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Biomedical subjects

I Takayanagi

Publications and source records attributed to I Takayanagi.

At least 73 records · Page 4Linked to original sources

Endothelium-dependent vasodilation by LP-805, a novel vasodilating agent, on rat thoracic aorta.

1. In rat aortae with [E(+)-tissue] and without [E(-)-tissue] intact endothelium, LP-805 relaxed the preparations precontracted with 35.9 mM K+ and its action in E(+)-tissues was more potent than that in E(-)-tissues. Moreover, the inhibitory action of glibenclamide in E(-)-tissues was more potent than that in E(+)-tissues. 2. The relaxing action of LP-805 on E(+)-tissues treated with NG-nitro-L-arginine methyl ester (10 microM), a potent inhibitor of nitric oxide synthesis, was the same as that in E(-)-tissues. 3. Methylene blue (10 microM) also inhibited the LP-805 induced relaxation in E(+)-tissues. 4. Indomethacin (10 microM) had no effect on LP-805-induced relaxation in E(+)-tissues. 5. These results suggest that the vasorelaxant action of LP-805 involves the mechanism which causes the release of nitric oxide (NO) from vascular endothelium.

Animals↗

Effects of LP-805, a novel vasorelaxant agent, a potassium channel opener, on rat thoracic aorta.

1. In rat thoracic aorta, LP-805 (0.1-10 microM) caused the marked reduction of NE-induced maximum response and relaxed the low K+ (less than 35.9 mM)-induced contraction, in a concentration-dependent manner, but failed to relax the high K+ (65.9 mM)-induced contraction. 2. Glibenclamide (0.3-1 microM) caused a parallel shift of concentration-response curve produced by LP-805 for 25.9 mM K(+)-induced contraction and prevented the LP-805-induced reduction in maximum response evoked by NE in a concentration-dependent manner. 3. Glibenclamide (10 microM) prevented the LP-805 (10 microM)-induced decrease in cytosolic Ca2+ levels which was increased by 1 microM NE or 25.9 mM K+. 4. LP-805 (10 microM) increased basal 86Rb efflux, which was completely inhibited by 10 microM glibenclamide. 5. The results suggest that LP-805 causes a vasorelaxation as a consequence of the decrease in cytosolic Ca2+ levels due to the increase in K+ efflux via opening ATP-dependent K+ channels.

Animals↗

Effects of LP-805, a new vasodilating agent, on cytosolic Ca2+ and contraction in vascular smooth muscle of rat aorta.

1. LP-805 (0.1-10 microM) caused the reduction in norepinephrine (NE)-and serotonin (5-HT)-induced maximum response, a parallel shift of the concentration-response curve for prostaglandin F2 alpha (PGF2 alpha), in a concentration-dependent manner, but not K(+)-induced maximum response. 2. In Ca(2+)-free solution, LP-805 (0.1-10 microM) markedly inhibited the phasic contraction induced by 0.3 microM NE and the contraction induced by Ca2+ (0.1-2 mM) in the presence of 0.3 microM NE, in a concentration-dependent manner. Similar results were obtained in the presence of 5-HT (10 microM) or PGF2 alpha (10 microM). 3. In fura-2 loaded strips, ryanodine (10 microM) and LP-805 (10 microM) abolished 1 microM NE- and 30 microM 5-HT-induced phasic contractions, and inhibited the increase in cytosolic Ca2+ levels by both the agonists in the absence of external Ca2+, but had no influence on the following sustained contractions. 4. The effects of LP-805 on PGF2 alpha-induced Ca2+ transient and large sustained contraction were similar to those of ryanodine. 5. These results suggest that a vasodilatory effect of LP-805 might account for inhibiting the mobilization of external Ca2+ through receptor mediated passway and the Ca2+ release from a ryanodine sensitive Ca2+ store.

Animals↗

Effects of LP-805, a new vasodilating agent, on rat thoracic aorta.

