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D Regoli

Publications and source records attributed to D Regoli.

At least 127 records · Page 7Linked to original sources

Quantitative autoradiographic localization of [125I-Tyr8]bradykinin receptor binding sites in the rat spinal cord: effects of neonatal capsaicin, noradrenergic deafferentation, dorsal rhizotomy and peripheral axotomy.

In vitro receptor autoradiography was used to localize, quantify and characterize [125I-Tyr8]bradykinin binding sites in all major spinal cord segments of normal rats and animals subjected to various chemical treatments and surgical lesions. [125I-Tyr8]bradykinin specific binding sites were predominantly located to superficial laminae of the rat dorsal horn, with the substantia gelatinosa showing the highest density of labelling (values ranging from 3.1 fmol/mg tissue in cervical to 4.5 fmol/mg tissue in lumbar segments). A moderate density (1.8-3.0 fmol/mg tissue) of specific binding was observed in lamina III, whereas in other areas, i.e. laminae I and IV-X, lower amounts of labelling were detected. Within the superficial laminae of the dorsal horn, [125I-Tyr8]bradykinin binding was largely distributed over the neurophil with some perikarya showing concentrations of labelling. In contrast, the ventral horn showed a rather homogeneous distribution of [125I-Tyr8]bradykinin binding over the neuropil, with silver grain alignments surrounding motoneuron perikaryas and proximal processes. Bradykinin, [Tyr8]bradykinin and B2 receptor antagonists (D-Arg[Hyp3,Thi5,D-Tic7,Oic8]bradykinin (Hoe 140), D-Arg[Tyr3,D-Phe7,Leu8]bradykinin, D-Arg[Hyp3, Leu8]bradykinin, D-Arg[Hyp2, Thi5,8,-Phe7]bradykinin D-Arg[Hyp3, D-Phe7, Leu8]bradykinin, Tyr0, D-Arg[Hyp3, D-Phe7, Leu8]bradykinin inhibited [125I-Tyr8]-bradykinin binding with very high subnanomolar affinities, while the B1 receptor agonist (Tyr0,des-Arg10-kallidin) and antagonist ([Leu8]-des-Arg9-bradykinin) did not significantly affect [125I-Tyr8]bradykinin binding at up to micromolar concentrations. Two weeks after unilateral lumbar dorsal rhizotomy (L1-L6) or peripheral lesions of the sciatic nerve, significant decreases ( +/- 50%) in [125I-Tyr8]bradykinin binding sites were found in ipsilateral laminae I-III of lumbar spinal cord.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Characterization of receptors for kinins and neurokinins in the arterial and venous mesenteric vasculatures of the guinea-pig.

1. In the present work, we have studied the microvascular reactivity of the arterial and venous mesenteric beds of the guinea-pig to bradykinin, neurokinins and other agents. 2. The vasoactive properties of three selective agonists for neurokinin receptors, namely [Sar9, Met (O2)11]SP (NK1), [beta-Ala8]NKA(4-10) (NK2) and [MePhe7]NKB (NK3), were evaluated on precontracted arterial and venous mesenteric vasculatures of the guinea-pig. The NK1-selective agonist, [Sar9,Met(O2)11]SP (1 to 1000 pmol), induced an endothelium-dependent and N omega-nitro-L-arginine methyl ester (L-NAME)-sensitive relaxation of the arterial vasculature precontracted with methoxamine, whereas the NK2 and NK3-selective agonists were virtually inactive at high doses (1000 pmol). 3. The three selective neurokinin receptor agonists were inactive in the non-precontracted arterial and venous mesenteric vasculatures as well as in the precontracted venous mesenteric vasculature. 4. Bradykinin (0.1 to 100 pmol) induced a marked dose- and endothelium-dependent vasodilatation of the precontracted arterial and venous vasculatures. ED50 values were 5.5 pmol on the arterial side and 1.9 pmol on the venous side. In contrast, desArg9-bradykinin was inactive at doses up to 1000 pmol. Furthermore, on the arterial and venous sides, a higher dose of bradykinin (1000 pmol), induced a biphasic effect, a transient constriction followed by a marked and sustained vasodilatation. The vasodilator effects of bradykinin were abolished by Hoe 140 (0.1 microM) and CHAPS, markedly reduced by L-NAME and were unaffected by [Leu8]desArg9-bradykinin (0.1 microM) on both sides of the mesenteric vasculature. Hoe 140 also abolished the arterial vasoconstrictions induced by high doses of bradykinin. 5. Noradrenaline, angiotensin II and endothelin-1 produced contractions on both sides of the mesenteric circulation, while acetylcholine (arterial side) and sodium nitroprusside (arterial and venous sides) caused vasodilatation.6. Our study supports the view that NK1 receptors responsible for vasodilatation are present solely in the endothelium of the arterial mesenteric vasculature of the guinea-pig. On the other hand, bradykinin(0.1 to 100 pmol) exerts predominantly vasodilator effects on both sides of the mesenteric vasculature via selective activation of B2 receptors located on the endothelium. The same receptor type located on the smooth muscle appears to be responsible for the arterial and venous constriction with high doses of bradykinin.

