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D Regoli

Publications and source records attributed to D Regoli.

At least 109 records · Page 6Linked to original sources

A water-soluble, stable dipeptide NK1 receptor-selective neurokinin receptor antagonist with potent in vivo pharmacological effects: S18523.

The potassium salt of a chemically stabilized dipeptide, {1-[4-(1 H-tetrazol-5-yl)butyl]indol-3-yl}carbonyl-Hyp-Nal-N(methyl)-Bzl , (Hyp = (R)-4-hydroxy-L-proline; Nal = 3-L-(beta-naphthyl)-alanine), S18523, is described as a new water-soluble, potent and selective NK1 receptor antagonist. The low molecular weight antagonist (M(r) = 736) displays nanomolar potency (pA2 = 9.6) in the rabbit vena cava (NK1) bioassay and nanomolar affinity (pKi = 9.1) on the human NK1 receptor expressed by lymphoblastoma cells. It is devoid of mu-opiate affinity (Ki > 10(-4) M with respect to tritiated Tyr-DAla-Gly-MePhe-Gly-ol), has negligible calcium-channel affinity (estimated Ki = 2.6 x 10(-5) M, with respect to isradipine) and does not cause peritoneal mast-cell degranulation. S18523 has strong antinociceptive effects in three classical pain tests in vivo both by i.v. and p.o. routes. The dipeptide potently antagonizes bronchoconstriction provoked by exogenous substance P in the guinea-pig and acts longer than the non-peptide antagonist CP99994, when administered as aerosol. Finally, S18523 displays antiinflammatory properties, since it dose-dependently inhibits substance P-induced plasma extravasation both in the bladder (ID50 = 0.18 mg/kg i.v.) and bronchi (ID50 = 0.14 mg/kg i.v.) of the guinea-pig.

Animals↗

3-Aryl-1,2-diacetamidopropane derivatives as novel and potent NK-1 receptor antagonists.

Early structure-activity studies on racemic tryptophan ester and amide NK-1 antagonists 5-7 led to the discovery that the potency of the series could be markedly increased by moving the carbonyl function in these molecules to an off-chain position as in the 3-aryl-1,2-diacetamidopropane 9. Further medicinal chemistry incorporating this change resulted in the discovery of a novel series of highly potent aryl amino acid derived NK-1 antagonists of the R stereoisomeric series (IC50's = 100 pM to > 5 microM). Compounds in this series were shown to be competitive antagonists using an in vitro NK-1 smooth muscle assay, and this data correlated well with observed human NK-1 binding affinities. Two of these agents, (R)-25 and (R)-32, blocked intrathecal NK-1 agonist-driven [Ac-[Arg6,Sar9,Met(O2)11]- substance P 6-11 (Ac-Sar9)] nociceptive behavior in mice. Both compounds potently blocked the neurogenic dural inflammation following trigeminal ganglion stimulation in the guinea pig after intravenous administration. Further, upon oral administration in this model, (R)-32 was observed to be very potent (ID50 = 91 ng/kg) and have a long duration of action (> 8 h at 1 micrograms/kg). Compound (R)-32, designated LY303870, is currently under clinical development as an NK-1 antagonist with a long duration of action.

Amides↗

Pharmacology of endothelins: vascular preparations for studying ETA and ETB receptors.

Three rabbit vessels, the carotid and pulmonary arteries and the jugular vein were investigated to identify vascular monoreceptor systems (either ETA or ETB) to be used in structure-activity studies on endothelins and their antagonists. The RbCA has been found to behave as a monoreceptor ETA preparation, since it shows much greater sensitivity to ET-1 than to ET-3 and is insensitive to IRL 1620. The contractile response of the RbCA to ET-1 is reduced in the presence of BQ-123 but is not influenced by BQ-788. The RbPA behaves as a pure ETB system when stimulated with the ETB selective agonist IRL 1620. The contractile effect of IRL 1620 is reduced in the presence of BQ-788 but is not influenced by BQ-123. The RbJV responds to ET-1 and to IRL 1620 with contractions that are reduced by both BQ-123 and BQ-788, respectively. THe RbJV appears to be a mixed ETA and ETB system in which the two functional sites play an equivalent role in the stimulatory contractile response. Thus, contractile ETA and ETB receptors have been found in arterial and venous vessels of the rabbit and some of these vessels provide sensitive and selective (either ETA or ETB) preparations that appear to be adequate for pharmacological studies on ET receptor agonists or antagonists.

