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Biomedical subjects

Y Kasuya

Publications and source records attributed to Y Kasuya.

At least 55 records · Page 3Linked to original sources

Buprenorphine exerts its antinociceptive activity via mu 1-opioid receptors.

The mechanism of the antinociceptive effect of buprenorphine was assessed by administering selective mu-, mu1--, delta- and kappa-opioid receptor antagonists in mice. Intraperitoneal administration of buprenorphine, at doses of 0.3 to 3 mg/kg, produced dose-dependent antinociception in the tail-flick test. The antinociceptive activity of buprenorphine did not result from the activation of kappa- or delta-opioid receptors, since treatment with either nor-binaltorphimine, a selective kappa-opioid receptor antagonist, or naltrindole, a selective delta-opioid receptor antagonist, was completely ineffective in blocking buprenorphine-induced antinociception. However, the antinociceptive effect of buprenorphine was significantly antagonized by beta-funaltrexamine, a selective mu-opioid receptor antagonist. Moreover, selective mu1-opioid receptor antagonist, naloxonazine and naltrexonazine, also significantly antagonized the antinociceptive effect of buprenorphine. Co-administration of kappa- and delta-opioid receptor antagonist with the mu-opioid receptor antagonists had no significant effect on the antagonistic profiles of the mu-opioid receptor antagonists on the antinociceptive effect of buprenorphine. These results suggest that buprenorphine acts selectively at mu1-opioid receptors to induce antinociceptive effects in mice.

Analgesics, Opioid

Antinociceptive effect of dihydroetorphine in diabetic mice.

The antinociceptive potency of dihydroetorphine in diabetic mice was examined. Subcutaneous administration of dihydroetorphine produced a dose-dependent antinociception in both non-diabetic and diabetic mice. The antinociceptive potency of s.c. dihydroetorphine was less in diabetic mice than in non-diabetic mice. The antinociception induced by i.c.v. dihydroetorphine (0.02 microgram) was also significantly less in diabetic mice than in non-diabetic mice. The antinociceptive effects of dihydroetorphine (10 micrograms/kg i.p.) in both diabetic and non-diabetic mice were significantly antagonized by s.c. administration of beta-funaltrexamine, a selective mu-opioid receptor antagonist. Furthermore, the antinociceptive effect of dihydroetorphine (10 micrograms/kg i.p.) in non-diabetic mice, but not in diabetic mice, was also significantly antagonized by naloxonazine, a selective mu 1-opioid receptor antagonist. The time course and the potency of the antinociceptive effect of dihydroetorphine (10 micrograms/kg i.p.) in diabetic mice were similar to those in naloxonazine-treated non-diabetic mice. Naltrindole, a selective delta-opioid receptor antagonist, or nor-binaltorphimine, a selective kappa-opioid receptor antagonist, had no significant effect on the antinociceptive effect of dihydroetorphine (10 micrograms/kg i.p.) in both diabetic and non-diabetic mice. These results suggest that dihydroetorphine produces an antinociceptive effect through the activation of both mu 1- and mu 2-opioid receptors in mice. Furthermore, the reduction in dihydroetorphine-induced antinociception in diabetic mice, as compared with non-diabetic mice, may be due to the hyporesponsive to supraspinal mu 1-opioid receptor-mediated antinociception in diabetic mice.

Analgesia

Molecular identification of guanine-nucleotide-binding regulatory proteins which couple to endothelin receptors.

