syndrome.

Mutations in the X-linked gene doublecortin, which encodes a protein with no dear structural homologues, are found in pedigrees in which affected females show "double cortex" syndrome (DC; also known as subcortical band heterotopia or laminar heterotopia) and affected males show X-linked lissencephaly. Mutations in doublecortin also cause sporadic DC in females. To determine the incidence of doublecortin mutations in DC, we investigated a cohort of eight pedigrees and 47 sporadic patients with DC for mutations in the doublecortin open reading frame as assessed by single-stranded conformational polymorphism analysis. Mutations were identified in each of the eight DC pedigrees (100%), and in 18 of the 47 sporadic DC patients (38%). Identified mutations were of two types, protein truncation mutations and single amino acid substitution mutations. However, pedigrees with DC displayed almost exclusively single amino acid substitution mutations, suggesting that patients with these mutations may have less of a reproductive disadvantage versus those patients with protein truncation mutations. Single amino acid substitution mutations were tightly clustered in two regions of the open reading frame, suggesting that these two regions are critical for the function of the Doublecortin protein.

Brain Diseases↗

Autosomal recessive rolandic epilepsy with paroxysmal exercise-induced dystonia and writer's cramp: delineation of the syndrome and gene mapping to chromosome 16p12-11.2.

We describe a pedigree in which 3 members in the same generation are affected by Rolandic epilepsy (RE), paroxysmal exercise-induced dystonia (PED), and writer's cramp (WC). Both the seizures and paroxysmal dystonia had a strong age-related expression that peaked during childhood, whereas the WC, also appearing in childhood, has been stable since diagnosis. Genome-wide linkage analysis performed under the assumption of recessive inheritance identified a common homozygous haplotype in a critical region spanning 6 cM between markers D16S3133 and D16S3131 on chromosome 16, cosegregating with the affected phenotype and producing a multipoint LOD score value of 3.68. Although its features are unique, this syndrome presents striking analogies with the autosomal dominant infantile convulsions and paroxysmal coreoathetosis (ICCA) syndrome, linked to a 10 cM region between D16S401 and D16S517, which entirely includes the 6 cM of the RE-PED-WC critical region. The same gene may be responsible for both RE-PED-WC and ICCA, with specific mutations explaining each of these Mendelian disorders. This report shows that idiopathic focal disorders such as epilepsy and dystonia, can be caused by the same genetic abnormality, may have a transient expression, and may be inherited as an autosomal recessive trait.

Adult↗

Segmental facial myoclonus in moebius syndrome.

Moebius syndrome is characterized by sixth and seventh nerve palsy and is usually the result of bilateral hypoplasia or aplasia of the respective brain stem nuclei. There have been no reports of involuntary facial movements associated with this malformative complex. We report on a 6-year-old boy affected by Moebius syndrome with asymmetric involvement and segmental facial myoclonus with onset at age 2 years, affecting the side with partially conserved motility. Clinical presentation included congenital peripheral palsy of the right seventh cranial nerve and left-sided rhythmic rising of the upper lip and eyebrow. Surface-electromyography (EMG) of the left levator labii and frontalis muscles showed rhythmic bursting (duration: 150-450 ms; frequency: 1-3 Hz). Electroencephalographic (EEG)-polygraphic recordings and burst-locked EEG averaging failed to show any consistent EEG activity preceding the EMG bursts. Study of the blink reflex, somatosensory and motor-evoked potentials showed findings consistent with pontine pathology. Segmental facial myoclonus, although extremely rare in children, must be differentiated from several other paroxysmal motor manifestations associated with structural lesions involving the brain stem. Segmental facial myoclonus stem-Structural lesion.

Child↗

Characterization of nociceptin receptors in the periphery: in vitro and in vivo studies.

