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Biomedical subjects

J Tamaoki

Publications and source records attributed to J Tamaoki.

At least 37 records · Page 2Linked to original sources

Effect of a thromboxane A(2) antagonist on sputum production and its physicochemical properties in patients with mild to moderate asthma.

STUDY OBJECTIVE: To determine the effects of a specific thromboxane A(2) (TxA(2)) receptor antagonist, seratrodast, on asthma control and airway secretions. DESIGN: Multicenter, double-blind, randomized, placebo-controlled study. PATIENTS: Forty-five patients with mild to moderate asthma who had been continuously expectorating sputum of > 20 g/d. Patients with a current pulmonary infection or taking oral corticosteroids, antibiotics, or mucolytic agents were excluded from the trial. INTERVENTIONS: Following a 2-week run-in period, while pulmonary function, sputum production, and mucociliary function were assessed, patients were assigned to receive seratrodast, 40 mg/d, or placebo for 6 weeks. MEASUREMENTS AND RESULTS: During the treatment period, the changes in FEV(1) and peak expiratory flow (PEF) were not different between the two patient groups, but there were significant reductions in diurnal variation of PEF (p = 0.034), frequency of daytime asthma symptoms (p = 0.030), and daytime supplemental use of beta(2)-agonist (p = 0.032) in the seratrodast group. For sputum analysis, seratrodast treatment decreased the amount of sputum (p = 0.005), dynamic viscosity (p = 0. 007), and albumin concentration (p = 0.028), whereas it had no effect on elastic modulus or fucose concentration. Nasal clearance time of a saccharin particle was shortened in the seratrodast group at week 4 (p = 0.031) and week 6 (p = 0.025), compared with the placebo group. CONCLUSION: Blockade of TxA(2) receptor has minimal effects on pulmonary function, but may cause an improvement in mucociliary clearance by decreasing the viscosity of airway secretions.

Adult↗

[Role of nitric oxide in airway mucociliary dysfunction in diffuse panbronchiolitis].

Nitric oxide (NO) stimulates the ciliary motility of the airway epithelium, thereby assisting in the regulation of mucociliary transport in the respiratory tract. In the present study, to elucidate a possible involvement of NO in mucociliary disturbance in diffuse panbronchiolitis (DPB), we measured nasal clearance time (NCT) using the saccharin test, NO concentration in the exhaled air with a chemiluminescence analyzer, and electrolyte concentration in the sputum. Compared with healthy nonsmokers and smokers, patients with DPB showed a lower NO concentration in the exhaled air (p < 0.05), prolonged NCT (p < 0.01), and a higher Cl concentration in the sputum (p < 0.05). Among these variables, exhaled NO concentration was negatively correlated with NCT (p < 0.01) and sputum Cl concentration (p < 0.05). These results suggest that the inhibition of NO generation associated with an elevated Cl concentration in the airway surface liquid may contribute to airway mucociliary dysfunction in DPB.

Breath Tests↗

Macrolide antibiotics as biological response modifiers.

Erythromycin was first isolated in the 1950s from a Philippine soil sample, and the derivatives of erythromycin A, called the macrolide antibiotics, have been used as effective antibacterial agents ever since. It has long been suspected that the 14-membered macrolides have immunomodulatory activity as demonstrated by their early use as adjunctive therapy for asthma and their astounding effectiveness for the therapy of diffuse panbronchiolitis. It is now clear, that the macrolides and their cousins, the 15-membered azalides, and perhaps the ketolides, have a broad range of biological response modifying effects on inflammation, tumor cells, airway secretions and host defenses. This review highlights some exciting new data, as well as controversies related to understanding the mechanism of action for these diverse effects.

Animals↗

Macrolide antibiotics protect against immune complex-induced lung injury in rats: role of nitric oxide from alveolar macrophages.

Macrolide antibiotics have unique immunomodulatory actions apart from antimicrobial properties. We studied the effects of macrolides on IgG immune complex (IgG-ICx)-induced lung injury in rats in vivo and in vitro. Intrapulmonary deposition of IgG-ICx produced a time-dependent increase in the concentration of NO in exhaled air. There were corresponding increases in the number of neutrophils accumulated into alveolar spaces, and lung wet-to-dry weight ratio. All of these changes were inhibited by pretreatment with erythromycin or josamycin, but not by amoxicillin or cephaclor. Incubation of cultured pulmonary alveolar macrophages caused up-regulation of NO production and expression of inducible NO synthase mRNA, an effect that was dose dependently inhibited by erythromycin, roxithromycin, or josamycin. The macrolides also reduced IgG-ICx-induced release of IL-1beta and TNF-alpha, but did not alter the release of NO induced by exogenously added IL-1beta and TNF-alpha. These results suggest that macrolide antibiotics specifically inhibit immune complex-induced lung injury presumably by inhibiting cytokine release and the resultant down-regulation of inducible NO synthase gene expression and NO production by rat pulmonary alveolar macrophages.