The coupling of two endothelin receptor subtypes (ET(A) and ETB) to several types of guanine-nucleotide-binding regulatory protein (G protein) was examined. Two subtypes of receptor cDNAs were transfected alone or together with four different G protein alpha subunit cDNAs in COS-7 cells. In ET(A) receptor-transfected cells, endothelin-1 (ET-1) activated phosphatidylinositol-specific phospholipase C as measured by the production of phosphatidylinositol 1,4,5-trisphosphate [Ins(1,4,5)P3]. ETB-receptor-transfected cells also produced Ins(1,4,5)P3 on stimulation by ET-1. The ET-1-induced production of Ins(1,4,5)P3 was markedly higher in G alpha q-cotransfected or G alpha 11-cotransfected cells than in cells transfected with each receptor alone. ET-1 also stimulated production of cAMP in ET(A) or ETB receptor-transfected cells. The production of cAMP was synergistically amplified by G alpha s co-transfection with each receptor. In contrast, when G alpha i2 was co-transfected with the ET(A) or ETB receptor, ET-1 displayed an inhibitory action on forskolin-stimulated cAMP accumulation. Pertussis-toxin treatment of the G alpha i2-transfected cells resulted in abolition of the endothelin-induced inhibition of cAMP accumulation. These observations indicate that both ET(A) and ETB receptors are able to couple to Gq, G11, Gs and Gi2, and suggest that endothelin receptors stimulate multiple effectors via several types of G protein simultaneously. The overall effects induced by endothelin may differ in cell types depending on the level of expression of each G-protein subtype in the cell.

Animals

Expression of a cell adhesion molecule, neuropilin, in the developing chick nervous system.

Neuropilin (previously known as the A5 protein) is a membrane protein identified in Xenopus and is presumed to be involved in the target recognition of the optic nerve fibers. We have isolated cDNAs encoding the chick homologue of neuropilin, using the Xenopus neuropilin cDNA as a hybridization probe. The predicted amino acid sequence of chick neuropilin is 75% identical to that of the Xenopus homologue. A cell aggregation assay showed that fibroblasts transfected with the chick neuropilin cDNA acquired cell adhesiveness. This adhesion is mediated by a heterophilic interaction between neuropilin and protease-sensitive molecules on fibroblasts. The expression of chick neuropilin is restricted to certain neuronal circuits and is dynamically regulated during development, as is the Xenopus homologue. However, their expression patterns differed significantly in the visual systems between the two species: In the chick optic tectum, the localization of neuropilin is confined to layers d and e of SGFS, two of the six layers receiving the retinal input; the chick optic nerve fibers do not express neuropilin; in the chick retina, amacrine cells transiently express neuropilin. Cultured neurons of the dorsal root ganglia express chick neuropilin on their neurites including growth cones. These results suggests that neuropilin functions as a cell adhesion molecule during the formation of certain neuronal circuits in vivo.

3T3 Cells

Endothelium-derived hyperpolarizing factor does not contribute to the decrease in endothelium-dependent relaxation in the aorta of streptozotocin-induced diabetic rats.

1. We examined the contribution of endothelium-derived hyperpolarizing factor (EDHF) to the impairment of endothelium-dependent relaxation caused by acetylcholine (ACh) in the aorta of streptozotocin-induced diabetic rats, by using N omega-L-nitro-arginine methylester (L-NAME) and tetraethylammonium chloride (TEA) to inhibit nitric oxide (NO) and EDHF, respectively. 2. ACh-induced relaxation of the aorta decreased in diabetic rats. In contrast, sodium nitroprusside-induced relaxation was the same in diabetic rats and control rats. 3. Treatment with 5 x 10(-7) M L-NAME resulted in a right shift of the dose-response curves of ACh-induced relaxation in the aorta. The shift was greater in the control aorta. 4. Treatment with 5 x 10(-4) M TEA resulted in a similar right shift in both the control and diabetic aorta. 5. Therefore, while endothelium-derived NO appears to contribute to the impairment of ACh-induced endothelium-dependent relaxation in the aorta of diabetic rats, EDHF does not.

Acetylcholine

Cardiovascular selectivity of 1,4-dihydropyridine derivatives, efonidipine (NZ-105), nicardipine and structure related compounds in isolated guinea-pig tissues.