Animals↗

Pharmacology of kinin receptors: recent developments.

Fifteen years after the classification of kinin receptors into B1 and B2, both receptors have been shown to differ between species. New receptor types have been proposed and named B3, B4, and B5. However, it is not established whether different pharmacologic profiles describing B2 receptors in various species are indicative of different receptor types or of different subtypes (species dependent) subserving the same biological functions. To answer these questions, a systematic search of new pharmacologic tools was undertaken to find monoreceptor systems (isolated organs whose responses are contributed by a single receptor) as well as new selective agonists and competitive or noncompetitive antagonists. Classical pharmacologic experiments were performed in isolated organs for quantifying agonist activities in terms of pD2 and antagonist affinities in terms of pA2. Competitivity of antagonists was established from Schild plots. Results obtained in tissues from rabbits or guinea pigs indicate the existence of two different pharmacological entities, well characterized by selective agonists and competitive antagonists. In vivo experiments performed on anesthetized rabbits and guinea pigs have confirmed the B2 receptor heterogeneity between the two species. Correlations have been established between data obtained in rabbit and guinea pig tissues (biological assays) and in human receptors raised by genic transfection in Chinese hamster ovary (CHO) cells. A good correlation has been found between the IC50 values of kinins and derivatives to displace [3H]bradykinin from the membranes of CHO cells containing the human receptor and the pD2 or pA4 values of the same compounds in the rabbit jugular vein.

Animals↗

Kinin B1 and B2 receptors in the mouse.

A systematic study has been performed in various segments of the intestine and in the urinary bladder of the mouse to identify tissues that respond to kinins and possess B1 and (or) B2 receptors. The stomach was found to contain B1 and B2 functional sites that show pharmacological profiles compatible with B1 and B2 receptors, whereas the urinary bladder possesses only B2 sites. Myotropic responses mediated by B1 receptors show slow onset and reversibility compared with responses evoked by the activation of B2 receptors. The order of potency of agonists is bradykinin (BK) > or = [Hyp3]BK > [Aib7]BK on the B2 of both the stomach and urinary bladder, while desArg9-BK is inactive. The order of potency of agonists on the B1 receptor is [Lys]desArg9BK < or = desArg9BK, while BK and the other B2 agonists are inactive. B2 antagonists of the first generation, such as DArg[Hyp3,DPhe7]BK, act as partial agonists and show residual agonistic activities higher than 0.5, while HOE-140 shows high affinity and very little residual agonistic activity; WIN 64338 is almost inactive. On the B1 receptor, classical antagonists, such as [Leu8]desArg9BK and Lys[Leu8]desArg9BK, act as partial agonists. A modification of their structures has led to a new compound (R-715) that shows fairly high affinity (pA2 7.0) and little residual agonistic effect. This compound has been used for B1 receptor characterization in the stomach. Residual agonistic activities of both B2 and B1 antagonists appear to be mediated by B2 and B1 receptors, respectively. Data presented in this paper provide the pharmacological basis for sensitive and selective preparations to be used for studying B1 and B2 receptors in the mouse.

