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Biomedical subjects

Y Katano

Publications and source records attributed to Y Katano.

At least 55 records · Page 3Linked to original sources

Redox mechanism as alternative to ligand binding for receptor activation delivering disregulated cellular signals.

Cross-linking with specific ligand is a general requirement for ordered activation of cell surface receptors. In this study we demonstrated a novel pathway for disregulated receptor activation through a redox mechanism. Treatment of murine thymocytes or spleen cells with thiol-reactive HgCl2, a known inducer of autoimmune proliferative lymphocyte disorders in rodents, was found to induce tyrosine phosphorylation of several cellular proteins, which was up to 100 times as extensive as that triggered by stimulation with antireceptor antibody or mitogen. Through the cross-linkage by thiol-reactive bivalent mercury, transmembrane CD4, CD3, and CD45 and glycosylphosphatidylinositol-anchored Thy-1 were aggregated together on thymocytes or T lymphocytes. Along with the aggregation of Thy-1 and CD4, nonreceptor protein tyrosine kinase p56lck was aggregated and activated. These events were linked to extensive protein tyrosine phosphorylation, which was visualized as a well localized spot beneath the membrane. Under appropriate conditions, this novel pathway of multiple receptor aggregation delivered a disregulated signal into T lymphocytes, which cross-talked to the antireceptor antibody-induced signal, for prolonged cell proliferation and IL-2 production. These results suggest a novel mechanism of disregulation of the ligand-dependent receptor function.

Animals↗

Effects of a novel cardiotonic agent (+-)-6-[3-(3,4-dimethoxybenzylamino)-2-hydroxypropoxy]-2(1H)-quinolino ne (OPC-18790) on contractile force, cyclic AMP level, and aequorin light transients in dog ventricular myocardium.

We studied the effects of a novel cardiotonic agent OPC-18790 [(+-)-6-[3-(3,4-dimethoxybenzylamino)-2-hydroxypropoxy]-2(1H)- quinolinone] on isometric contractions, intracellular aequorin light transients, and cyclic AMP levels in isolated dog ventricular trabeculae. The positive inotropic effect (PIE) of OPC-18790 (1-30 microM) was consistently associated with an abbreviation of contractions and an increase in the amplitude of aequorin light transients. The maximum responses of Ca2+ transients and force to OPC-18790 were approximately 40% of the isoproterenol-induced maximum. Carbachol (3 microM) markedly attenuated the increases in force, light transients, and cyclic AMP accumulation induced by OPC-18790. These results indicate that OPC-18790 is a cardiotonic agent with moderate effectiveness, and that the PIE of OPC-18790 may be produced mainly by an increase in intracellular Ca2+ transients induced by cyclic AMP accumulation. For a given increase in amplitude of Ca2+ transients, OPC-18790 produced a more pronounced increase in force of contraction (FOC) than did isoproterenol, suggesting that OPC-18790 does not produce as great a decrease in Ca2+ sensitivity of contractile proteins as does isoproterenol. These observations indicate that among cardiotonic agents acting through cyclic AMP pathway, regulation of contractility produced by the selective cyclic AMP phosphodiesterase III (PDE-III) inhibitor OPC-18790 is qualitatively different from the regulation induced by isoproterenol that acts on cyclic AMP generation in intact myocardial cells.

Aequorin↗

[Early detection of primary liver cancer--diagnosis of small liver cancer by needle aspiration biopsy].

Small liver cancer is defined as a solitary hepatocellular carcinoma (HCC) with a diameter less than 2cm. To detect liver cancer as early as possible, patients with liver cirrhosis are screened by ultrasound scanning. Pathological diagnosis in needle aspiration biopsy materials is needed because of low positivity of imaging other than ultrasound scanning. Pathological features are different from those of classical hepatocellular carcinoma. Most of the small HCCs are characterized by the following features: (1) increased cellularity, (2) increased nucleus/cytoplasm ratio, (3) irregular thin trabecular pattern, (4) pseudoglandular or acinar structures, (5) increased staining affinity (eosinophilic/basophilic), (6) frequent fatty change, and (7) residue of the portal tract. Capsules of HCCs, 1-1.5 cm in diameter, are formed. Before the formation of capsules, cancerous cells show a replacing growth pattern. Two cases of small HCC are presented, and these characteristic features are explained.

Biopsy, Needle↗

Pathway of signal delivery to murine thymocytes triggered by co-crosslinking CD3 and Thy-1 for cellular DNA fragmentation and growth inhibition.