Animals↗

Receptors for kinins: from classical pharmacology to molecular biology.

In the past 20 years, we have focused our efforts on the study of kinin receptors involved in contraction or relaxation of vascular smooth muscle. Initial studies on rabbit vessels led to the discovery of two kinin receptors, B1 and B2, mediating contraction of the rabbit aorta (B1) and the rabbit jugular vein (B2). Studies on dog vessels contributed to the identification of B2 receptors in arterial endothelium promoting the release of NO and the relaxation of arterial smooth muscles; further studies on dog renal vessels led to the demonstration of B2 receptors in endothelia and in the smooth muscle, mediating relaxation through NO (endothelia) and prostanoids (smooth muscle). B1 receptors that relax renal arterial smooth muscle through the release of prostanoids were also identified. In other vessels, B2 receptors may also mediate smooth muscle contraction. Recent studies in human vessels (umbilical vein) have confirmed the existence of contractile B1 and B2 receptors in venous smooth muscles. B1 and B2 receptors have been cloned; molecular biology has provided the reference data for comparison with findings of classical pharmacology and binding assays. Similarities and differences in B1 and B2 receptors between human and animal tissues demonstrate the heterogeneity (related to species) of kinin B2 and B1 receptors and confirm the findings of early classical pharmacological experiments.

Animals↗

Receptors for kinins: from classical pharmacology to molecular biology.

In the past twenty years, we have focused our efforts on the study of kinin receptors involved in contraction or relaxation of vascular smooth muscle. Initial studies on rabbit vessels led to the discovery of two kinin receptors, B1 and B2, mediating contraction of the rabbit aorta (B1) and the rabbit jugular vein (B2). Studies on dog vessels contributed to the identification of B2 receptors in arterial endothelium promoting the release of NO and the relaxation of arterial smooth muscles; further studies on dog renal vessels led to the demonstration of B2 receptors in endothelia and in the smooth muscle, mediating relaxation through NO (endothelia) and prostanoids (smooth muscle). B1 receptors that relax renal arterial smooth muscle through the release of prostanoids were also identified. In other vessels, B2 receptors may also mediate smooth muscle contraction. Recent studies in human vessels (umbilical vein) have confirmed the existence of contractile B1 and B2 receptors in venous smooth muscles. B1 and B2 receptors have been cloned; molecular biology has provided the reference data for comparison with findings of classical pharmacology and binding assays. Similarities and differences in B1 and B2 receptors between human and animal tissues demonstrate the heterogeneity (related to species) of kinin B2 and B1 receptors and confirm the findings of early classical pharmacological experiments.

Animals↗

Receptors for kinins in the human isolated umbilical vein.