Animals↗

Red blood cells inhibit apoptosis of human neutrophils.

Oxidative stress has been implicated in the triggering of apoptosis in neutrophils. Because red blood cells (RBCs) are well known to scavenge oxidants including H2O2, we tested the hypothesis that RBCs inhibit apoptosis of neutrophils by reducing intracellular oxidative stress. Apoptosis of neutrophils was evaluated by light microscopy and DNA gel electrophoresis. We found that coculture with RBCs protected against neutrophil apoptosis. Neither physical contact between RBCs and neutrophils nor the cellular integrity of RBCs was required to protect against neutrophil apoptosis. Neutrophil apoptosis was promoted by exogenous H2O2 but suppressed by catalase, indicating a role for H2O2 as a mediator of apoptosis. The protective effect of RBCs against apoptosis was due to catalase and glutathione metabolism because blocking of these antioxidant systems in RBCs attenuated the protective effect of RBCs. These results suggest that neutrophils are protected against apoptosis in the circulation.

Apoptosis↗

Role of p38-mitogen-activated protein kinase in spontaneous apoptosis of human neutrophils.

Neutrophils constitutively undergo apoptosis at both normal and inflamed sites: an important process that limits the toxic potential of the neutrophil. However, the signal pathway for neutrophil apoptosis is currently unknown. In this study, we evaluated the role of p38-mitogen-activated protein kinase (MAPK) in the spontaneous apoptosis of neutrophils in vitro. We found that p38-MAPK was constitutively tyrosine phosphorylated and activated during spontaneous apoptosis of neutrophils. Inhibition of p38-MAPK by SB203580 and an antisense oligonucleotide delayed apoptosis by approximately 24 h. The antioxidants catalase and N-acetylcysteine delayed neutrophil apoptosis, but failed to inhibit phosphorylation and activation of p38-MAPK. Granulocyte-macrophage CSF and anti-Fas Ab, which altered the rate of apoptosis, did not affect phosphorylation and activation of p38-MAPK. These results suggest that the constitutive phosphorylation and activation of p38-MAPK are involved in the program of spontaneous apoptosis in neutrophils.

Antioxidants↗

Atypical adrenoceptor-mediated relaxation of canine pulmonary artery through a cyclic adenosine monophosphate-dependent pathway.

To determine whether functional atypical beta-adrenoceptors (beta(3)-adrenoceptors) are present in pulmonary vascular smooth muscle, we studied isolated canine pulmonary arterial rings under isometric conditions in vitro. Addition of beta-adrenoceptor agonists produced a concentration-dependent relaxation of noradrenaline-precontracted tissues, a rank order potency being isoproterenol (1) > salbutamol (0.95) > selective beta(3)-adrenoceptor agonists, CL 316243 (0.85), and BRL 37344 (0. 83). A marked desensitization to salbutamol occurred by pretreatment with salbutamol but not with CL 316243. When beta(1)-adrenoceptors had been blocked, the relaxant responses to salbutamol were competitively antagonized by the beta(2)-adrenoceptor antagonist ICI 118551 with a pA(2) value of 7.67 +/- 0.21 (mean +/- S.E.), but the response to CL 316243 was weekly antagonized by ICI 118551 only at a high concentration of 10(-5) M, where an apparent pA(2) value was 5. 24. In contrast, cyanopindolol, a nonselective beta-adrenoceptor antagonist, antagonized CL 316243-induced relaxation in a competitive manner with a pA(2) of 6.10 +/- 0.11. This pA(2) value was lower than that when salbutamol was used as an agonist (6.69 +/- 0.14, p < 0.01). Intracellular 3',5'-cyclic adenosine monophosphate (cAMP) levels were increased by CL 316243 in a concentration-dependent fashion, an effect that was not altered by ICI 118551. These results suggest that beta(3)-adrenoceptors may exist in canine pulmonary artery smooth muscle and that stimulation of this atypical receptor causes vasodilation through a cAMP-dependent pathway.

