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Biomedical subjects

M Takei

Publications and source records attributed to M Takei.

At least 109 records · Page 6Linked to original sources

Association of protein-tyrosine kinase with phospholipase C-gamma 1 in bone marrow-derived mouse mast cells.

Bone marrow-derived mouse mast cells contain phospholipase C-gamma 1 (PLC-gamma 1), which is phosphorylated at tyrosine residues upon cross-linking of cell-bound IgE antibodies with multivalent antigen. It was found that immune complexes formed from digitonin lysates of the mast cells by monoclonal anti-PLC-gamma 1 antibodies contained protein-tyrosine kinase (PTK), which phosphorylated PLC-gamma 1 in vitro. The tyrosine kinase activity coprecipitated with PLC-gamma 1-anti-PLC-gamma 1 complexes markedly increased when the cell lysates were obtained immediately after antigen challenge. The results indicate that PTK is associated with PLC-gamma 1 in the mast cells and that the kinase is activated upon cross-linking of Fc epsilon RI. Neither beta nor gamma subunit of Fc epsilon RI nor src family PTK was coprecipitated with the PLC-gamma 1-anti-PLC-gamma 1 complexes. In situ denaturation/renaturation experiments, which detect autophosphorylated kinases, indicated that the PTK associated with PLC-gamma 1 was a 44-kDa protein.

Animals↗

Cardiac electrical responses to catecholamines are differentially mediated by beta 2-adrenoceptors in anesthetized dogs.

We investigated the beta 2-adrenoceptor-mediated effects of atrial and ventricular effective refractory period (ERP), SA node pacemaker activity, and AV conductivity induced by sympathetic nerve stimulation or epinephrine infusion in anesthetized dogs. A beta 2-adrenoceptor antagonist, ICI 118,551 up to 100 micrograms/kg, i.v., inhibited the positive chronotropic and dromotropic responses to sympathetic stimulation but did not shorten the atrial or ventricular ERP, ICI 118,551 also attenuated the positive chronotropic and dromotropic responses and the shortening of atrial ERP in response to epinephrine but not the shortening of ventricular ERP. A selective beta 1-adrenoceptor antagonist, atenolol, inhibited each electrical cardiac response to sympathetic stimulation and epinephrine infusion in a similar manner. These results suggest that beta 2-adrenoceptor-mediated electrical cardiac responses to endogenous catecholamines also exist in addition to the predominant beta 1-adrenoceptor-mediated responses, and that the order of the proportion of beta 2-adrenoceptor-mediated cardiac effects was SA node pacemaker activity much greater than AV conductivity = atrial ERP much greater than ventricular ERP in the dog heart.

Anesthesia↗

Tyrosine phosphorylation is required for mast cell activation by Fc epsilon RI cross-linking.

We investigated the possible role of tyrosine phosphorylation in the activation process of mast cells by cross-linking of cell-bound IgE antibodies. Bone marrow-derived mouse mast cells (BMMC) were sensitized with mouse IgE antiDNP mAb and then challenged with multivalent Ag DNP conjugates of human serum albumin. Analysis of phosphotyrosine-containing proteins in their lysates by SDS-PAGE and immunoblotting revealed that cross-linking of cell-bound IgE antibodies induced a marked increase in tyrosine phosphorylation of several proteins. To obtain direct evidence for activation of protein-tyrosine kinases (PTK), phosphotyrosine-containing proteins in lysates of mast cells were affinity purified, and kinase activity of the immunoprecipitates was assessed by an in vitro kinase assay. The results clearly showed activation of PTK upon cross-linking of Fc epsilon RI. Activation of PTK was not detected by the same assay when the sensitized BMMC were challenged with monovalent DNP-lysine. Treatment of sensitized BMMC with either Ca2+ ionophore or PMA failed to induce the activation of PTK. A representative IgE-independent secretagogue, thrombin, induced histamine release from BMMC but failed to induce activation of PTK. The results excluded the possibility that PTK activation is the consequence of an increase in intracellular Ca2+ or activation of protein kinase C. Addition of genistein, a PTK inhibitor, to sensitized BMMC before Ag challenge inhibited not only Ag-induced PTK activation, but also inositol 1,4,5-trisphosphate production, and histamine release in a similar dose-response relationship. Other PTK inhibitors, such as lavendustin A and tyrphostin RG50864, also inhibited the Ag-induced activation of PTK and histamine release. The results collectively suggest that activation of PTK is an early event upstream of the activation of phospholipase C, and is involved in transduction of IgE-dependent triggering signals to mediator release.