Animals↗

The tachykinin receptors inducing contractile responses of canine ileum circular muscle.

This study sought to determine which tachykinin receptors were involved in contractile responses of circular muscle to tachykinins infused into isolated segments of canine ileum. Selective agonists for neurokinin receptors NK1 and NK2 as well as for substance P (SP) and neurokinin A (NKA) were infused, and selective antagonists against NK1, NK2, and NK3 receptors were tested. The responses to a submaximal concentration of NKA were reduced by a selective NK2 antagonist, SR-48968, and abolished by a combination of this antagonist with an NK1 antagonist, either CP-96,345 or RP-67580. The selective NK2 agonist, [Nle10]NKA-(4-10), had low potency. We concluded that NKA acted on typical NK2 receptors and that is action was potentiated by its additional action on NK1 receptors. Neither the contractile responses to SP nor those to [Sar9,Met(O2)11]SP given in submaximal concentrations were inhibited by CP-96,345 or RP-67580, either alone or together with SR-48968. Indeed, the two NK1-selective antagonists potentiated responses to the selective NK1 agonist, [Sar9,Met(O2)11]SP, an effect attributed to previously demonstrated prejunctional inhibitory action of the agonist. The selective NK3 agonist, succinyl-[Asp6,N-Me-Phe8]SP-(6-11), was not effective as a contractile agent, even after block of nitric oxide synthase with N omega-nitro-L-arginine. The selective NK3 antagonist, R-487, was also ineffective in blocking responses to SP. Studies with an antagonist to H1 histamine receptors suggested that contractile actions of SP did not involve histamine release from mast cells. We concluded that, in addition to typical NK1 and NK2 receptors activated by NKA and a prejunctional inhibitory receptor activated by SP and [Sar9,Met(O2)11]SP, another tachykinin receptor existed on canine ileum to initiate contractions. It is not a typical NK1, NK2, or NK3 receptor.

Animals↗

Non-peptide angiotensin receptor antagonists bind to tachykinin NK3 receptors of rat and guinea pig brain.

[3H]Senktide, a highly selective tachykinin NK3 receptor agonist, was used to study tachykinin NK3 receptors of rat and guinea pig brain. Guinea pig brain membranes had a Kd of 3.9 +/- 0.5 nM and a Bmax of 42 fmol/mg. Dose-displacement experiments with neurokinins and selective tachykinin receptor agonists revealed the following order of potency: [MePhe7]neurokinin B > neurokinin B > substance P > neurokinin A. This order is typical for a tachykinin NK3 receptor. To further characterize the specificity of this receptor, the effects of unrelated compounds such as: bradykinin, angiotensin II, bombesin and their structural analogs were also evaluated on the binding of [3H]senktide. Unexpectedly, the angiotensin AT1 receptor antagonists, DuP 753 (2-n-butyl-4-chloro-5-hydroxymethyl-1-[2'-(1H-tetrazol-5-yl)bip hen yl-4-yl)methyl]imidazole potassium salt), L-158,809 (5,7-dimethyl-2-ethyl-3-[(2'-(1H-tetrazol-5-yl) [1,1'-biphenyl]-4-yl) methyl]-3H-imidazo[4,5-beta]pyridine H2O) and EXP 3174 (2-n-butyl-4-chloro-1-[2'-(1H-tetrazol-5-yl)biphenyl-4-yl)methyl]i midazole- 5-carboxylic acid), inhibited the binding of [3H]senktide to its receptor in the guinea pig brain membranes with IC50 values of 18 microM, 25 microM and 50 microM, respectively. Similar effects were also observed with rat brain membranes. Angiotensin II, saralasin ([Sar1,Val5,Ala8]angiotensin II, a peptide angiotensin AT1 receptor antagonist) and PD 123,319 (1-[4-(dimethylamino)3-methylphenyl]methyl-5-(diphenylacetyl)-4,5, 6,7- tetrahydro-1H-imidazo[4,5-c]pyridine-6-carboxylic acid, a known non-peptide angiotensin AT2 receptor antagonist) did not inhibit the binding of [3H]senktide to either type of membrane.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