The signal delivery pathway triggered by crosslinking CD3 and Thy-1 together (CD3/Thy-1 crosslinkage) on murine thymocytes for cellular DNA fragmentation/growth inhibition was analyzed. The treatment of thymocytes with herbimycin A as a specific tyrosine kinase inhibitor under suboptimum conditions before the CD3/Thy-1 crosslinkage partially but preferentially inhibited the otherwise promoted tyrosine phosphorylation of p40 and p56. Evidence was then provided that acceleration of the kinase activity of p56lck was involved in the CD3/Thy-1 crosslinkage-triggered signal. Partial characterization of p40 distinguished it from the p43 and p41 MAP kinases, the tyrosine phosphorylation of which was only marginally accelerated. Promotion of DNA fragmentation by the CD3/Thy-1 crosslinkage-triggered signal was actually ablated by the treatment with herbimycin, suggesting the obligatory involvement of the herbimycin highly sensitive kinase activity in the signal pathway. The signal induced by co-crosslinkage of CD3 and Thy-1 was also shown to be negatively biased against mature T lymphocytes, suppressing their CD3-mediated growth response. The negative signal was then found to partially attack the process of c-fos transcription as an earlier nuclear event. Interestingly, this c-fos suppression was prevented by the treatment of thymocytes with herbimycin before stimulation, for accelerated expression of c-fos. It is suggested from these results that the CD3/Thy-1 crosslinkage delivers protein tyrosine kinase-dependent negative signaling for inhibition of early and late nuclear events of both immature thymocytes and mature T lymphocytes.

Animals↗

Cyclic AMP metabolism in intact rat ventricular cardiac myocytes: interaction of carbachol with isoproterenol and 3-isobutyl-1-methylxanthine.

Experiments were carried out to elucidate the characteristics of regulation of cyclic AMP levels in intact myocardial cells. For this purpose, the influence of isoproterenol, a nonselective cyclic nucleotide phosphodiesterase (PDE) inhibitor 3-isobutyl-1-methylxanthine (IBMX) and carbachol on cyclic AMP levels was investigated in isolated rat cardiac myocytes. The extent of cyclic AMP accumulation induced by isoproterenol was much less than that produced by IBMX: submaximal concentrations of isoproterenol and IBMX elevated the cyclic AMP level 2.4- and 4.8-fold of the control level, respectively. Both agents in combination increased the cyclic AMP level markedly 48-fold. Carbachol inhibited the cyclic AMP accumulation induced by isoproterenol, IBMX and their combination by 30%, 60% and 80% of the respective response. The extent of inhibition produced by carbachol of the cyclic AMP accumulation induced by IBMX + isoproterenol was smaller than that caused by propranolol, and carbachol produced only a marginal additional inhibitory action to that of propranolol, implying that carbachol does not affect the process of cyclic AMP degradation. The present findings indicate that in intact cardiac myocytes the rate of cyclic AMP degradation catalyzed by PDE may be a crucial process of cyclic AMP turnover. This view is supported by the observations that the inhibitory action of carbachol on the effect of isoproterenol was less than that on the effect of IBMX, and that the inhibitory action of carbachol was markedly enhanced by the simultaneous presence of IBMX.

1-Methyl-3-isobutylxanthine↗

Modulation by aging of the coronary vascular response to endothelin-1 in the rat isolated perfused heart.

Changes with age in the coronary vascular response to endothelin-1 were investigated in perfused hearts isolated from 2-, 6- and 24-month-old (mo) male Fisher-344 rats. Endothelin-1 injected as a single bolus (0.3, 3 and 30 nmol) into the coronary artery supply caused dose-dependent vasoconstriction in all three age groups. While there was no age-related change in the vasoconstriction induced by the lower doses (0.3 and 3 nmol), the higher dose (30 nmol) elicited a more pronounced vasoconstriction in 6- and 24-mo rats than that in 2-mo rats. NG-nitro-L-arginine (L-NNA), an inhibitor of nitric oxide formation, markedly enhanced the vasoconstriction induced by 30 nmol endothelin-1 in 2- and 6-mo rats but only slightly and non-significantly enhanced that vasoconstriction in 24-mo rats. Haemoglobin, which inhibits activation of guanylate cyclase by nitric oxide, enhanced the endothelin-1-induced vasoconstriction in 2-mo rats, but not in 6- and 24-mo rats. The acetylcholine-induced coronary vasodilation was more pronounced in 2- and 6-mo rats than in 24-mo rats and was attenuated by L-NNA in 2- and 6-mo rats. The coronary vasodilation induced by nitroprusside (0.1 mmol), a pharmacological precursor of nitric oxide, did not change with age. Endothelin-1 (30 nmol) markedly increased the release of 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha) in all three age groups. The prostaglandin synthesis inhibitor indomethacin enhanced the endothelin-1-induced vasoconstriction in 2- and 6-mo rats to a similar extent.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