Animals↗

Age-related changes in transmitter glutamate and NMDA receptor/channels in the brain of senescence-accelerated mouse.

The senescence-accelerated mouse (SAM-P/8) is known as a murine model of aging and memory dysfunction. In the hippocampus and cerebral cortex of P/8, the contents of glutamic acid and glutamine were significantly higher than those of normal strain R/1 during 2 and 14 months. High K(+)-evoked endogenous glutamic acid release from the slices of P/8 was increased in comparison with R/1 at 9 and 11 months. In addition, the Bmax of [3H]dizocilpine (MK-801, channel blocker for N-methyl-D-aspartic acid receptor/channel) binding in the cerebral cortex was age-dependently decreased in P/8 but not in R/1. These results suggest that synaptic dysfunctions in the glutamatergic system occur in the CNS of SAM-P/8.

Aging↗

Role of intracellular Ca2+ on histamine release from rat peritoneal mast cells.

The benzoic acid derivative 8-(N,N-diethylamino)octyl-3,4,5-trimethoxybenzoate hydrochloride (TMB-8) strongly inhibited histamine release from rat peritoneal mast cells induced by various secretagogues. TMB-8 also inhibited Ca2+ mobilization from intracellar Ca2+ stores. However, histamine release induced by compound 48/80 (condensation product of N-methyl-p-methoxy-phenethylamine and formaldehyde) was not affected by TMB-8. These results indicate that Ca2+ mobilization is necessary to elicit the release of histamine from mast cells.

Animals↗

Effects of ethylene glycol on the kinetics of contraction on flash photolysis of caged ATP in rat psoas muscle fibres.

ATP (1-1.2 mM) was photoreleased from caged ATP (5 mM) in skinned fibres from rat psoas muscle at 15-17 degrees C, to examine the effects of ethylene glycol (EG; 20% in solvent) on the kinetics of isometric contraction. Muscle fibres were stretched by 0.5-2% before photolysis, so that force just before photolysis was almost equal to the steady-state force after photolysis. At the phase of steady-state contraction, force and 500 Hz-stiffness in the presence of EG were 50% and 70% of the controls, respectively, resulting in a higher stiffness-to-force with EG, as reported previously. Following photolysis, force fell before rising to a steady-state plateau. The estimated rate constant of the force decay was approximately 90 s-1, and in the presence of EG was 80-85% of the control. This suggested a small effect of EG on the crossbridge detachment induced by ATP. The rate of force redevelopment was approximately 70 s-1, and EG decreased this rate to 50% of the control. This suggested that EG greatly slows the transition of the crossbridges from the detached state to the reattached force-producing state. The time course of the stiffness signals was consistent with this interpretation. The high stiffness-to-force ratio with EG indicated that EG not only reduces the rate constants which were directly examined in this study but also modifies other aspects of the crossbridge reaction.

Adenosine Triphosphate↗

Increased soluble CD4 and decreased soluble CD8 molecules in patients with Sjögren's syndrome.

PURPOSE: A new enzyme-linked immunosorbent assay for soluble CD4 (sCD4) and soluble CD8 (sCD8) molecules has been developed. We estimated the concentrations of these molecules in patients with Sjögren's syndrome and in patients with systemic lupus erythematosus (SLE) serving as a control population for non-Sjögren's inflammatory disease, since several findings suggestive of an aberration of immunocompetent cells have been reported in these autoimmune diseases. PATIENTS AND METHODS: The study population consisted of 41 patients with Sjögren's syndrome (28 cases of the primary form and 13 cases of the secondary form), 66 patients with SLE, and 43 normal individuals. Serum samples and clinical and laboratory data were collected from each patient and control. Assays of the sCD4 and sCD8 molecules were performed using an enzyme-linked immunosorbent kit developed by T Cell Science Inc., Cambridge, MA. RESULTS: The concentration of sCD4 was significantly increased in patients with both primary and secondary Sjögren's syndrome as compared with that in the control subjects. In contrast, sCD8 was significantly decreased in patients with primary disease but not in patients with secondary disease. A low or high concentration of sCD8 was significantly correlated with the presence of anti-SS-A antibody or hypocomplementemia, respectively. A similar significant correlation was noted between an increased sCD4 concentration and increased serum IgG level. In patients with SLE, the levels of both sCD4 and sCD8 were significantly increased. CONCLUSION: These observations represent the first evidence of an increased level of the sCD4 molecule and a decreased level of the sCD8 molecule and an association with immunologic abnormalities in Sjögren's syndrome. The increased and decreased levels of these soluble molecules observed may play a pathologic role in patients with Sjögren's syndrome.