Nociceptin (NC), a series of NC fragments, naloxone as well as the pseudopeptide [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 ([F/G]NC(1-13)NH2) were used to characterize NC receptors in peripheral isolated organs and in vivo. Experiments on isolated organs were performed in the mouse (mVD) and rat (rVD) vas deferens (noradrenergic nerve terminals), in the guinea pig ileum (gpI; cholinergic nerves) and in the renal pelvis (gpRP; sensory nerves), and, in vivo, by measuring the blood pressure (BP) and heart rate (HR) in anaesthetised rats. NC, NCNH2 and NC(1-13)NH2 acted as full agonists with similar affinities, while shorter fragments (e.g. NC(1-12)NH2, NC(1-9)NH2, NC(1-5)NH2) were much weaker or inactive. The inhibitory effects of NC were not modified by naloxone. [F/G]NC(1-13)NH2 acted as an antagonist with similar pA2-values (6.75 mVD, 6.83 rVD, 7.26 gpI) in the three species. In addition, it blocked NC actions in the rat in vivo. Linear Schild plots with slopes near to unity indicated that [F/G]NC(1-13)NH2 is a competitive antagonist, specific for NC receptors both in vitro (since it was inactive on opioid receptors) and in vivo (since it was inactive against carbachol). [F/G]NC(1-13)NH2 showed a residual agonistic activity in vitro (alpha = 0.2-0.3 in the rVD and gpI) and especially in vivo (alpha = 0.4 BP, 0.2 HR). These pharmacological data indicate that NC and related peptides exert their inhibitory effects in peripheral organs of various species by activating the same receptor type. Moreover, [F/G]NC(1-13)NH2 appears to be a useful tool for receptor characterization and classification.

Anesthesia↗

Pharmacology of [Tyr1]nociceptin analogs: receptor binding and bioassay studies.

Two series of nociceptin (NC)-related peptides with or without replacement of the N-terminal Phe by Tyr have been investigated in an attempt to obtain compounds that interact with the NC receptor (ORL1) and classic opioid receptors. When tested for their ability to displace [3H]NCNH2 ([3H]nociceptin amide; ORL1 sites) or the selective opioid receptor ligands [3H]DAMGO (mu), [3H]deltorphin II (delta) and [3H]U69593 (kappa) from their respective binding sites in guinea-pig brain membranes, [Tyr1]NCNH2 and [Tyr1]NC(1-13)NH2 showed high affinities (Ki 2nM and 5 nM, respectively) for ORL1 and approximately tenfold lower potency for mu (32nM and 44nM) and kappa sites (42 nM and 48 nM). They also interacted, but with low potency (Ki 410 nM and 310 nM) with delta sites. Shorter fragments as [Tyr1]NC(1-9)NH2 and [Tyr1]NC(1-5)NH2 were found to be inactive on ORL1, delta and kappa sites, and extremely weak (Ki 2224 nM and 4228 nM, respectively) on mu. Results of bioassays performed on the guinea-pig ileum (ORL1 and mu receptors), mouse vas deferens (ORL1 and delta receptors), and rabbit vas deferens (kappa receptor) confirmed (at least partially) the data of the binding by showing that [Tyr1]NC analogs interact with functional ORL1 as well as with classic opioid receptors. [Tyr1]NCNH2 and [Tyr1]NC(1-13)NH2 behaved as mixed ORL1/opioid receptor agonists showing similar affinities as the control NC sequence while [Tyr1]NC(1-9)NH2 and [Tyr1]NC(1-5)NH2 were inactive on ORL1 receptors but maintained some activities on opioid receptors: their effects were prevented by naloxone. The results of this study indicate that the replacement of Phe1 by Tyr in NC leads to compounds which bind both the ORL1 and mu/kappa receptors and may represent new promising agents for use in peripheral organs.

Amino Acid Substitution↗

Nociceptin receptor activation inhibits tachykinergic non adrenergic non cholinergic contraction of guinea pig isolated bronchus.