1. The cardiovascular selectivities of 1,4-dihydropyridine derivatives, efonidipine (NZ-105), nicardipine, 3NZ5NIC (the drug with NZ-105-type side-chain at C3 position and nicardipine-type at C5) and 3NIC5NZ (the drug with nicardipine-type side chain at C3 and NZ-105-type at C5) were studied in vitro. 2. All four compounds caused relaxation of guinea-pig aortae precontracted with a high K+. The pEC50 values were 7.5, 8.3, 8.1 and 5.6, for NZ-105, nicardipine, 3NIC5NZ and 3NZ5NIC, respectively. The relaxation produced by NZ-105 was slower in onset than those produced by the other compounds. The rate constant K(hr-1) of the relaxations were 0.59, 1.31, 1.02 and 1.24, for NZ-105, nicardipine, 3NIC5NZ and 3NZ5NIC, respectively. 3. In the electrically paced guinea-pig papillary muscles, NZ-105, 3NIC5NZ and 3NZ5NIC, even at concentrations as high as 10(-6) M, slightly decreased the contractile force (by 44.9 +/- 7.1%, 58.6 +/- 5.4% and 52.2 +/- 3.9%, respectively), whereas 10(-6) M nicardipine decreased the force by 84.9 +/- 3.3%. The negative inotropic effect of NZ-105 and 3NIC5NZ, but not that of 3NZ5NIC or nicardipine, was over 10 times weaker than their vasorelaxant effect. 4. In the guinea-pig right atria, NZ-105 and nicardipine at 10(-8) M decreased the spontaneous contraction rate by 67.9 +/- 15.0% and 39.7 +/- 15.4%, respectively. 3NIC5NZ at 3 x 10(-9) M and 3NZ5NIC at 3 x 10(-8) M had little effect on the rate, whereas 10(-8) M 3NIC5NZ and 10(-7) M 3NZ5NIC arrested the beating within 3 hr after administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Plexin: a novel neuronal cell surface molecule that mediates cell adhesion via a homophilic binding mechanism in the presence of calcium ions.

Plexin (previously referred to as B2) is a neuronal cell surface molecule that has been identified in Xenopus. cDNA cloning reveals that plexin has no homology to known neuronal cell surface molecules but possesses, in its extracellular segment, three internal repeats of cysteine clusters that are homologous to the cysteine-rich domain of the c-met proto-oncogene protein product. The exogenous plexin proteins expressed on the surfaces of L cells by cDNA transfection mediate cell adhesion via a homophilic binding mechanism, under the presence of calcium ions. Plexin is expressed in the receptors and neurons of particular sensory systems. These findings indicate that plexin is a novel calcium-dependent cell adhesion molecule and suggest its involvement in specific neuronal cell interaction and/or contact.

Amino Acid Sequence

Effects of phorbol ester on vasodilation induced by endothelium-dependent or endothelium-independent vasodilators in the mesenteric arterial bed.

The effects of phorbol ester, phorbol 12-myristate 13-acetate (PMA), on vasodilation induced by endothelium-dependent or independent vasodilators in the mesenteric arterial bed were examined. In mesentery precontracted with methoxamine, acetylcholine (ACh) produced a concentration-dependent vasodilation, but ACh-induced vasodilation was significantly reduced when the tonus of the mesentery was raised by an equieffective concentration of PMA. Sodium nitroprusside (SNP) and forskolin also caused a concentration-dependent relaxation in the mesenteric arterial bed pre-contracted with methoxamine, but could not induce relaxation in mesentery precontracted with PMA. In mesentery precontracted with PMA or methoxamine, ACh-induced vasodilation was significantly inhibited by tetraethylammonium (TEA), but not by ouabain, glibenclamide, or apamin. ACh-induced vasodilation was significantly inhibited by NG-nitro-L-arginine (L-NNA), whereas L-NNA was not capable of effectively inhibiting the ACh-induced vasodilation of the mesentery precontracted with PMA. These results suggest that stimulation of protein kinase C (PKC) by phorbol ester (PMA) in the mesenteric arterial bed inhibits the relaxation of vascular smooth muscle (VSM) in response to cyclic nucleotides. Furthermore, the endothelium of the mesenteric arterial bed may release endothelium-derived hyperpolarizing factor (EDHF), in addition to nitric oxide (NO), into the mesentery.

Acetylcholine

Effects of aminoglycoside antibiotics on cholinergic autonomic nervous transmission.