1. The human umbilical vein has been found to contract in response to bradykinin (BK) and desArg9BK. 2. The rank order of potency of agonists, in the presence of the B1 receptor antagonist Lys[Leu8]desArg9BK, is as follows: [Hyp3, Tyr(Me)8]BK (pD2 8.88) = [Hyp3]BK (pD2 8.86) = LysBK (pD2 8.81) > or = BK (pD2 8.60) >> [Aib7]BK (pD2 6.38) >> desArg9BK and LysdesArg9BK (inactive). 3. Hoe 140 (pA2 8.42) inhibits the effects of BK while other B2 receptor peptide antagonists are very weak and WIN 64338 is practically inactive. 4. Venoconstrictor responses to desArg9BK of fresh tissues increase with time during the in vitro incubation and reach a maximum after 4-6 h. The activity of Hoe 140 (pA2 5.48) is negligible against B1 receptor agonists. 5. When measured in the presence of the selective B2 receptor antagonist Hoe 140 (400 nM), the order of potency of kinin related peptides on the B1 receptor is Lys[desArg9]BK (pD2 8.60) > desArg9BK (pD2 6.69). BK, LysBK, [Hyp3]BK and other B2 receptor agonists are inactive. 6. The B1 receptor antagonist, Lys[Leu8]desArg9BK (pA2 7.99), inhibits the response of the human vein to B1 receptor agonists (LysdesArg9BK or desArg9BK), but do not alter the effect of BK. 7. The results summarized in this paper indicate that the human isolated umbilical vein is a sensitive preparation containing both B1 and B2 receptors. The human B2 receptor shows some similarity with that of the rabbit (at least for agonist potencies) and differs from the B2 receptor of the guinea-pig. Compared to the rabbit B1 receptor, the human B1 receptor shows low sensitivity to peptides that lack the N-terminal Lys.

Adult↗

Characterization of endothelin receptors in the human umbilical artery and vein.

The aim of the present study was to characterize pharmacologically endothelin receptors that are present in human umbilical vessels. 2. Endothelin-1 (ET-1) and endothelin-2 (ET-2) are potent stimulants of both the human umbilical artery (pEC50 7.9 and 7.5) and vein (pEC50 8.1 and 8.0). Endothelin-3 (ET-3) is inactive on the artery but contracts the vein (pEC50 7.6). IRL1620 is inactive in both vessels. The order of potency of agonists is suggestive of a typical ET(A) receptor in the artery (ET-1 = ET-2 > > ET-3) and a mixture of ET(A) and ET(B) receptors in the vein (ET-1 = ET-2 > or = ET-3). 3. The selective ET(A) receptor antagonist, BQ123, competitively inhibits the effect of ET-1 in the human umbilical artery (pA2 6.9), while in the vein, only a mixture of BQ123 and BQ788 (a selective ET(B) antagonist) weakly displaces to the right of the cumulative concentration-response curve to ET-1. Contractions induced by ET-3 in the vein are inhibited by BQ788 (pA2 7.6), but not by BQ123. 4. Inhibition of Ca2+ channels by nifedipine (0.1 microM) is accompanied by a significant decrease of the maximal response to ET-1 by 40% in the artery and by 30% in the vein. The response of the vein to ET-3 is almost abolished by nifedipine. 5. The results indicate that: (i) endothelins contract the human isolated umbilical artery via stimulation of an ET(A) receptor type; (ii) the contraction induced by ET-1 in the vein is mediated by both ET(A) and ET(B) receptors, while ET-3 stimulates the ET(B) receptor; (iii) the contribution of Ca2+ channels to the contraction mediated by the ET(B) receptor appears to be more important than to that mediated by the ET(A) receptor.

Adult↗

Evidence for functional tachykinin NK1 receptors on human isolated small bronchi.

On human small isolated bronchi (diameter < 1 mm), but not on larger bronchi (diameter 3-5 mm), substance P (SP) and specific tachykinin SP-preferring neurokinin (NK1) receptor agonists {[beta Ala4, Sar9, Met(O2)11]SP-(4-11), [Sar9, Met(O2)11]SP, [Arg6,Sar9,Met(O2)11]SP-(6-11), and septide; 10(-10) to 10(-6) M} produced a concentration-dependent contraction that occurred at low concentrations (pD2 values of 7.79-8.33) and was characterized by a low intrinsic activity [maximal effect (Emax) of 38-45% of Emax induced by 3 mM acetylcholine, in a noncumulative manner]. Comparison of cumulative and noncumulative concentration-response curves to SP and NK1 receptor agonists suggest rapid receptor desensitization. The SP (10(-8) M)-induced contraction was inhibited by tachykinin NK1 receptor antagonists (rank order of potency: SR-140333 > CP-96,345 > RP-67580) but not by the tachykinin NK2 receptor antagonist SR-48968. Indomethacin (10(-6) M) abolished the SP-induced contraction. Our results suggest that tachykinin NK1 receptors are present on human small bronchi and that their stimulation induces a prostanoid-dependent contraction. The small isolated bronchus is an interesting model of human tissue to test NK1 receptor antagonists.