1. In canine coronary arteries, the contraction induced by prostaglandin F2 alpha (PGF2 alpha), but not by 65.9 mM K+, were relaxed by LP-805 (0.01-10 microM) in a concentration-dependent manner. 2. In rat thoracic aorta, LP-805 (0.1-10 microM) also relaxed the preparations contracted with norepinephrine (NE) and PGF2 alpha, but did not relax the contraction produced by 65.9 mM K+. 3. LP-805 (3-10 microM) inhibited the increase in cytosolic Ca2+ levels and contractions evoked by NE (1 microM) in the absence or presence of external Ca2+ in rat thoracic aorta. 4. LP-805 (0.1-10 microM) inhibited synthesis of IP3 induced by NE (0.3 microM) and cyclic AMP phosphodiesterase activity, and increased intracellular cyclic AMP levels in rat thoracic aorta. 5. These results suggest that a vasodilatory effect of LP-805 is due to inhibiting the increase in cytosolic Ca2+ levels via stimulation of various receptors, modulating second messenger synthesis.

Adenylyl Cyclases↗

Effects of ageing on responses of rabbit iris smooth muscles to agonists and field stimulation.

1. The pharmacological properties of contractile responses of sphincter and dilator to field stimulation did not change with age, so that innervation of both these muscles does not change apparently with age. 2. In the sphincter, no age-related change was observed in muscarinic cholinoceptor mechanisms. Tension induced by field stimulation increased with age from 5 to 13 weeks, decreased from 40 to 125 weeks and did not change thereafter. Age-related change in tension is due to change in the amount of acetylcholine released by stimulation. 3. In the dilator, the pD2 value of norepinephrine increased with age from 5 to 13 weeks, decreased from 13 to 125 weeks and did not change thereafter. The pD2 value of norepinephrine was proportional to the receptor reserve, suggesting that changes in alpha 1-adrenoceptor mechanisms are due to changes in receptor reserve. No age-related change was observed in affinity of alpha 1-adrenoceptors. 4. The tension of the dilator induced by field stimulation increased with age from 5 to 13 weeks did not change from 13 to 180 weeks. The age-related change in tension is due to change in the amount of norepinephrine released by stimulation.

Acetylcholine↗

Alpha 1-adrenoceptor blocking activities of bevantolol hydrochloride(NC-1400) and labetalol in rat isolated thoracic aorta--do they distinguish between subtypes?

1. alpha 1-adrenoceptor blocking activity of bevantolol(NC-1400) was tested in the rat thoracic aorta, comparing with that of labetalol. 2. In alpha 1-adrenoceptor blocking activity, bevantolol(NC-1400) was 1/20th as potent as labetalol. 3. The pA2 values of bevantolol(NC-1400) and labetalol estimated in the rat thoracic aorta were compared with those in the rabbit thoracic aorta, which were reported by Takayanagi et al. [Takayanagi I., Kizawa Y., Iwasaki S. and Nakagoshi A. (1987) Gen. Pharmac. 18, 87-89]. 4. The pA2 values of bevantolol(NC-1400) and labetalol were approximately 1 order of magnitude higher in rat aorta than in rabbit aorta, suggesting that both the drugs distinguish between subtypes of alpha 1-adrenoceptors.

Adrenergic beta-Antagonists↗

Regional differences of the contractile responses to acetylcholine and neurokinin A in rabbit airway: heterogeneous distribution of the metabolic enzymes.

1. Experiments were designed to determine whether differences exist in the sensitivity to muscarinic and tachykinin agonists in rabbit airways. 2. The rank order of sensitivity (pD2 value) to acetylcholine was: trachea > proximal bronchus > distal bronchus, whereas no regional difference was observed in the sensitivity to carbamylcholine which is resistant to acetylcholinesterase. 3. Acetylcholinesterase activity was greater in the distal than in the proximal airway. 4. In the absence of the peptidase inhibitor, phosphoramidon, the pD2 values of neurokinin A (NKA) and substance P (SP) in trachea were significantly greater than that in bronchus, whereas no regional difference was observed in the NK1 selective agonist, substance P methyl ester (SPOMe). 5. Application of phosphoramidon (10 microM) to avoid peptide degradation abolished the regional difference of the pD2 values of SP. 6. In conclusion, regional differences in sensitivities to acetylcholine and NKA in the rabbit airway were suggested to be due to distribution to the metabolic enzymes of these drugs.

Acetylcholine↗

Relationship between potency of L-isoprenaline and beta-adrenoceptor density estimated in single cells from tracheal smooth muscles of guinea pigs of different ages.