The effects of eight aminoglycoside antibiotics, gentamicin, neomycin B, ribostamycin, dibekacin B, kanamycin A, streptomycin, tobramycin and amikacin, and two non-aminoglycoside antibiotics, tetracycline and ampicillin, on cholinergic autonomic nervous transmission were studied using isolated guinea-pig ileum preparation. The aminoglycoside antibiotics blocked the transmurally elicited twitches of the ileum in a concentration-dependent manner. The blocking effect of aminoglycosides was biphasic, i.e., an initial reduction followed by a spontaneous partial recovery. Dibekacin was the most potent parasympathetic inhibitor, followed by neomycin B, tetracycline, gentamicin, streptomycin, kanamycin A, tobramycin, ribostamycin, and amikacin. Ampicillin had no blocking effect. The tested antibiotics did not affect acetylcholine (ACh)-induced contraction of the ileum, except for high concentrations of neomycin B, gentamicin, and streptomycin. The three antibiotics shifted the dose-response curves for ACh to the right without affecting the maximal contraction. Naloxon, yohimbine, hexamethonium and choline chloride failed to eliminate the blocking effect of the antibiotics on twitches of the ileum induced by transmural stimulation. However, increase of the extracellular Ca ion concentration virtually abolished the blockade. Dibekacin blocked the evoked but not the spontaneous release of ACh and shifted the dose-response curve of CaCl2-dependent transmurally elicited contractions of the ileum to the right. These results suggest that the site for the block of aminoglycosides is mainly the cholinergic nerve terminal, where they reduce the available Ca ions required for the release of ACh.

Acetylcholine

Modification of mu-opioid agonist-induced locomotor activity and development of morphine dependence by diabetes.

We examined the locomotor-enhancing action of mu-opioid receptor agonists, such as morphine and [D-Ala2, N-MePhe4, Gly-ol5]enkephalin (DAMGO), and physical dependence on morphine in diabetic and nondiabetic mice. Morphine (5-20 mg/kg, s.c.) and DAMGO (1-4 nmol, i.c.v.) had a dose-dependent locomotor-enhancing effect in both nondiabetic and diabetic mice. The locomotor-enhancing effects of morphine and DAMGO were significantly less in diabetic mice than in nondiabetic mice, and were significantly reduced after pretreatment with either beta-funaltrexamine (20 mg/kg, s.c.), a selective mu-opioid receptor antagonist, or naloxonazine (35 mg/kg, s.c.), a selective mu1-opioid receptor antagonist. Both diabetic and nondiabetic mice were chronically treated with morphine (8-45 mg/kg, s.c.) for 5 days. During this treatment, neither diabetic nor nondiabetic mice showed any signs of toxicity. After morphine treatment, withdrawal was precipitated by injection of naloxone (0.3-10 mg/kg, s.c.). Several withdrawal signs, such as weight loss, diarrhea, ptosis, jumping and body shakes, were observed after naloxone challenge in morphine-dependent nondiabetic mice. Although morphine-dependent diabetic mice showed greater weight loss than nondiabetic mice, the incidence of jumping and body shakes after naloxone challenge in diabetic mice were lower than that in nondiabetic mice. These results suggest that diabetic mice are selectively hyporesponsive to mu1-opioid receptor-mediated locomotor enhancement. Furthermore, diabetes may affect mu1-opioid receptor-mediated naloxone-precipitated signs of withdrawal from physical dependence on morphine.

Animals

Effect of diabetes on the morphine-induced inhibition of gastrointestinal transit.

The effect of diabetes on the morphine-induced inhibition of gastrointestinal transit was examined in mice. Morphine dose-dependently inhibited gastrointestinal transit after s.c. administration in both non-diabetic mice and diabetic mice. There was no significant difference between the ED50 values for this antitransit effect of morphine in non-diabetic and diabetic mice. The gastrointestinal antitransit effect of morphine was significantly antagonized by pretreatment with beta-funaltrexamine (40 mg/kg, s.c.), a selective mu-opioid receptor antagonist, in both non-diabetic and diabetic mice. However, pretreatment with naloxonazine (35 mg/kg, s.c.), a selective mu 1-opioid receptor antagonist, had no effect on the antitransit properties of morphine. These results suggest that diabetes failed to alter the mu 2-opioid receptor-mediated antitransit effect of morphine.