Benzamides↗

Neurokinin receptors in the guinea pig ileum.

Experiments were performed in the longitudinal muscle strip of the guinea pig ileum to characterize the receptors involved in the contractile response of this preparation to neurokinins. Antagonists for the NK-1 (CP 96345, CP 99994) and NK-2 (SR 48968) receptors, atropine for NK-3 receptors, as well as diphenhydramine (histamine H1 receptor antagonist) and indometacin (cyclooxygenase inhibitor) were used to determine the relative contribution of neurokinin receptors and some endogenous agents to the myotropic effects of substance P (SP) and neurokinin receptor selective agonists. The present findings indicate that the three neurokinin receptor types take part in the contractile activities of SP-related peptides. NK-1 receptors, probably localized in the smooth muscle, are inhibited only by the two CP compounds and not by atropine or the other agents. NK-2 receptors contribute to the contraction by 5-10% and are blocked by SR 48968. NK-3 receptors act indirectly through the release of acetylcholine from the myenteric plexus, since activities of [MePhe7]NKB and senktide are blocked by atropine. Septide behaves as a selective NK-1 receptor agonist and does not show any difference with SP, except for higher sensitivity to CP antagonists. The same is observed with Ac[Arg6,Sar9,Met(O2)11]SP(6-11), another NK-1-selective fragment. Discrepancies between antagonist pA2 values obtained against undeca- and hexapeptide agonists are interpreted as due to a stronger binding affinity of undecapeptide agonists as compared with the hexapeptides. Results of binding assays confirm data from the literature by showing that undecapeptide agonists have higher affinities than hexapeptides, particularly septide,, and such discrepancies (with the biological assays) can also be explained by the reduction or absence of the cationic charge at the N terminal of septide.

Acetylcholine↗

Pharmacological characterization of SR 142801: a new non-peptide antagonist of the neurokinin NK-3 receptor.

Pharmacological and biochemical assays were performed to characterize SR 142801, a new NK-3 receptor antagonist, and its [R]-enantiomer, SR 142806. The compounds were tested (1) in the guinea pig isolated ileum stimulated with [MePhe7]NKB (NK-3 system) in order to evaluate onset and duration of action and to estimate the apparent affinity of the antagonist in terms of pA2 at 140 min after application; (2) in 6 selected monoreceptor systems, the rabbit (rb) vena cava for the NK-1rb receptor, the rabbit pulmonary artery and the hamster (hs) urinary bladder for the NK-2rb and NK-2hs receptors, the rat (r) portal vein for the NK-3r receptor, and in two multireceptor systems adequately treated with NK-1 or NK-2 receptor antagonists to obtain monoreceptor-mediated biological responses (the rat urinary bladder treated with SR 48968 for evaluating the NK-1r and the guinea pig-gp-ileum treated with CP-99994 for measuring the antagonist affinity on the NK-3gp receptor), in order to evaluate the antagonist selectivity, and (3) in various plasma membrane preparations containing NK-3-binding sites from rats, guinea pigs, and man. The data presented indicate that SR 142801 is a potent, fairly selective non-peptide antagonist of the functional (pA2 9.4) and binding (Ki 0.11 nmol/l) site of the guinea pig and human (Ki 0.21 nmol/l) NK-3 receptors, while being much less active on the Nk-3 receptors of other species, particularly the rat (pA2 7.0; Ki 15 nmol/l). SR 142801 shows a slow onset of action and acts as a long-lasting irreversible antagonist, specific for neurokinin receptors, especially the NK-3 sites of guinea pigs and man.

Animals↗

Structure-activity studies of B1 receptor-related peptides. Antagonists.