Regional changes in the extravasation of albumin in the canine kidney: comparison of bradykinin and water diuresis.

This report describes the adaptation of the albumin bound Evans blue dye (EB) extraction technique and its use in identifying regional changes in albumin extravasation rates. We present data to justify our technical approach and highlight the use of this method by describing differences resulting from two different models of induced diuresis and natriuresis. Results observed under control conditions (Group 1) are compared to those obtained following the infusion of bradykinin (BK) into the left kidney (Group 2) or hypotonic saline-induced water diuresis (Group 3). EB and water content of tissue samples of cortex (CTX), outer medulla (OM), inner medulla (IM), and papilla (PAP) regions are reported. Under control conditions a significant heterogeneous distribution of EB and water content (wet/dry tissue weight) between zones was observed. Left kidney EB values for the CTX, OM, IM, and PAP in Group 1 were 125 +/- 11, 398 +/- 56, 763 +/- 51, and 741 +/- 52 micrograms EB/g dry tissue and respective wet/dry tissue ratios were 4.48 +/- 0.05, 5.10 +/- 0.19, 7.13 +/- 0.37, and 6.35 +/- 0.32. In Group 2, BK caused a selective increase in cortex EB content to 201 +/- 7 (P < 0.01) micrograms EB/g dry tissue, without altering water content values. Results of EB extraction in Group 3 revealed no change in the CTX but significant increases in the OM, IM, and PAP regions: 576 +/- 40 (P < 0.01), 910 +/- 60 (P < 0.01), and 850 +/- 69 (P < 0.05) micrograms EB/g dry tissue, respectively. Likewise, tissue water content values were unchanged in the CTX but significantly greater in the OM, IM, and PAP: 6.02 +/- 0.22, 8.90 +/- 0.25, and 8.40 +/- 0.17, respectively (P < 0.01, all three values). This technique clearly shows the regional heterogeneity of the renal microvascular network and allows the localization of intrarenal changes in albumin extravasation. This method provides evidence that BK increases albumin extravasation in the cortex only and that changes in the renal medulla are obtained in hypotonic saline-induced water diuresis.

Albumins↗

Bradykinin receptor types and B2 subtypes.

Bradykinin, desArg9BK, some agonist analogues and several antagonists have been tested in isolated organs in order to identify bradykinin B2 receptor subtypes. The initial pharmacological characterization was made in the rabbit jugular vein and the guinea pig ileum, two widely used B2 preparations which have shown marked differences in their sensitivities to both agonists and antagonists. The study has then been extended to peripheral tissues (stomach, colon, urinary bladder) of four species (the rat, guinea pig, rabbit and man) and to isolated vessels (rabbit jugular vein, rabbit vena cava, guinea pig pulmonary artery, rat portal vein) in order to determine if pharmacologic receptor subtypes may be related to species. It has been shown that B2 receptors in rat and guinea pig tissues belong to a similar pharmacological entity, a receptor which is different from that mediating the responses of rabbit and human tissues. Agonists order of potency ([Hyp3]BK > BK > [Aib7]BK) obtained in the rabbit jugular vein is different from that found in the guinea pig ileum (BK < or = [Aib7]BK > [Hyp3]BK). Affinities of competitive antagonists (for instance DArg[Hyp3,DPhe7,Leu8]BK) in rabbit tissues are higher than in guinea pig and rat tissues by at least 2 log units, while the non peptidic compound WIN 64338 is more active (also by two log units) in guinea pig than in human and rabbit tissues. The non competitive long-acting antagonist HOE 140 is very potent and equally active in the four species. Some antagonists (peptides without unnatural residues, peptides with unnatural residues, non peptides) have been shown to be specific for kinin receptors and selective for the B2. Altogether, the present results a) confirm the existence of two B2 receptor subtypes, b) suggest that receptor subtypes may be species dependent and c) indicate that the B2 receptor subtype found in the rabbit is similar to that found in man.