Effects of a cardiotonic quinolinone derivative Y-20487 on the isoproterenol-induced positive inotropic action and cyclic AMP accumulation in rat ventricular myocardium: comparison with rolipram, Ro 20-1724, milrinone, and isobutylmethylxanthine.

The effect of a new cardiotonic agent Y-20487 [6-(3,6-dihydro-2-oxo-2H-1,3,4-thiadiazin-5-yl)-3,4-dihydro-2(1H)- quinolinone] on cyclic AMP levels of rat ventricular cardiomyocytes and the contractile force of papillary muscles was investigated in comparison with selective cyclic AMP phosphodiesterase (PDE) inhibitors, milrinone (PDE-III selective), rolipram and Ro 20-1724 (PDE-IV selective), and a nonselective inhibitor 3-isobutyl-1-methylxanthine (IBMX). Rolipram and Ro 20-1724 did not elicit cyclic AMP accumulation and positive inotropy, but they potentiated the isoproterenol (ISO)-induced cyclic AMP accumulation more effectively than IBMX. Rolipram was more effective than Ro 20-1724 in enhancing ISO-induced cyclic AMP accumulation but was less effective in enhancing the ISO-induced positive inotropic effect, indicating that these agents produce a differential action on cyclic AMP metabolism and inotropy. Milrinone and Y-20487 elicited cyclic AMP accumulation and positive inotropy by themselves. Whereas milrinone scarcely affected the ISO-induced effects, Y-20487 shifted the concentration-response curve for the positive inotropic effect of ISO to the left to the same extent that IBMX did. Y-20487, however, was much less effective than IBMX in enhancing the ISO-induced cyclic AMP accumulation. The present results indicate that in rat ventricular myocardium, PDE-IV may play a crucial role in breakdown of cyclic AMP generated by beta-adrenoceptor stimulation, whereas other types of PDE isoenzymes, including PDE-III, may be responsible for the cyclic AMP accumulation and direct positive inotropic effect induced by PDE inhibitors.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Methyl-3-isobutylxanthine↗

Influence of aging on the contractile response to endothelin of rat thoracic aorta.

Age-related changes in the contractile response to endothelin-1 and ACh were assessed in thoracic aortas isolated from 2-, 6- and 24-month-old male Fischer 344 rats. In aortic strips with an intact endothelium, the maximal contractile response to endothelin-1 decreased with development to maturity. Removal of the endothelium did not affect the contractile response to endothelin-1. Endothelin-1 did not elicit a relaxant response in phenylephrine-precontracted strips. The ACh-induced relaxation decreased in senescent rats. These results indicate that the contractile response of aortic smooth muscle to endothelin-1 decreases with age, and that the endothelial vasorelaxant factors do not contribute to this age-induced modulation.

Acetylcholine↗

Differential effects of Ro 20-1724 and isobutylmethylxanthine on the basal force of contraction and beta-adrenoceptor-mediated response in the rat ventricular myocardium.

Effects of Ro 20-1724, a selective inhibitor of soluble cGMP-insensitive type IV phosphodiesterase, on the force and cAMP levels were compared with those of 3-isobutyl-1-methylaxanthine, a non-selective inhibitor, in the rat ventricular myocardium. Ro 20-1724 scarcely affected the basal force of contraction and cAMP levels, whereas it enhanced the positive intropic effect and cAMP accumulation induced by isoproterenol more effectively than 3-isobutyl-1-methylxanthine. These results imply that inhibition of the soluble cGMP-insensitive type IV PDE by Ro 20-1724 may be crucially involved in the regulation of myocardial contractility through the interaction with cAMP generation in the rat ventricular myocardium.

1-Methyl-3-isobutylxanthine↗

Effects of nicorandil on the conductive coronary artery of the dog.