We tested several peptides related to des-Arg9-bradykinin as stimulants or inhibitors of B1 (rabbit aorta, human umbilical vein) and B2 (rabbit jugular vein, guinea pig ileum, human umbilical vein) receptors. We also incubated the compounds with purified angiotensin-converting enzyme from rabbit lung to test their resistance to degradation. We evaluated apparent affinities (in terms of the affinity constant pA2) of compounds and their potential residual agonistic activities (alpha E). Bradykinin and des-Arg9-bradykinin were used as agonists for the B2 and B1 receptors, respectively. Degradation of peptides by the angiotensin-converting enzyme was prevented in the presence of a D-residue in position 7 of des-Arg9-bradykinin. Replacement of Pro7 with D-Tic combined with Leu, Ile, Ala, or D-Tic in position 8 led to weak B1 receptor antagonists, some of which had strong residual agonistic activities on the B2 receptor preparations. The use of D-beta Nal in position 7, combined with Ile in position 8 and AcLys at the N-terminal (eg, AcLys[D-beta Nal7, Ile8]des-Arg9-bradykinin) gave the most active B1 receptor antagonist (pA2 of 8.5 on rabbit aorta and human umbilical vein), which is also partially resistant to enzymatic degradation. Extension of the N-terminal end by Sar-Tyr-epsilon Ahx (used for labeling purposes) and even cold-labeling of Tyr with iodine were compatible with high, selective, and specific antagonism of the B1 receptors. We compared some compounds with some already known B1 receptor antagonists to underline the novelty of new peptidic compounds.

Angiotensin-Converting Enzyme Inhibitors↗

In vitro and in vivo characterization of bradykinin B2 receptors in the rabbit and the guinea pig.

A comparative study has been performed in isolated organs and in anesthetized animals, rabbits, and guinea pigs, to evaluated the myotropic responses (in the organs) and the blood pressure changes (in the animals) induced by bradykinin (BK) and related peptides. Antagonist affinities have also been estimated in vitro in terms of PA2 and in vivo in terms of ID50, to characterize the kinin B2 receptors in the two species. Differences have been found both in the order of potency of agonists and in the affinity of antagonists: in fact, in the rabbit, [Hyp3]BK > [Aib7]BK, is the opposite order of what is found in the guinea pig, namely, [Aib7]BK < [Hyp3]BK, both in vitro and in vivo. Results obtained with antagonists also show important differences between the two species, since DArg[Hyp3, DPhe7, Leu8]BK is more active in the rabbit than in the guinea pig, while WIN-64338 is fairly active in the guinea pig and almost inactive in the rabbit. HOE-140, the long-acting antagonist of the B2 receptor, shows similar affinities in vitro in the two species. In another series of experiments, peptide degradation by angiotensin converting enzyme (ACE) has been investigated to see whether the differences of potency observed between certain peptides interacting with the B2 receptor were due to metabolic degradation. When incubated in the presence of pure ACE from rabbit lung, BK,[Hyp3]BK, and des Arg9BK are readily degraded, while [Aib7]BK, HOE-140, and DArg[Hyp3, DPhe7, Leu8]BK are not. When applied intravenously (i.v.), to obtain degradation by the lung, and intraarterially (i.a.), to avoid such degradation, the effect of BK (i.v.) is markedly reduced (compared with the effect i.a.), while no difference is observed for [Aib7]BK. Thus, despite its resistance to degradation by ACE, [Aib7]BK shows very little activity in the rabbit, suggesting that the major cause in the variation of affinities observed between kinin analogs is related to their pharmacodynamic properties. Taken together, the results speak strongly in favor of the existence of B2 receptor subtypes in the peripheral circulation of the rabbit and the guinea pig. Results obtained in vivo, both in pharmacological and biochemical experiments, are in accord with the findings obtained in isolated organs and with purified ACE enzyme.

Adrenergic beta-Antagonists↗

Induction of bradykinin B1 hypotensive receptors in rats by lipopolysaccharide.