Animals↗

Neurokinin receptor subtypes characterized by biological assays.

Neurokinin receptors have been characterized by biological assays using naturally occurring and selective agonists as well as peptide and non peptide antagonists. Six preparations have been used: the rabbit vena cava and the rat urinary bladder, treated with a NK-2 receptor antagonist for the NK-1 receptor, the rabbit pulmonary artery and the hamster urinary bladder for the NK-2, the rat portal vein and the guinea pig ileum, treated with a NK-1 receptor antagonist, for the NK-3. Treatment with antagonists was required because of the presence (in some preparations) of two functional sites contributing to the biological effect. Differences in the order of potency of agonists between each couple of receptors have been demonstrated, especially with tachykinins and the selective agonists. Such differences are even more evident with antagonists, some of which show apparent affinity (pA2) values 1.5 to 3 log units higher in one than in the other member of each couple. Based on data obtained in pharmacological experiments, it is concluded that NK-1, NK-2 and NK-3 receptors show differences strong enough to justify the assumption that their coding and/or expression diverge among species.

Animals↗

NK1 and NK2 receptors are similar in man and rabbit.

A series of 15-18 compounds that act on NK1 or NK2 receptors as agonists or antagonists have been tested in the monoreceptor systems of the rabbit vena cava (NK1) and the rabbit pulmonary artery (NK2) for biological activities and for their ability to displace [3H] [Sar9, Met(O2)11]SP or [125I] NKA respectively from NK1 or NK2 human binding sites obtained by transfection and functional expression of the cDNAs for these receptor subtypes in CHO-K1 cells. For the two tachykinin receptors studied, positive highly significant correlations have been shown between binding and biological assays. Slopes of correlations are linear and near unity (r = 0.918 and 0.938). For NK1 and NK2 receptors the pharmacology in human and rabbit tissues appears to be very similar. The assays of biological activity on rabbit tissues may be therefore used to complement binding studies on human transfected cells to identify new antagonists for human tachykinin receptors.

Animals↗

Two NK-3 receptor subtypes: demonstration by biological and binding assays.

The existence of two neurokinin NK-3 receptor subtypes has been suggested on the basis of results obtained in binding assays. In the present study, we have confirmed the two NK-3 receptor subtypes by using data obtained in both biological and binding assays. Experiments have been performed in the rat portal vein and in the guinea-pig ileum treated with NK-1 and NK-2 selective antagonists, namely CP 96345 and SR 48968. Orders of potency of agonists on the rat portal vein are as follows: for neurokinins, NKB > NKA > SP; for tachykinins, KAS > ELE > PHY; and for selective agonist: [MePhe7]NKB >> senktide. On the guinea-pig ileum, the agonist rank orders of potency are: NKB > SP > NKA, ELE > KAS > PHY; and for selective agonist: [MePhe7]NKB = senktide. The apparent affinity of antagonists shows differences in both biological and binding assays. In fact, on the rat portal vein, SR 48968 is almost inactive (pA2 or IC50 approximately 4.8), while R-486 [Trp7, beta Ala8]NKA(4-10) shows a pA2 value of 7.45 and an IC50 of 5.6. An opposite pattern of activity is observed in the guinea-pig ileum, where SR 48968 shows a pA2 of 6.05 and an IC50 of 6.7, while R-486 has a pA2 of 6.1 and an IC50 of < 5.0. These results confirm the existence of two NK-3 sites differing pharmacologically. It is proposed to name NK-3A the receptor of the guinea-pig ileum and NK-3B the receptor of the rat portal vein.