Adult↗

Cross-reactivity of the B/B' subunit of the Sm ribonucleoprotein autoantigen with proline-rich polypeptides.

Using recombinant fusion proteins representing different regions of the human Sm B/B' polypeptide, the 4B4 monoclonal anti-Sm antibody was found to bind a C-terminus epitope that is proline-rich. 4B4 cross-reacted with the p24 gag protein of HIV-1 and with other polypeptides rich in proline residues, including collagen. BALB/c mice immunized with human collagen not only produced antibodies to the immunizing antigen but also antibodies to Sm. This immune mouse serum also recognized C-terminus B/B' fusion proteins. These data suggest that the Sm B/B' antigen contains a poly-Pro epitope that is shared by several autoantigens and retroviral proteins. These sites may be important in the induction of autoantibodies through molecular mimicry.

Animals↗

Phosphorus nuclear magnetic resonance studies on the calcium-dependent energy metabolism of rat cerebrum under conditions of increased potassium in vitro.

Using phosphorus nuclear magnetic resonance (31P NMR) we studied the biochemical changes that accompany high-K+ depolarization in cerebral tissue in vitro. Rat brain slices (wet weight 4-6 g) were placed in a glass NMR sample tube which was superfused with well-oxygenated Krebs solution at 25 degrees C. The broad signal seen in the spectrum of brain slices almost disappeared after phospholipids were extracted by using chloroform and methanol. Phospholipids in the extracts were identified as phosphatidylcholine and phosphatidylethanolamine. In high-K+ Krebs solution tissue phosphocreatine (PCr) was decreased while inorganic phosphate (Pi) was increased, and in normal solution PCr and Pi recovered to control levels within about 20 min. The extent of changes in PCr and Pi depended on the concentrations of K+. Ouabain or tetrodotoxin did not influence these changes significantly. In calcium-free solution, where Ca2+ was replaced by Mg2+, the changes caused by high K+ were decreased to 40% of that in normal high-K+ solution. When ouabain was further added to the calcium-free solution, the changes were decreased to 10%. This suggested that the increased metabolism in high K+ was caused mainly by calcium-dependent mechanisms and partly by the Na(+)-K+ pump.

Animals↗

Potent inhibitors of histamine release, two novel triterpenoids from the Okinawan marine sponge Penares incrustans.

Two novel triterpenoids with an unusual 14-carboxyl group, penasterone [1] and acetylpenasterol [2], were isolated from the Okinawan marine sponge Penares incrustans. The structures of 1 and 2 were established mainly on the basis of nmr spectroscopic data. The relative stereochemistry of 1 was confirmed by single-crystal X-ray diffraction analysis. Compounds 1 and 2 potently inhibited histamine release from rat peritoneal mast cells induced by anti-IgE in a dose-dependent manner.

Animals↗

Cardiac effects of vecuronium and its interaction with autonomic nervous system in isolated perfused canine hearts.