We studied the action of nociceptin (NC) on the atropine-resistant contractions of the guinea pig isolated bronchus evoked by the electrical field stimulation (EFS), an effect that is mediated by the activation of excitatory non adrenergic-non cholinergic (eNANC) nerves and the subsequent release of tachykinins. The functional site by which NC acts in this preparation was investigated using few different NC receptor agonists and the newly discovered NC receptor antagonist, [Phe1psi(CH2-NH)Gly2]NC(1-13)NH2 ([F/G]NC(1-13)NH2). NC inhibited in a concentration dependent manner (pEC50 7.14; Em - 87 +/- 3% of control values) EFS induced contractions. NC effect was mimicked by the NC analogues, NCNH2 and NC(1-13)NH2, but not by NC(1-9)NH2. NC (1 microM) did not affect the contractile effects of exogenously applied neurokinin A (1 microM). [F/G]NC(1-13)NH2 (10 microM) completely prevented the inhibition induced by NC (1 microM), whereas naloxone (1 microM) was found inactive. Both naloxone and ([F/G]NC(1-13)NH2 were per se inactive on basal resting tone as well as on the electrically induced contractions. The present findings show that NC inhibits the atropine-resistant EFS-induced contraction in the guinea pig bronchus by inhibiting eNANC nerves, and suggest the presence of NC receptors, distinct from opioid receptors, on the nerves of the guinea pig bronchus.

Animals↗

Are there generalised spike waves and typical absences in benign rolandic epilepsy?

Generalised 3 Hz spike wave (SW) discharges with or without absences have been described in children with benign epilepsy with centrotemporal spikes (BECTS), leading to speculations about a continuum between childhood absence epilepsy (CAE) and BECTS. We thus decided to evaluate the prevalence of absence seizures (AS) and generalised 3 Hz SW in patients with BECTS. All patients with BECTS first referred since 1986 have been identified prospectively. Their medical and electroencephalograph (EEG) records were analysed retrospectively, in the search for AS and generalised SW discharges. Over a period of 11 years, we found typical rolandic spikes in 66 newly referred patients; 64 had seizures typical for the condition (18 female, 46 male), two were asymptomatic and were not further analysed. All had routine waking EEG recordings, and 49 children (76%) had at least one sleep EEG. AS or classical generalised 3 Hz SW were never recorded from history or EEG data, respectively. However, 17 patients had some diffuse SW discharges, lasting 1-5 s, which appeared as grossly symmetrical in only seven children, with a clearly asymmetrical aspect in the others. Among these seven patients, the discharges were only seen on awakening in one, both during waking and nREM sleep stage I or II in one and only during nREM sleep stage I or II in five. They were apparently subclinical in all. We thus found neither AS nor classical 3 Hz SW discharges among 64 consecutive patients with BECTS. Brief bursts of bilateral abnormalities occur in about 25% of the cases, mostly with sleepiness. Such findings do not substantiate the existence of a continuum between CAE and BECTS.

Child↗

Myoclonic status epilepticus following high-dosage lamotrigine therapy.

An 8-year-old girl with Lennox-Gastaut syndrome showed a partial reduction in seizure frequency when lamotrigine (LTG), 15 mg/kg per day, was added to clobazam (CLB) and vigabatrin (VGB). An increase in LTG dosage to 20 mg/kg per day produced no further improvement and was followed by myoclonic status epilepticus. The condition developed insidiously and ultimately became stable. Video-EEG polygraphy and jerk-locked back-averaged EEG demonstrated continuous myoclonus of cortical origin. Discontinuation of LTG resulted in rapid disappearance of clinical and electrophysiological manifestations of myoclonic status epilepticus. No episodes of myoclonus occurred in the subsequent 2 years, during which CLB and VGB were kept unchanged. The striking response to drug discontinuation suggests that LTG may have played a role in the precipitation of status, possibly within the context of paradoxical intoxication.

Anticonvulsants↗

Prospective study of first-line vigabatrin monotherapy in childhood partial epilepsies.