Animals↗

Interleukin-6 secretion from human astrocytoma cells induced by substance P.

Functional NK-1 (substance P) receptors have been demonstrated previously on astrocytes from primary newborn rat brain cultures and human astrocytoma cells lines by specific [125I]-Bolton Hunter substance P (SP) binding and by SP-induced phosphoinositol turnover. In addition, these cells have been shown to release cytokines upon stimulation with interleukin-1 (IL-1) and lipopolysaccharide (LPS). Since SP has also been shown to induce cytokine release from rat glial cells, this neuropeptide may contribute to the pathophysiology of neuronal inflammation in humans by stimulating cytokine production in the brain. We, therefore, explored whether SP could induce U-373 MG human astrocytoma cells, via specific NK-1 receptor activation, to secrete interleukin-6 (IL-6), a cytokine implicated as a key mediator of immune and inflammatory responses. SP stimulated IL-6 production in a concentration-dependent manner with an MC50 (concentration inducing 50% of the maximum response) of 45 nM. IL-6 was detected in the cell culture supernatant fluids 2 h post stimulation and secretion peaked at 12 h. SP induced IL-6 secretion was not mediated by IL-1 since neutralizing anti-IL-1 (alpha and beta) antibody treatment had no effect on the SP response. The selective NK-1 receptor agonist, [Sar9, Met(O2)11]-SP, was comparably effective to SP in stimulating IL-6 secretion; however, selective NK-2 and NK-3 receptor agonists were 250-500-fold less effective. In addition, the non-peptide NK-1 receptor antagonist, (+/-)CP-96,345, inhibited SP (Ki = 4 nM), but not IL-1-induced IL-6 release. These selectivity and specificity studies confirmed the presence of functional NK-1 type receptors linked to IL-6 release. The results of this study support a role for SP as a modulator of immune and/or inflammatory processes in the human CNS.

Astrocytoma↗

Cardiovascular and behavioural effects of centrally administered tachykinins in the rat: characterization of receptors with selective antagonists.

1. The effects of intracerebroventricular (i.c.v.) injection of selective and potent NK1 (RP 67580), NK2 (SR 48968) and NK3 (R 486, [Trp7, beta-Ala8]NKA(4-10)) receptor antagonists were assessed on the cardiovascular and behavioural responses elicited by the i.c.v. injection of substance P (SP), neurokinin A (NKA) or [MePhe7]neurokinin B ([MePhe7]NKB) in the conscious freely moving rat. 2. SP, NKA and [MePhe7]NKB (5-650 pmol) evoked dose-dependent increases in mean arterial blood pressure (MAP) and heart rate (HR) with the rank order of potency SP > NKA > [MePhe7]NKB. The cardiovascular responses were accompanied by excessive face washing, grooming and wet dog shakes. 3. The cardiovascular effects and face washing behaviour induced by SP (25 pmol) were significantly reduced by the pre-injection (i.c.v., 5 min earlier) of RP 67580 (6.5 nmol). However, this antagonist failed to affect the central effects of 25 pmol NKA or [MePhe7]NKB. 4. The cardiovascular and behavioural responses (except for wet dog shakes) elicited by NKA (25 pmol) were significantly reduced by 6.5 nmol SR 48968. However, the latter antagonist had no effect on the SP or [MePhe7]NKB-mediated responses. 5. Both cardiovascular and behavioural effects produced by either SP or NKA (25 pmol) were completely abolished when rats were pretreated with a combination of RP 67580 (6.5 nmol) and SR 48968 (6.5 nmol), yet this combination of antagonists failed to modify the central effects of [MePhe7]NKB. 6. R 486 (6.5 nmol) inhibited the cardiovascular effects as well as wet dog shakes produced by [MePhe7]NKB, but it was inactive against the responses induced by either SP or NKA. 7. None of the tachykinin receptor antagonists or agonists caused motor impairment or respiratory distress. All antagonists blocked in a reversible manner and were devoid of intrinsic activity except R486 (6.5 nmol) which produced a transient increase of MAP and HR.8. These results suggest that the central effects of SP, NKA and [MePhe7]NKB are primarily mediated by central NK1, NK2 and NK3 receptors, respectively. However, a minor activation of NK2 receptors bySP and NK1 receptors by NKA was seen during blockade of both receptors. This study therefore supports the existence of functional NK1, NK2 and NK3 receptors in the adult rat brain.