Animals↗

Effect of azelastine on platelet-activating factor-induced microvascular leakage in rat airways.

To determine the effect of the antiallergic drug azelastine on airway mucosal inflammation, we studied airway microvascular permeability in response to platelet-activating factor (PAF) in pathogen-free rats. Vascular permeability and neutrophil accumulation were assessed by the percent area occupied by Monastral blue-labeled blood vessels and by myeloperoxidase-containing granulocytes, respectively, in whole mounts of the trachea and main bronchus. Intravenous PAF caused dose-dependent increases in the area density of Monastral blue-labeled vessels and neutrophil influx, and the former effect was inhibited by depletion of circulating neutrophils by cyclophosphamide or treatment with the neutrophil elastase inhibitor ONO-5046. Pretreatment with azelastine inhibited PAF-induced vascular leakage without affecting neutrophil accumulation. This inhibitory effect of azelastine was not seen in neutropenic rats and ONO-5046-treated rats. PAF increased neutrophil elastase contents in bronchoalveolar lavage fluid, an effect that was inhibited by azelastine. Therefore, azelastine attenuates PAF-induced airway mucosal microvascular leakage, probably involving inhibition of the release of neutrophil elastase from activated neutrophils.

Animals↗

Effect of FK506 on ATP-induced intracellular calcium oscillations in cow tracheal epithelium.

To elucidate the effect of FK506 on Ca2+ oscillations in airway epithelium, we investigated cultured cow tracheal epithelial cells with a Ca2+ image-analysis system. ATP (1 microM) induced long-lasting Ca2+ oscillations, having nearly constant peak values (300-400 nM) and intervals (20-40 s) in subconfluent cells but not in confluent cells. These responses were gradually attenuated and abolished by the addition of FK506. Rapamycin, which binds the FK506-binding protein (FKBP), likewise inhibited Ca2+ oscillations, whereas cyclosporin A, a calcineurin inhibitor, did not. Treatment of cells with FK506 decreased Ca2+ content in thapsigargin-sensitive stores, suggesting that the partial depletion of the stores causes the inhibition of Ca2+ oscillations. Immunocytochemistry revealed the existence of cytoplasmic FKBP-like immunoreactivities. The expression of a 12-kDa FKBP was greater in subconfluent cells than in confluent cells as determined by Western blotting, suggesting that the 12-kDa FKBP may be one of the factors that regulates Ca2+ oscillations. Therefore, FK506 possesses an inhibitory action on the Ca2+ response via intracellular FKBP but not via calcineurin, which may result in modification of airway epithelial functions.

Adenosine Triphosphate↗

Effect of cromolyn on adenosine-induced airway microvascular leakage in sensitized rats.

Inhalation of adenosine causes bronchoconstriction in asthmatic subjects, but the effect of this purine nucleotide on airway vascular permeability is unknown. In order to determine whether adenosine produces airway microvascular leakage and, if so, to examine the effect of cromolyn (sodium cromoglycate (SCG)) on this extravasation of Evans blue was measured in the airways of ovalbumin-sensitized Brown Norway rats. Inhaled adenosine caused microvascular leakage in sensitized but not in non-sensitized rats, and the response was abolished by capsaicin pretreatment or the tachykinin neurokinin-1 receptor antagonist FK888. Adenosine-induced vascular leakage became apparent in nonsensitized rats when treated with phosphoramidon, and airway neutral endopeptidase activity was lower in sensitized than in non-sensitized animals. The extravasation induced by adenosine in sensitized rats was dose dependently inhibited by SCG aerosols, SCG likewise inhibited microvascular responses to substance P, but had no effect on those to platelet-activating factor. These results suggest that: 1) adenosine induces airway microvascular leakage in sensitized rats through stimulation of neurokinin-1 receptors; 2) this effect is associated with a sensitization-induced decrease in neutral endopeptidase activity; and 3) sodium cromoglycate inhibits adenosine-induced extravasation, presumably via functional antagonism of tachykinins.

Adenosine↗

[Mechanism and management of airway hypersecretion in obstructive lung disease].

Airway hypersecretion is a characteristic feature of chronic bronchitis and influences progression and prognosis of the disease, but the underlying mechanism remains uncertain. The increase in intraluminal viscid mucus may lead to disturbance of airway mucociliary clearance and deterioration of obstructive impairment of pulmonary function. Airway surface fluid is composed of mucous glucoprotein released from submucosal glands and goblet cells and water from airway epithelial cells, and the secretory function can be regulated by autonomic nervous system and a variety of chemical mediators and cytokines. Although several drugs may alter secretory responses and physicochemical properties of the sputum, it seems important to select mucoregulating drugs after understanding the mechanisms of hypersecretion and impaired mucociliary transport under individual conditions.