An age-related change in potency of L-isoprenaline in the presence of ascorbic acid, desmethylimipramine, corticosterone, pargyline, and phentolamine was obtained in tracheal strips from guinea pigs of differing ages between 6 and 40 weeks. The potency in the strips from 100-week-old guinea pigs did not significantly differ from that in strips from 40-week-old animals. Single cells were prepared from the tracheal muscles of 6-, 10-, 40-, and 100-week-old guinea pigs. The specific binding of [3H]dihydroalprenolol to the single cells was saturable. The dissociation constants of [3H]dihydroalprenolol were in good agreement with those of the membrane fractions from the guinea-pig tracheal muscles, and did not change with age. An excellent relationship between the potency of L-isoprenaline and the maximum binding of [3H]dihydroalprenolol estimated in the preparations from 6- to 40-week-old guinea pigs was found, suggesting that the increase in the potency of L-isoprenaline is due to the increase in the maximum binding or receptor density. The value in the preparations from 100-week-old guinea pigs deviated significantly from the regression line. This suggests the possibility that the decrease in potency in the strips from 100-week-old animals is due to a change in post beta-receptor processes in responsiveness.

Aging↗

[Modification of classical drug receptor mechanisms].

It is generally accepted that full and partial agonists interact with the same receptors according to the classical receptor mechanisms. We have modified the drug receptor mechanisms of M3-, alpha 1- and beta-receptors. Among the muscarinic receptors, there are two subtypes of M3-cholinoceptors, propylbenzilylcholine mustard (PrBCM)-sensitive receptors and (PrBCM)-resistant ones. Full agonists contract the guinea pig ileum through both types of cholinoceptors, while the partial agonists produce contractions through only the PrBCM-sensitive receptors. Two subtypes of alpha 1-adrenoceptors, alpha 1A and alpha 1B, were demonstrated in some arteries. Full agonists contracted the rabbit aorta through both the alpha 1A- and alpha 1B-adrenoceptors, while the partial agonists mediated contraction through only the alpha 1A-adrenoceptors. beta-Chloroethylamines (PrBCM and chloroethylclonidine) can discriminate the subtype of M3- or alpha 1-receptors in the presence of GTP. beta-Adrenoceptors have two different types of binding sites, high and low affinity sites. The competitive antagonistic effect of the partial agonist is due to their ability to compete with the full agonists for the high affinity site, while the partial agonists interact with the low affinity site to induce the beta-adrenergic effect. A regional difference in alpha 1-adrenoceptor mechanisms was discussed. The potency of norepinephrine in veins is related to alpha 1-adrenoceptor densities. In contrast, the potency of norepinephrine is linearly related to the agonist dissociation constant. This discrepancy suggests a qualitative difference between alpha 1-adrenoceptor mechanisms in the veins and arteries.

Adrenergic alpha-Agonists↗

Comparison of contractile mechanisms by carbachol and ATP in detrusor strips of rabbit urinary bladder.

Contractile mechanisms by carbachol and ATP were compared in the detrusor strips of rabbit bladder. To exclude modulation of the agonists-induced responses by intramurally synthesized prostaglandins, all the experiments were done in the presence of the potent cyclooxygenase inhibitor flurbiprofen (1 microM). The concentration-response curves for carbachol and ATP were shifted to the right by 6- 10-fold by verapamil (10 microM), which abolished the K-induced contraction of the atropinized detrusor completely. A similar curve for carbachol was obtained in the absence of extracellular Ca [(Ca)o], but the contraction by ATP below 1 mM was more reduced by (Ca)o-depletion than by verapamil. Under Ca-free conditions, repeated applications of ATP resulted in no response, but those of carbachol induced reproducible contractions. These results suggest that carbachol and ATP induces Ca-influx through L-type Ca channels and releases Ca from the Ca stores. However, while carbachol might increase the sensitivity of contractile machinery to Ca on the one hand, ATP would open additional, verapamil-insensitive Ca channels.

Adenosine Triphosphate↗

The contraction mechanisms for norepinephrine in single cells prepared from tracheal smooth muscles of guinea pig of different ages.