Animals

Decreased Ca2+ influx into the endothelium contributes to the decrease in endothelium-dependent relaxation in the aorta of streptozotocin-induced diabetic mice.

Experiments were designed to investigate the role of Ca2+ influx into the endothelium in the relaxation of mouse aorta caused by acetylcholine (ACh) in streptozotocin (STZ)-induced diabetic and age-matched control mice. When Ca2+ was added to the bath, Ca2+ caused a transient contraction followed by relaxation in Ca(2+)-free medium containing 2 x 10(-6) M prostaglandin F2 alpha (PGF2 alpha) and 10(-5) M ACh in the control experiments. On the other hand, Ca2+ showed a long lasting contraction in STZ-induced diabetic rats. These results suggest that influx of Ca2+ into the endothelium is significantly attenuated in the diabetic vessels, and production or release of relaxing factor is markedly decreased.

Acetylcholine

Endothelin-1-induced downregulation of ETB receptor mRNA: participation of cAMP.

In this study we examined the participation of cAMP formation in endothelin-1 (ET-1)-induced downregulation of ETB receptor mRNA in ROS 17/2 rat osteosarcoma cells. Dibutyryl cAMP induced downregulation of ETB receptor mRNA in a time-dependent manner. ET-1 induced production of inositol phosphates and an increase of cAMP level in ROS 17/2 cells. A stimulatory effect on cAMP level was also observed when A23187 plus PMA was added to the cells. The increase in cAMP level induced either by ET-1 or by A23187 plus PMA was inhibited by indomethacin. The downregulation of ETB receptor mRNA induced by ET-1 was significantly inhibited by indomethacin. These results suggest that the ET-1-induced downregulation of ETB receptor mRNA in ROS 17/2 cells may be partly mediated through the increase in cAMP level secondary to the activation of the phosphoinositide hydrolysis/Ca2+ transduction cascade.

Animals

Increased endothelin-1 binding sites in the cardiac membranes in rats with chronic heart failure.

The effects of experimental chronic heart failure (CHF) on the density and affinity for endothelin-1 (ET-1) binding was studied in the rat heart. Because it has been reported that ET-1 binding sites on cultured cardiocytes are downregulated by pretreatment with ET-1, we also studied the plasma concentrations of ET-1 in rats with CHF. Three weeks after ligation of the left coronary artery, rats developed chronic heart failure (CHF rats). The plasma concentrations of ET-1, as measured by a sandwich-enzyme immunoassay, were significantly higher in CHF rats than in sham-operated rats [4.80 +/- 0.33 vs. 0.91 +/- 0.11 (mean +/- SEM) pg/ml; p < 0.01]. [125I]ET-1 binding experiments on rat cardiac membranes revealed that the binding site density (Bmax) was significantly higher in the CHF rats than in the sham-operated rats (243.0 +/- 20.0 vs. 154.8 +/- 17.4 fmol/mg protein; p < 0.05), whereas the values for the dissociation constant (Kd) were not different between the two groups (28.7 +/- 7.0 vs. 29.8 +/- 1.9 pM). Therefore, in the CHF rats, although plasma concentrations of ET-1 were elevated, the density of myocardial ET receptors was increased. Because ET-1 has potent inotropic and hypertrophic effects on cardiac myocytes, it is suggested that the effects of endogenous ET-1 in the heart are different between the CHF rats and the sham-operated rats.

Animals

Altered production of endothelin-1 in the hypertrophied rat heart.