Anti-Bacterial Agents↗

Atypical adrenoceptor-mediated relaxation of canine pulmonary artery through a cAMP-dependent pathway.

We studied the existence of beta 3-adrenoceptors in canine pulmonary artery smooth muscle under isometric conditions in vitro. A rank order potency of vascular relaxation was isoproterenol > salbutamol > selective beta 3-adrenoceptor agonists, CL 316243 and BRL 37344. A marked desensitization to salbutamol occurred by pretreatment with salbutamol but not with CL 316243. When beta 1-adrenoceptors were blocked, the relaxant responses to salbutamol were competitively antagonized by the beta 2-adrenoceptor antagonist ICI 118551, whereas the response to CL 316243 was not. Cyanopindolol, a non-selective beta-adrenoceptor antagonist, antagonized CL 316243-induced relaxation in a competitive manner with a pA2 of 6.10, and this value was lower than that when salbutamol was used as an agonist (6.69). Intracellular cAMP levels were increased by CL 316243, an effect that was not altered by ICI 118551. Therefore, beta 3-adrenoceptors may be present and functioning in canine pulmonary artery.

Adrenergic beta-Agonists↗

A human bronchial epithelial cell line releases arginine vasopressin: involvement of Ca2+ -activated K+ channels.

To determine whether airway epithelium releases arginine vasopressin (AVP) and, if so, what the mechanism of the release is, we studied cultured human bronchial epithelial cell line, 16-HBE cells, in vitro. The cells spontaneously released small but significant amounts of AVP, and this release was dose dependently increased by platelet-activating factor (PAF) or bradykinin (BK). The PAF- and BK-induced AVP release was inhibited by 2-nitro-4-carboxyphenyl-N,N-diphenylcarbamate, a phospholipase C inhibitor, and thapsigargin but not by Ca2+ -free solution. Pretreatment with the big conductance Ca2+-activated K+ channel blocker iberiotoxin attenuated the stimulated release of AVP, whereas apamin and glibenclamide were without effect. These results suggest that human bronchial epithelial cells release AVP and that the release may be stimulated by phospholipase C activation, mobilization of Ca2+ from internal stores and the concomitant activation of big conductance Ca2+-activated K+ channels.

Arginine Vasopressin↗

Airway hyperresponsiveness to histamine in mycoplasmal infection: role of histamine N-methyltransferase.

To elucidate the modulatory role of histamine-degrading enzymes in airway constrictor responses in mycoplasmal infection, we studied hamster tracheal segments under isometric conditions in vitro. Nasal inoculation with Mycoplasma pneumoniae potentiated the contractile responses to histamine but not to methacholine. Pretreatment of tissues with the histamine N-methyltransferase inhibitor SKF 91488 abolished the infection-induced potentiation, whereas, the diamine oxidase inhibitor aminoguanidine had no effect. The histamine N-methyltransferase but not diamine oxidase activity in tracheal tissues was decreased in infected animals. These results suggest that M. pneumoniae causes airway hyperresponsiveness to histamine probably through a reduction of endogenous histamine N-methyltransferase activity.

Amine Oxidase (Copper-Containing)↗

Vasopressin stimulates ciliary motility of rabbit tracheal epithelium: role of V1b receptor-mediated Ca2+ mobilization.