The effects of nicorandil (2-nicotinamidoethyl nitrate, SG-75) on the conductive coronary artery were studied and compared with the effects of nitroglycerin and nifedipine. In isolated perfused canine heart preparations with a support dog, nicorandil produced a decrease in the resistance of the conductive coronary artery at reduced perfusion pressures, whereas nitroglycerin had similar effects even at normal perfusion pressures. In anesthetized closed-chest dogs, nicorandil and nitroglycerin produced an increase in the diameter of the conductive coronary artery (nicorandil less than nitroglycerin). Nifedipine failed to produce dilatation of the conductive coronary artery in both preparations. In isolated ring preparations of conductive coronary artery, all three compounds produced relaxation of the potassium-induced contracture, but only nicorandil and nitroglycerin reversed the lanthanum-induced contracture.

Animals↗

High affinity and low affinity ouabain binding sites in the rat heart.

Ventricular muscle of rat heart has two classes of receptors which are responsible for the positive inotropic effect of ouabain. Low affinity receptors are apparently related to Na+, K+-ATPase. To determine if high affinity receptors are also sarcolemmal Na+, K+-ATPase of muscle cells, their characteristics were examined. Binding of [3H]ouabain to the high affinity binding site required ATP in the presence of Mg2+ and Na+, was stimulated by Na+ in the presence of Mg2+ and ATP, and was inhibited by K+. Digoxin, digitoxin and cassaine all inhibited [3H]ouabain binding to the high affinity site. Cassaine was about an order of magnitude less potent than the glycosides. These results indicate similarities in high affinity ouabain binding sites in ventricular muscle of rat heart and Na+, K+-ATPase obtained from other sources. Destruction of sympathetic nerve terminals with 6-hydroxydopamine failed to affect the high affinity ouabain binding sites indicating that high affinity sites do not represent the Na+, K+-ATPase in sympathetic nerve terminals. Labeling of Na+, K+-ATPase from [gamma-32P]ATP indicates that high affinity ouabain binding sites account for 25% of the total enzyme molecules present in ventricular muscle of rat heart.

Animals↗

Are beta-adrenergic receptors in ventricular muscles of carp heart (Cyprinus carpio) mostly the beta-2 type?

The positive inotropic effect of isoproterenol was quantified in the presence of several beta-adrenergic blocking agents in ventricular strips of carp heart. Isoproterenol had a concentration-dependent positive inotropic effect. The effect was markedly inhibited by propranolol and carteolol, but was extremely insensitive to atenolol. Practolol totally failed to alter the effect. These results indicated that the positive inotropic effect of isoproterenol may be mediated by mostly beta-2 adrenergic receptors in ventricular strips of carp heart.

Adrenergic beta-Antagonists↗

Beta-2 adrenergic receptors are not only for circulating catecholamines in ventricular muscles of carp heart (Cyprinus carpio).

Whether beta-2 adrenergic receptors are only for the circulating catecholamines in isolated ventricular muscles of carp heart was studied. Isoproterenol, epinephrine and norepinephrine had concentration dependent positive inotropic effects. The ED50 values for isoproterenol, epinephrine and norepinephrine were 6.23 +/- 1.9, 87.3 +/- 27.3 and 4500 +/- 580 nM, respectively. Phentolamine did not alter the inotropic effects. Tyramine increases the force of contraction and this action was completely blocked by propranolol and reserpine, but not by atenolol. Norepinephrine levels, in comparison with those of epinephrine, were similar in plasma and higher in ventricular muscles. However, the norepinephrine levels in ventricular muscles of carp heart were markedly lower than those in ventricular muscles of rat heart. These results suggest that ventricular muscles of carp heart contain adrenergic neurons, and that a catecholamine released from the nerve terminals, presumably epinephrine, may stimulate beta-2 adrenergic receptors.

Animals↗

Aging and digitalis sensitivity of cardiac muscle in rats.

The cause of the reduced tolerance of aged rats to the arrhythmogenic effect of ouabain was studied in left atrial and left ventricular muscle preparations obtained from 3-, 8- or 26-month old Fischer 344 rats. Under 1.5-Hz stimulation, the concentration-response curves for the positive inotropic effect of ouabain showed a tendency to shift to the left with age. The toxic effects occurred at lower ouabain or digoxin concentrations in the ventricular muscle obtained from senescent rats especially when the muscle was stimulated at a higher frequency (4 Hz), although differences in tolerance to the toxic effect of ouabain were not apparent in atrial muscle preparations stimulated at 1.5 Hz. No age-related difference in intracellular sodium or potassium concentration was observed in perfused ventricular muscle preparations paced at 1.5 Hz. There was no significant age effect on Na+-induced activation of Na+,K+-ATPase. In aged myocardium, however, the upstroke velocity of the action potential was reduced especially under high frequency stimulations, and the ability to follow high frequency stimulation was compromised. These results suggest that reserve capacity of the sodium pump is reduced in aged ventricular muscle, thereby elevating its sensitivity to the cardiac glycoside.