Animals↗

Functional subtyping of neurokinin receptors on canine proximal colonic mucosa.

Functional subtyping of the receptors responsible for the neural and nonneural effects of substance P (SP) on the canine proximal colon were studied. Selective agonists and antagonists were used with two different in vitro preparations. The mucosa contained the muscularis mucosa and attendant submucosal plexuses, whereas the epithelium was devoid of both. We obtained the following results: [Sar9,Met(O2)11]SP (Sar9SP), a neurokinin-1 receptor agonist, stimulated both preparations; senktide, a neurokinin-3 agonist, evoked a response only on the mucosal preparation; [beta-Ala8]NKA4-10, a neurokinin-2 agonist, was ineffective on both preparations; tetrodotoxin completely inhibited the mucosal responses to senktide, but the inhibitory effects on Sar9SP were only partial; CP-96,345, a neurokinin-1-selective antagonist, inhibited both epithelial and mucosal responses to Sar9SP and R487 [Trp7,beta-Ala8]NKA4-10, a neurokinin-3 antagonist, inhibited mucosal responses to senktide. Thus, the neural effects involved both neurokinin-1 and neurokinin-3 receptors, whereas the nonneural effects were mediated by neurokinin-1 receptors alone. Neurokinin-2 receptors were functionally absent.

Animals↗

Characterization of kinin receptors by bioassays.

1. Using the classical pharmacological criteria recommended by Schild, namely the order of potency of selective agonists (e.g., bradykinin, desArg9-bradykinin, [Hyp3]BK and [Aib7]BK) and the apparent affinity of competitive antagonists (e.g., DArg[Hyp3,DPhe7,Leu8]BK and WIN 64338), we have attempted to characterize B2 receptor subtypes. It has been shown that vascular tissues (e.g., dog carotid and renal arteries, rabbit jugular vein and rabbit aorta) are very sensitive to kinin agonists and antagonists (pD2 and pA2 values for BK and HOE 140 on B2 receptors are 8.5-10.1 and 9.2-9.4, respectively, and for desArg9BK and desArg9[Leu8]BK on B1 receptors they are 7.3-8.6 and 7.3-7.8, respectively). Mechanisms of action of kinins differ between pharmacological preparations. Kinin may act directly on the smooth muscle (e.g., rabbit jugular vein and rabbit aorta) as well as indirectly through other endogenous mediators such as nitric oxide (EDRF) (e.g., dog carotid and renal arteries) and prostaglandins (e.g., dog renal artery). 2. Pharmacological analysis of rabbit jugular vein (RJV) and guinea pig ileum (GPI) has revealed different sensitivities to certain synthetic analogs of BK and to competitive B2 receptor antagonists between the two tissues. 3. Agonist order of potency ([Hyp3]BK > BK > [Aib7]BK) obtained for RJV differed from that obtained for GPI (BK > or = [Aib7]BK > [Hyp3]BK). Competitive antagonists such as DArg[Hyp3, DPhe7, Leu8]BK and WIN 64338 discriminate in favor of B2A (RJV) and B2B (GPI) receptor subtypes, respectively. These data demonstrate the existence of B2 receptor subtypes. Correlation between data obtained in the present study and those reported for binding to the human B2 receptor support the view that the human receptor is similar to that of the rabbit.

Animals↗