Bolus injections of bradykinin (BK, 0.25-1.0 nmol.kg-1 intraarterially (i.a.)) in anesthetized rats produced a dose-dependent hypotensive response, while desArg9-BK (0.25-1.0 nmol.kg-1 i.a.), Lys-desArg9-BK (0.25-1.0 nmol.kg-1 i.a.), and Sar[D-Phe8]desArg9-BK (0.5-1.0 nmol.kg-1 i.a.) were inactive. At 12-24 h after the pretreatment with lipopolysaccharide (10-100 micrograms.kg-1 i.v.), BK produced a greater decrease in blood pressure than in nontreated rats and Sar[D-Phe8]desArg9-BK (0.5-1.0 nmol.kg-1 i.a.) decreased blood pressure by 13.0 +/- 1.0 and 22.2 +/- 2.31 mmHg (1 mmHg = 133.3 Pa), whereas both desArg9-BK and desArg10-kallidin were inactive. The hypotensive effect of BK (0.25-1.0 nmol.kg-1 i.a.) was significantly reduced by HOE-140 (1.0 nmol.kg-1 i.a.) given 5 min before and that of Sar[D-Phe8]desArg9-BK was reduced by [Leu8]desArg9-BK (1.0 nmol.kg-1 i.a.) given 3 min before the agonists. These results indicate that in rats lipopolysaccharide induces B1 receptors in 18 to 24 h. B1 agonists protected from degradation are needed to demonstrate the presence of B1-receptor-mediated hypotension in the rat.

Animals↗

In vitro and in vivo pharmacology of S 16474, a novel dual tachykinin NK1 and NK2 receptor antagonist.

Since tachykinins released from lung sensory nerve endings are thought to play a role in inflammatory diseases of airways via NK1 and NK2 receptors, dual tachykinin NK1 and NK2 receptor antagonists may have a great therapeutic potential. In vitro, the cyclopeptide S 16474 (cyclo-[Abo-Asp(D-Trp(Suc0Na)-Phe-N-(Me)Bzl)]) bound to both human tachykinin NK1 and NK2 receptors expressed in two lines of transfected Chinese hamster ovary cells (IC50 values 85 nM and 129 nM, respectively), while showing a poor affinity for the rat tachykinin NK1 receptor. S 16474 inhibited the contractions induced by substance P in isolated rabbit vena cava (pA2 7.0) and by neurokinin A in rabbit pulmonary artery (pA2 5.6). In vivo in anaesthetized guinea-pigs, S 16474 was found to dose dependently inhibit the bronchoconstrictions induced by intravenously administered substance P, neurokinin A and capsaicin. Plasma extravasation evoked in bronchi by endogenously released tachykinins under vagus nerve stimulation was abolished by S 16474 (10 mu mol/kg i.v.). These results demonstrate clearly that S 16474 is a tachykinin receptor antagonist exhibiting, in vitro and in vivo, a dual inhibitory effect on NK1 and NK2 receptors.

Animals↗

In vivo and in vitro homologous desensitization of rat glomerular bradykinin B2 receptors.

We investigated the effects of bradykinin on glomerular bradykinin B2 receptor functions and parameters in vivo, after intrarenal infusion of bradykinin, and in vitro, after incubation of isolated rat glomeruli with bradykinin. Bradykinin transiently increased renal plasma flow whereas a second challenge was ineffective. Scatchard analysis demonstrated the presence of two populations of bradykinin binding sites whose densities were similarly decreased by about 40% after intrarenal bradykinin infusion. This decrease was not altered by an acid wash suggesting internalization of the radiolabelled ligand. The effect of bradykinin was prevented by a bradykinin B2 receptor antagonist. Pre-exposure of isolated rat glomeruli to bradykinin mimicked the in vivo results because there was a reduction in bradykinin-induced prostaglandin E2 and prostaglandin F2 alpha release. Rapid recovery was observed 15 min after washing out the bradykinin. Our results directly demonstrate a negative homologous down-regulation of B2 glomerular bradykinin receptor density under both in vivo and in vitro conditions, an effect which involves a rapid sequestration of the receptor.

Animals↗