Aging↗

Aging: effects on sodium- and potassium-activated adenosine triphosphatase activity and ouabain binding sites in rat brain.

Sodium- and potassium-activated adenosine triphosphatase (Na,K-ATPase) activity and [3H]-ouabain binding were examined in homogenates of cerebral cortex, striatum, and hypothalamus of 3-, 8-, and 26-month-old rats to determine if aging-related alterations in energy utilization demonstrated in brain slices and homogenates are potentially associated with alterations in Na,K-ATPase. There were no consistent age-related changes seen in Na,K-ATPase activity, the number of [3H]-ouabain binding sites, or their affinity for ouabain. Moreover, enzyme activities of the two molecular forms of Na,K-ATPase and their inhibition by strophanthidin did not appear to be different in partially purified enzyme preparations obtained from whole brain of 3- and 26-month-old rats. In contrast, the concentration of [3H]-ouabain binding sites was lower in cardiac muscle of senescent rats indicating a reduction in the number of active Na,K-ATPase units. It appears unlikely that aging-related central nervous system changes are associated with alterations in the Na,K-ATPase enzyme system.

Aging↗

Enhanced responsiveness of the coronary blood vessel of the dog heart-lung preparation to PGI2 after chronic chemical sympathectomy.

Chronic chemical denervation of the sympathetic nervous system with 6-OH dopamine resulted in an augmentation of the coronary blood flow (CBF) increase inherent in the canine heart-lung preparation, but not in an augmented accumulation of 6-keto PGF1 alpha in the circulating blood. In denervated HLP, 6-keto PGF1 alpha was lower and the vasodilator response to PGI2 larger at the start of the experiments. It was concluded that exaggerated increase in CBF was due to a potentiation of the vasodilator response to PGI2.

6-Ketoprostaglandin F1 alpha↗

Enhanced ouabain sensitivity of the heart and myocardial sodium pump in aged rats.

Tolerance to arrhythmogenic actions of digitalis decreases with advanced age. To determine if aged myocardium has reduced glycoside tolerance, ouabain sensitivity and associated biochemical changes were examined in young (3-month), adult (8-month) and aged (26-month old) Fisher 344 rats, because age-related changes in physiology and biochemistry are well characterized in this strain of rats. Although rats are uniquely tolerant to digitalis, basic mechanisms leading to inotropic and toxic actions of digitalis are not different from other species. In aged anesthetized rats, intravenous infusion of ouabain produced arrhythmias and cardiac arrest at lower doses. Aged myocardium had lower Na,K-ATPase activity and fewer high affinity [3H]ouabain binding sites. Affinity of the ouabain binding sites on Na,K-ATPase was not altered. Despite these findings, sodium pump activity, estimated from the ouabain-sensitive 86Rb+ uptake by ventricular muscle slices, was higher in the aged myocardium when the uptake was observed in the absence of ouabain and was more sensitive to inhibitory action of the glycoside. Differences in Na,K-ATPase and sodium pump data may be explained if sodium leak influx is increased in aged myocardium. Fewer sodium pumping sites and enhanced ouabain sensitivity of the sodium pump seem to be responsible for the reduced tolerance of aged heart to digitalis-induced toxicity.

Aging↗

Effects of cardioplegia induced by a Young's solution (YNG solution) on the blood-perfused canine papillary muscle preparation.

Experiments were carried out in the blood-perfused canine papillary muscle preparation to evaluate the protective effect of a cardioplegic solution, Young's solution (YNG solution), on the myocardial function. Both in spontaneously contracting preparations and in electrically paced (2 Hz) preparations, the time to the cardiac arrest and the time to the maximum blood flow were found to be significantly shorter when the cardiac arrest was induced with cardioplegic solutions than when it was induced with the cold modified Krebs-Ringer's solution (cold cardioplegia). The maximum blood flow of the paced preparation tended to be greater with cardioplegic solutions. The time to resumption of regular contractions was significantly shorter with YNG solution as compared with cold cardioplegia. The developed tension and the blood flow at the time of resumption of the regular contractions tended to approach the control value more quickly with YNG solution, as compared with other cardioplegic solutions and cold cardioplegia. It is concluded that YNG solution represents an optimal cardioplegic solution.

Animals↗