Arginine vasopressin (AVP) has recently been shown to exist in and to be released from airway epithelial cells, but the physiologic role of this hormone in airway epithelial function is unknown. To determine whether AVP affects ciliary motility, and if so, to elucidate the mechanism of action and the subtype of AVP receptors involved, we measured ciliary beat frequency (CBF) and the intracellular Ca2+ concentration ([Ca2+]i) of cultured rabbit tracheal epithelium with a photoelectric method and the fura-2 fluorescence method, respectively. Addition of AVP caused a rapid increase in CBF, followed by a decline and a subsequent sustained response. The ciliary stimulatory action was dose dependent, the maximal peak increase from the baseline CBF being 20.6 +/- 4.7% (mean +/- SE, P < 0.001), and this effect was reduced to 5.9 +/- 2. 0% by the V1 receptor antagonist OPC-21268 (P < 0.01), but not by the V2 receptor antagonist OPC-31260. The AVP-induced increase in CBF was not altered by the protein kinase A (PKA) inhibitor Rp-adenosine-3',5'-cyclic monophosphorothioate triethylamine (Rp-cAMPS) or by Ca2+-free solution containing ethylene glycol-bis-(beta-aminoethyl ether) N,N,N',N'-tetraacetic acid (EGTA), but was abolished by pretreatment with thapsigargin. Exposure of cells to AVP elicited a transient increase in [Ca2+]i, an effect that was likewise abolished by thapsigargin. The rank-order potency of AVP analogues to increase [Ca2+]i was AVP = [deamino1, D-3-(pyridyl) Ala2-Arg8] vasopressin (DP-VP), a specific V1b receptor agonist > [Phe2, Ile3, Orn8] vasopressin (PO-VT), a V1a agonist > 1-desamino-8-D-arginine vasopressin (dDAVP), a V2 agonist. Moreover, OPC-21268 greatly attenuated the action of AVP, whereas OPC-31260 was without effect. These results suggest that AVP stimulates ciliary motility of rabbit tracheal epithelium through mobilization of Ca2+ from thapsigargin-sensitive stores, and that this effect may be mediated by V1b receptors.

Animals↗

Erythromycin inhibits ATP-induced intracellular calcium responses in bovine tracheal epithelial cells.

Erythromycin (EM) therapy is known to decrease airway secretion in chronic inflammatory airway diseases such as diffuse panbronchiolitis. Airway secretion is regulated by intracellular Ca2+ concentration ([Ca2+]i). To elucidate the intracellular site of action of EM in airway epithelium, we examined the effect of EM on Ca2+ dynamics in cultured bovine tracheal epithelial cells using fura-2. EM per se did not cause any change in [Ca2+]i. Adenosine triphosphate (ATP; 10(-4) M) induced a biphasic [Ca2+]i increase, consisting of a transient response followed by a sustained response. Pretreatment of cells with EM had little effect on the ATP-induced transient Ca2+ response but substantially reduced the sustained response in a dose-dependent manner. Clarithromycin, another 14-membered ring macrolide, likewise showed the inhibitory effect, but ampicillin and cephasolin did not. Uridine triphosphate (UTP; 10(-4) M) induced a biphasic [Ca2+]i increase similar to ATP, and the UTP-induced sustained Ca2+ response was also inhibited by EM. In Ca2+-deficient medium (1 mM ethyleneglycol-bis-(beta-aminoethyl ether)-N, N'-tetraacetic acid [EGTA]) or in the presence of La3+, the sustained Ca2+ response disappeared, suggesting that EM may inhibit Ca2+ influx induced by P2u purinoceptor stimulation. In single-cell Ca2+ image analysis, low concentration of ATP (10(-6) M) induced Ca2+ oscillations, which were also inhibited by EM. The disappearance of [Ca2+]i oscillations after addition of EM was similar to that after addition of EGTA. These results suggest that EM may decrease Ca2+-dependent airway secretion by inhibiting agonist-stimulated Ca2+ influx.

Adenosine Triphosphate↗

Regulation of adrenergic nerve-mediated contraction of canine pulmonary artery by K+ channels.

The aim of the present study was to investigate the role of certain subtypes of K+ channels in nerve-evoked contractions of pulmonary artery in vitro. The lobar or segmental pulmonary arteries were dissected from dogs, cut into ring segments, and the contractile responses to electrical field stimulation (EFS) and noradrenaline were measured under isometric conditions. Addition of iberiotoxin, a big conductance Ca2+-activated K+ channel blocker, and apamin, a small conductance Ca2+-activated K+ channel blocker, did not change the resting tension but augmented the contractile responses to EFS, so that the electric stimulus frequency required to produce a half-maximal contraction (ES50) was decreased from 18.2+/-3.5 to 7.4+/-2.3 Hz (p<0.01) and from 16.8+/-2.2 to 11.4+/-2.0 Hz (p<0.05), respectively, whereas glibenclamide, an adenosine triphosphate (ATP)-sensitive K+ channel blocker, had no effect. In contrast, none of the K+ channel blockers altered the contractile response to noradrenaline. Incubation of tissues with iberiotoxin and apamin increased the release of 3H-noradrenaline evoked by EFS. We conclude that big conductance Ca2+-activated K+ channels and small conductance Ca2+-activated K+ channels may play a role in the regulation of adrenergic neurotransmission in the pulmonary artery, probably by inhibiting the exocytotic release of noradrenaline from the adrenergic nerve terminals.

Animals↗