Single cells were prepared from guinea pig tracheal smooth muscle and used in an experiment on the contraction mechanisms for norepinephrine and a study on the change of alpha 2-adrenoceptors with age. Specific bindings of [3H]p-aminoclonidine to the single cells from the tracheal smooth muscles of 6- and 40-week-old guinea pigs were saturable and analyzed by Scatchard plot. The maximum number of [3H]p-aminoclonidine binding sites was larger in the preparation from 40-week-old guinea pigs than that from 6-week-old animals, while its dissociation constant did not change with age. The amount of prostaglandin F2 alpha released from the single cells was increased by norepinephrine, not affected by phenylephrine, and reduced by an alpha 2-antagonist such as yohimbine. The amount released by norepinephrine was significantly larger in the preparation from 6-week-old guinea pigs than that from 40-week-old animals. These results suggest that the age-related decrease in the potency of norepinephrine is due to reduction in the amount of excitable prostaglandin F2 alpha released by the drug, but not to a change in the total amount of alpha 2-adrenoceptors or the dissociation constant of the drug with respect to these adrenoceptors. Furthermore, alpha 2-adrenoceptors in the tracheal smooth muscle cell play an important role in the release of prostaglandin F2 alpha and the production of contractile responses of these muscles.

Age Factors↗

Alpha 1B-adrenoceptor mechanisms in rabbit iris dilator.

Rabbit isolated iris dilator strips were contracted by norepinephrine, an alpha 1A- and alpha 1B-nonselective agonist, but not by methoxamine, an alpha 1A-selective agonist. The concentration-response curve for norepinephrine was considerably inhibited by chloroethylclonidine. The pA2 values for WB4101 and 5-methylurapidil were 8.16 +/- 0.09 and 7.84 +/- 0.08 (means +/- S.E. of 8-12 experiments), respectively, and significantly smaller than the values reported in the rat renal artery and thoracic aorta, and rabbit bronchus, where the alpha 1A-subtype is predominant. These results suggest that the rabbit iris dilator contains primarily the alpha 1B-subtype. Clonidine and tizanidine did not contract the rabbit iris dilator but shifted the curve for norepinephrine in a parallel manner, suggesting that they interact with the alpha 1B-subtype and act as competitive antagonists in this muscle. Methoxamine (up to 10(-3) M) had no effect on the contractile response to norepinephrine, suggesting that methoxamine does not interact with the alpha 1B-subtype.

Animals↗

Characterization of subtype of propylbenzilylcholine mustard (PrBCM)-sensitive and -resistant muscarinic cholinoceptors in guinea pig ileal muscle.

The subtype of propylbenzilylcholine mustard (PrBCM)-sensitive and -resistant muscarinic cholinoceptors in guinea pig ileal muscle was examined using four selective muscarinic antagonists, pirenzepine, AF-DX 116, himbacine and 4-DAMP. The pA2 values of the four antagonists against pilocarpine were not different from their values against carbachol after the treatment with PrBCM and was identified with the values for the m3 subtype. These results suggest that the subtype of PrBCM-sensitive and -resistant muscarinic cholinoceptors in guinea pig ileal muscle is the m3 subtype only and not other subtypes.

4-Aminopyridine↗

Pharmacological characterization of contractile responses induced by alpha 1-agonists, norepinephrine and clonidine, by selective antagonists of their subtypes in rabbit thoracic aorta.

In the rabbit isolated thoracic aorta, WB 4101 and 5-methylurapidil dose-dependently shifted the concentration-response curves for norepinephrine to the right. Schild plots showed that the inhibition of responses for WB 4101 and 5-methylurapidil was biphasic, implying that norepinephrine acted through two receptor populations. Clonidine produced a concentration-dependent contraction in the isolated rabbit thoracic aorta. WB 4101 and 5-methylurapidil antagonized the contractions for clonidine, and the Schild plot to both antagonists against clonidine yielded a monophasic slope. Schild plots of the results obtained from the inhibition by WB 4101 and 5-methylurapidil for norepinephrine in strips pretreated with chloroethylclonidine yielded a straight line with a slope of unity. Specific binding of [3H]prazosin in the aortic membrane preparations was saturable. The Hill coefficient obtained from the inhibition curves for clonidine was significantly different from unity. Clonidine interacted with two binding sites labelled by [3H]prazosin, but the low affinity site was completely eliminated by pretreatment with 10 microM chloroethylclonidine. These results suggest that the subtype activated by norepinephrine is different from that activated by clonidine, and that norepinephrine-induced contraction through both alpha 1A- and alpha 1B-subtypes and clonidine through only the alpha 1A-subtype in the rabbit thoracic aorta.

Adrenergic alpha-Agonists↗

Effects of guanosine 5'-triphosphate on the specificity of irreversible alpha 1-antagonisms by phenoxybenzamine in rabbit thoracic aorta.