Although endothelin-1 (ET-1) has been shown to have potent hypertrophic effects in cultured cardiac myocytes, there is no evidence that the production of ET-1 is altered in the hypertrophied heart in vivo. We investigated mRNA and peptide levels of ET-1 in the rat heart hypertrophied due to pressure or volume overload. One week after surgery of abdominal aortic banding (AB) or aortic valve regurgitation (AR; the aortic valve was destroyed by a polyethylene catheter), the rats were sacrificed. Control sham-operated rats were also studied (AB-sham and AR-sham). The left ventricular (LV) weight to body weight ratio was significantly higher in AB rats than in AB-sham rats. It was also significantly higher in AR rats than in AR-sham rats. Therefore, AB rats and AR rats developed LV hypertrophy due to pressure and volume overload, respectively. The expression of ET-1 mRNA in the LV was markedly higher in AB rats than in AB-sham rats. The peptide level of ET-1 was also significantly higher in the LV of AB rats than in that of AB-sham rats. However, the expression of ET-1 mRNA in the LV of AR rats was similar to that of AR-sham rats. The present findings suggest that the production of ET-1 in the heart differs between pressure and volume overload-induced hypertrophy in rats.

Animals

Possible sources of endothelin-1 in damaged rat brain.

We investigated the sources of endothelin-1 (ET-1) detected in the damaged brain tissue of rats after cold injury. ET-1 in the injured sites was increased 1-5 days after the injury. Physiologic observations revealed that breakdown of the blood-brain barrier occurred and that plasma-derived albumin exuded into the brain parenchyma after cold injury. Radiolabeled ET-1, which was injected into the left cardiac ventricle, was detected in the tissue at the injury site, and ET-1-like immunoreactivity was observed in the brain capillaries in the damaged tissues. TGF-beta 1, which is a tissue regeneration factor, potently induced the expression of ET-1 mRNA in cultured astrocytes. These results suggest that ET-1 is produced through a variety of ways in the damaged brain.

Animals

Relationship between contractile responses and cytosolic free calcium levels in response to phorbol ester (PMA) in isolated rat aorta.

We examined the relationship between phorbol ester (PMA)-induced contractile response and cytosolic free calcium level in the rat aorta. PMA (10(-6)M) produced biphasic contraction, i.e., sustained contraction followed by a phasic response superimposed on the sustained contraction. Increase in [Ca2+]i was accompanied by a phasic but not sustained contraction. These results suggest that PMA-induced phasic contraction is dependent on Ca2+ influx but sustained contraction may be due to an increase in Ca2+ sensitivity of contractile protein.

Animals

Pharmacokinetic studies of cortisol after oral administration of deuterium-labelled cortisol to a normal human subject.

A trace amount (5 mg) of stable isotopically labelled cortisol ([1,1,19,19,19-2H5]cortisol, cortisol-d5) was administered orally to a healthy human subject to examine the pharmacokinetic behaviour of exogenous cortisol and study the interconversion of cortisol to cortisone catalysed by 11 beta-hydroxysteroid dehydrogenase (11 beta-OHSD). The use of a gas chromatographic/mass spectrometric method allowed the simultaneous measurement of the plasma concentrations of endogenous and exogenous cortisol and cortisone. The amount administered was sufficiently small not to disturb or decrease the endogenous cortisol secretion by negative feedback. The appearance of cortisol-d5 and cortisone-d5 was very rapid. In a blood sample taken 10 min after administration of cortisol-d5, plasma concentrations of 154.8 ng ml-1 cortisol-d5 and 2.7 ng ml-1 cortisone-d5 were detected. A peak value of 196.6 ng ml-1 cortisol-d5 was observed 30 min after cortisol-d5 administration. The peak value of cortisone-d5 was 15.5 ng ml-1 40 min after cortisol-d5 administration, and thereafter cortisone-d5 declined in parallel with the slower decline phase of cortisol-d5. The plasma concentrations fell as low as 26.9 ng ml-1 for cortisol-d5 and 4.6 ng ml-1 for cortisone-d5 4 h after cortisol-d5 administration. The ratio of cortisone-d5 to cortisol-d5 approached a plateau 2 h after cortisol-d5 administration, reaching a constant value of approximately 0.15 thereafter. The higher value of the cortisone/cortisol concentration ratio (0.14-0.81; average 0.30) than the cortisone-d5/cortisol-d5 ratio may provide important information about the possibility that cortisone might be formed not only via the pathway of the cortisol conversion but also through other biotransformation processes.

Adrenal Cortex Hormones