This was a prospective open comparative pilot study to assess the efficacy and tolerability of first-line vigabatrin monotherapy in childhood partial epilepsies. Two groups of patients were recruited over the same period. The vigabatrin monotherapy group comprised 40 patients (18 male, 22 female; mean age at last visit 7.5 years); the comparative carbamazepine monotherapy group comprised 40 consecutive clinic patients (22 male, 18 female; mean age at last visit 7.8 years). Seizures disappeared in 82% of vigabatrin patients and in all carbamazepine patients with idiopathic partial epilepsy, and in 50% of vigabatrin patients and 55% of carbamazepine patients with symptomatic partial epilepsy. Interictal EEG abnormalities decreased in vigabatrin patients more than in carbamazepine patients (P < 0.05). Tolerability was good in vigabatrin patients, but four out of 37 showed mild irritability by the end of the trial. Persistent sedation was observed in eight of the 40 patients receiving carbamazepine. No patient had drug therapy discontinued because of side-effects. During vigabatrin long-term monotherapy, efficacy and good clinical tolerability were maintained. These results suggest that vigabatrin may be an alternative first-line treatment for childhood partial epilepsies. Further blinded comparative randomized trials are needed.

Adolescent↗

Comparison of the effects of [Phe1psi(CH2-NH)Gly2]nociceptin(1-13)NH2 in rat brain, rat vas deferens and CHO cells expressing recombinant human nociceptin receptors.

Nociceptin(NC) is the endogenous ligand for the opioid receptor like-1 receptor (NC-receptor). [Phe1(psi)(CH2-NH)Gly2]Nociceptin(1-13)NH2 ([F/G]NC(1-13)NH2) has been reported to antagonize NC actions in peripheral guinea-pig and mouse tissues. In this study, we investigated the effects of a range of NC C-terminal truncated fragments and [F/G]NC(1-13)NH2 on NC receptor binding, glutamate release from rat cerebrocortical slices (rCX), inhibition of cyclic AMP accumulation in CHO cells expressing the NC receptor (CHO(NCR)) and electrically evoked contractions of the rat vas deferens (rVD). In radioligand binding assays, a range of ligands inhibited [125I]-Tyr14-NC binding in membranes from rCX and CHO(NCR) cells. As the peptide was truncated there was a general decline in pKi. [F/G]NC(1-13)NH2 was as potent as NC(1-13)NH2. The order of potency for NC fragments to inhibit cyclic AMP accumulation in whole CHO(NCR) cells was NCNH2> or =NC=NC(1-13)NH2>NC(1-12)NH2> >NC(1-11)NH2. [F/G]NC(1-13)NH2 was a full agonist with a pEC50 value of 8.65. NCNH2 and [F/G]NC(1-13)NH2 both inhibited K+ evoked glutamate release from rCX with pEC50 and maximum inhibition of 8.16, 48.5+/-4.9% and 7.39, 58.9+/-6.8% respectively. In rVD NC inhibited electrically evoked contractions with a pEC50 of 6.63. Although [F/G]NC(1-13)NH2, displayed a small (instrinsic activity alpha = 0.19) but consistent residual agonist activity, it acted as a competitive antagonist (pA2 6.76) in the rVD. The differences between [F/G]NC(1-13)NH2 action on central and peripheral NC signalling could be explained if [F/G]NC(1-13)NH2 was a partial agonist with high strength of coupling in the CNS and low in the periphery. An alternative explanation could be the existence of central and peripheral receptor isoforms.

Animals↗

Opioid deltorphin C analogues containing cis- or trans-2- or 3- or 4-aminocyclohexanecarboxylic acid residues.

The solid phase synthesis, based on the Fmoc chemical protocol, was used to prepare ten deltorphin C (Del-C; H-Tyr-D-Ala-Phe-Asp-Val-Val-Gly-NH2) analogues containing cis- and trans- 2 or 3- or 4- aminocyclohexanecarboxylic acid (ACCA) residues at position 2. ACCA-peptides showed high resistance to degradation by plasma or brain enzymes, negligible affinity for the kappa-binding site and modest delta- and/or mu-receptor affinities. Both [cis-3-ACCA2]Del-C analogues and one trans isomer are the only deltorphin analogues of this series exhibiting an appreciable delta-affinity and selectivity. These data suggest that the presence of a conformationally constrained ACCA residue in position 2 of the "message" sequence of deltorphin C is slightly tolerated.

Amino Acids↗