Phenylephrine displacement curves for the specific binding of [3H]prazosin in the membrane fraction prepared from rabbit thoracic aorta showed high- and low-affinity sites with slope factors significantly less than unity. The irreversible alpha 1B-antagonist phenoxybenzamine shifted the binding sites to single high affinity sites with a slope factor close to unity in the presence of the metabolically stable GTP analog GTP gamma-S. These results indicate that phenoxybenzamine may have affected selectively the low affinity site to phenylephrine in the presence of GTP gamma-S.

Adenosine Triphosphate↗

Identification and characterization of the alpha 2D-adrenoceptor subtype in single cells prepared from guinea pig tracheal smooth muscles.

Single cells were prepared from guinea pig tracheal smooth muscle and used in binding studies of [3H]p-aminoclonidine. Specific binding of [3H]p-aminoclonidine was saturable to a single class of receptors, with an equilibrium dissociation constant (KD) of 1.62 +/- 0.17 nM and a density (Bmax) of 6.20 +/- 0.78 x 10(4) sites/cell. Competition studies were carried out with several adrenergic antagonists. The rank order of potency was idazoxan = phentolamine > yohimbine > prazosin = corynanthine. These results suggest that the alpha 2-adrenoceptor in guinea pig tracheal smooth muscle represents a single pharmacological subtype, which is designated as alpha 2D.

Adrenergic alpha-Agonists↗

[Transition of drug receptor mechanisms].

It is generally accepted that the agonists, full agonist and partial agonist, interact with the same receptors according to the classical receptor mechanisms. We tried to modify the drug receptor mechanisms in muscarinic cholinoceptors, alpha 1-adrenoceptors and beta-adrenoceptors. In the muscarinic cholinoceptor, there are two subtypes of M3-cholinoceptors, propylbenzilylcholine mustard (PrBCM)-sensitive receptors and PrBCM-resistant ones. The full agonists contract the longitudinal muscle through the interaction of two cholinoceptors, PrBCM-sensitive and-resistant ones, while the partial agonists produce the contraction through only the activation of PrBCM-sensitive ones. Upon activation PrBCM-sensitive receptors may use cytosolic Ca2+ more effectively than PrBCM-resistant receptors. In the alpha 1-adrenoceptor, the full agonist induces contraction through both alpha 1A and alpha 1B subtypes and the partial agonist through only alpha 1A subtype. The adrenoceptors activated by full agonist may be partly different from that by partial agonist in the arteries. In both the common iliac artery and thoracic aorta treated with the irreversible antagonist, phenoxybenzamine the slopes of schild plots of the results obtained from an antagonism between full agonist (phenylephrine) and alpha 1A-selective competitive antagonist (WB4101) equal to 1, suggesting that phenoxybenzamine preferably interacts with alpha 1B subtype. In the beta-adrenoceptor, the pD2-values of the partial agonists obtained from the concentration-response curves are significantly different from their pA2-values against full agonist (isoprenaline). The Scatchard plot of the specific [3H]befunolol (the partial agonist) binding showed two affinity sites of the receptors in the absence of Gpp(NH)p but the low affinity site was reduced while the high affinity site was not affected in the presence of Gpp(NH) p. The beta-adrenergic partial agonists are able to discriminate these two different binding sites of the beta-adrenoceptors. Our results suggest that the receptors activated by full agonists are partly different from those by partial agonists in muscarinic cholinoceptors, alpha 1- and beta-adrenoceptors, and that the irreversible antagonist can discriminate between the sites interact with full agonists and those with partial agonists in muscarinic cholinoceptors and alpha 1-adrenoceptors.

Animals↗

Effect of ageing on alpha 1A-adrenoceptor mechanisms in rabbit isolated bronchial preparations.

Effect of aging on alpha 1A-adrenoceptor mechanisms in rabbit bronchial preparations was studied. The potency (pD2 value) of norepinephrine increased with age from 5 to 13 weeks and thereafter did not alter with age from 13 to 180 weeks. The affinity of norepinephrine (pKA value) and of a selective alpha 1A-adrenoceptor blocker, 5-methylurapidil (pA2 value) did not alter with age. Efficacy of norepinephrine was proportional to receptor reserve (pD2-pKA). These results suggest that age-related changes in alpha 1A-adrenoceptor mechanisms are due to changes in receptor reserve or total concentration of receptors, but not to changes in affinity of drugs to alpha 1A-adrenoceptors and in contraction mechanisms.

Aging↗