The chronotropic and inotropic effects of vecuronium bromide and its interaction with the autonomic nervous system were investigated in the isolated, cross-circulated right atrial and left ventricular preparations of the dog. Vecuronium, injected into the external jugular vein of the support dog, induced dose-dependent decreases in heart rate and arterial blood pressure, and increased atrial contractile force with no change in sinus rate in isolated atrial preparations. Vecuronium (1-3,000 micrograms), injected into the sinus node artery of the isolated atrium, induced dose-dependent increases in atrial contractile force with small increases in sinus rate. Vecuronium also increased the ventricular contractile force in a dose-dependent manner. The positive inotropic effect was attenuated in part by propranolol, but not by either tetrodotoxin or imipramine. Vecuronium inhibited in a dose-related manner the negative chronotropic and inotropic responses to parasympathetic nerve stimulation and carbachol (CCh) and the negative followed by positive cardiac responses to nicotine, but did not attenuate the positive responses to sympathetic nerve stimulation. The ID50s for the responses to parasympathetic stimulation, CCh, and nicotine were not significantly different. Vecuronium enhanced the positive chronotropic and inotropic responses to sympathetic nerve stimulation, tyramine, norepinephrine, and isoproterenol. These results indicate that (a) vecuronium causes the positive inotropic responses mediated by nonadrenergic mechanisms and beta-adrenoceptors, (b) vecuronium blocks ganglionic and presynaptic nicotinic and postsynaptic muscarinic receptor-mediated responses similarly, and (c) vecuronium enhances beta-adrenoceptor-mediated responses in the dog heart.

Animals↗

Mechanism of action of MY-1250, an active metabolite of Repirinast, in inhibiting histamine release from rat mast cells.

1. When MY-1250 (3.6 x 10(-5) M) was added to mast cells, it caused a rapid increase in adenosine 3':5'-cyclic monophosphate (cyclic AMP) and decrease in adenosine 5'-triphosphate (ATP), both of which recovered to their original levels within 2 min. The accumulation of cyclic AMP was maximal at 20 s after challenge with MY-1250. The minimum level of ATP was observed at 20 s after addition of MY-1250. 2. The initial rise in [Ca2+]i and the histamine release induced by DNP-AS antigen (40 micrograms ml-1) was most strongly inhibited at 20 s after incubation of the mast cells with MY-1250. 3. MY-1250 strongly and dose-dependently inhibited the histamine release from rat mast cells induced by antigen. Moreover, MY-125 strongly inhibited calcium ion mobilization from the intracellular Ca(2+)-store. 4. These results suggested that the inhibitory mechanism of MY-1250 on the initial rise in [Ca2+]i and histamine release induced by antigen was due to the inhibition of ATP-dependent Ca(2+)-release from the intracellular Ca(2+)-stores.

Adenosine Triphosphate↗

Effect of ryanodine on histamine release from rat peritoneal mast cells induced by anti-IgE.

Ryanodine strongly inhibited histamine release from rat peritoneal mast cells induced by anti-IgE. Ryanodine also inhibited Ca(2+)-mobilization from the intracellular Ca(2+)-store as well as histamine release in mast cells activated by anti-IgE. These results suggest that the effect of ryanodine on histamine release from rat mast cells might be due to the inhibition of Ca2+ release from the intracellular Ca2+ store.

Animals↗

Sympathetic nerve stimulation activates both beta 1- and beta 2-adrenoceptors of SA and AV nodes in anesthetized dog hearts.

We investigated blocking effects of the selective beta 1-adrenoceptor blocker atenolol (0.1-100 micrograms/kg, i.v.), the selective beta 2-adrenoceptor blocker ICI 118,551 (1-1000 micrograms/kg, i.v.) and the combination of the two drugs on positive chronotropic and dromotropic responses to norepinephrine (NE) released by stimulation of the sympathetic nerves in anesthetized, neurally decentralized, open-chest dogs after atropine was given. Stimulation of the intracardiac sympathetic nerves to the SA nodal region or to the AV nodal region selectively increased heart rate or decreased AV conduction time, respectively. ICI 118,551 inhibited the chronotropic or dromotropic response to each stimulation in a dose-dependent manner, but its inhibition of the dromotropic response was less than that of the chronotropic response. Atenolol similarly inhibited either the positive chronotropic or dromotropic response to each stimulation in a dose-related manner. The combination of atenolol and ICI 118,551 attenuated the responses to each stimulation more than atenolol alone. These data indicate that sympathetic nerve stimulation activates both beta 1- and beta 2-adrenoceptors of the SA and AV nodes and that the proportion of beta 2-adrenoceptor-mediated effects on the AV node is less than that on the SA node. These results suggest that neurally released NE in part controls physiological functional cardiac responses mediated through beta 2-adrenoceptors, in addition to the responses predominantly mediated through beta 1-adrenoceptors.

Adrenergic beta-Antagonists↗

[Clinical significance of urinary flow pattern--based on combined uroflowmetry and external sphincter electromyography].

We performed combined uroflowmetry and external sphincter electromyography in 108 patients (87 males and 21 females); 16 serving as normal controls, 49 with benign prostatic hyperplasia, 16 with overactive type of neurogenic bladder, 27 with underactive type of neurogenic bladder. Urinary flow pattern was classified into 5 categories. All of urinary flow patterns of normal controls showed pattern A which had the form of a bell. EMG showed complete suppression during micturition followed by a few intermittent increases in amplitude. Urinary flow patterns of BPH patients were distributed widely from pattern A to E. Intermittent increases in EMG amplitude during a late phase of micturition were characteristic in patients with BPH. We must pay attention to sex differences to evaluate urinary flow pattern because it could be influenced by abdominal pressure such as stressing or Créde maneuver in female patients with an underactive type of neurogenic bladder.

Adult↗

Parasympatholytic effects of vecuronium are mediated by nicotinic and muscarinic receptors in hearts of anesthetized dogs.

We investigated the blocking effects of vecuronium and pancuronium on the negative chronotropic and dromotropic responses to stimulation of the parasympathetic nerves in the anesthetized, open-chest dog. We stimulated the intracardiac parasympathetic nerves to the SA nodal region (SAP stimulation) or to the atrioventricular nodal region (AVP stimulation). SAP stimulation or AVP stimulation selectively decreased heart rate or increased atrioventricular conduction time, respectively. Vecuronium and pancuronium inhibited the chronotropic response to SAP stimulation and the dromotropic response to AVP stimulation in a dose-dependent manner. The ID50 of each drug for the dromotropic response was less than that for the chronotropic response. The blocking effect of vecuronium on the negative cardiac responses to parasympathetic stimulation was about 10-fold less potent than that of pancuronium. These results suggest that the blocking effects of vecuronium and pancuronium on the negative chronotropic and dromotropic responses to parasympathetic stimulation differ from those of atropine in the heart. In the isolated right atrium perfused with blood from the support dog, vecuronium, injected into the external jugular vein of the support dog, dose-dependently inhibited the negative chronotropic and inotropic responses to carbachol or SAP stimulation and the negative followed by positive chronotropic and inotropic responses to nicotine. The ID50 values for carbachol, nicotine and SAP stimulation were not significantly different. These results suggest that parasympatholytic effects of vecuronium are mediated by not only muscarinic receptors but also neuronal nicotinic receptors in hearts of anesthetized dogs.

Anesthesia↗

Cardiovascular effects of R- and S-enantiomers of Ro 22-9194, (2R)-2-amino-N- (2,6-dimethylphenyl)-N-[3-(3-pyridyl)propyl]propionamide D-tartrate and (2S)-2-amino-N-(2,6-dimethylphenyl)-N-[3-(3-pyridyl)propyl]propionamide L-tartrate, in dog heart preparations.

A newly synthesized compound, Ro 22-9194, relates in part of to the chemical structure of lidocaine. The cardiac effects of R- and S-enantiomers of Ro 22-9194 were investigated on isolated right atrial and left ventricular (LV) preparations which were cross-perfused with blood from another donor dog and an anesthetized open-chest dog. Each enantiomer (1-1,000 micrograms) decreased dose-dependently the sinus rate and atrial developed tension in the isolated right atrium (RA). The negative chronotropic responses to R- and S-enantiomers were not significantly different, and the negative inotropic responses to R- and S-enantiomers were also generally comparable. Both R- and S-enantiomers (10-3,000 micrograms) also decreased the ventricular developed tension in a dose-related manner similarly. In neurally decentralized, anesthetized, open-chest dogs, R- and S-enantiomers (0.1-3 mg/kg) injected into the femoral vein dose-dependently prolonged atrioventricular (A-V) conduction time and decreased heart rate (HR) and arterial blood pressure (ABP). Each enantiomer (3 mg/kg intravenously, i.v.) prolonged the interval between His bundle and ventricle rather than the interval between atrium and His bundle. There was no significant difference between R- and S-enantiomer-induced negative dromotropic actions. The duration of the negative dromotropic response to each enantiomer (3 mg/kg i.v.) was longer than that of the decrease in BP. These results suggest that the negative chronotropic, inotropic, and dromotropic effects of R- and S-enantiomers of Ro 22-9194 are not stereospecific in dog heart.

Analysis of Variance↗