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T Ebina

Publications and source records attributed to T Ebina.

At least 37 records · Page 2Linked to original sources

[Pharmacokinetics of propofol and ketamine during and after total intravenous anesthesia with propofol, fentanyl and ketamine for pediatric patients].

Pharmacokinetics of propofol and ketamine during propofol-fentanyl-ketamine (PFK) anesthesia for pediatric surgery was studied. Plasma levels of propofol (Pp) were maintained approximately at 2.5 micrograms.ml-1 during surgery. Fifteen minutes after the cessation of propofol infusion, Pp decreased to 1.5 micrograms.ml-1. Plasma levels of ketamine (Pk) were maintained at 150-200 ng.ml-1 during the surgery. After the cessation of ketamine infusion, Pk decreased as quickly as Pp. Pk values at 15 minutes and 120 minutes after the cessation of the infusion were 93 ng.ml-1, 24 ng.ml-1, respectively. On the other hand, plasma norketamine (Pn) levels increased gradually during surgery and stayed at 100-150 ng.ml-1 after the end of ketamine infusion to play an important role in post-operative sedation and pain relief. In conclusion, pharmacokinetics of propofol and ketamine in pediatric patients was similar to that in adult patients. PFK anesthesia can be used safely for pediatric as well as for adult patients.

Anesthesia, Intravenous↗

Caveolin interaction with protein kinase C. Isoenzyme-dependent regulation of kinase activity by the caveolin scaffolding domain peptide.

Caveolar localization of protein kinase C and the regulation of caveolar function by protein kinase C are well known. This study was undertaken to examine whether caveolin subtypes interact with various protein kinase C isoenzymes using the caveolin scaffolding domain peptide. When protein kinase C-alpha, -epsilon, and -zeta were overexpressed in COS cells followed by subcellular fractionation using the sucrose gradient method, all the isoenzymes (alpha, epsilon, and zeta) were detected in the same fraction as caveolin. The scaffolding domain peptide of caveolin-1 and -3, but not -2, inhibited the kinase activity and autophosphorylation of protein kinase C-alpha and -zeta, but not of protein kinase C-epsilon, overexpressed in insect cells. Truncation mutation studies of the caveolin-1 and -3 peptides demonstrated that a minimum of 16 or 14 amino acid residues of the peptide were required for the inhibition or direct binding of protein kinase C. Thus, the caveolin peptide physically interacted with protein kinase C and regulated its function. Further, this regulation occurred in a protein kinase C isoenzyme-dependent manner. Our results may provide a new mechanism regarding the regulation of protein kinase C isoenzyme activity and the molecular interaction of protein kinase C with its putative binding proteins.

Amino Acid Sequence↗

Regulation of adenylyl cyclase isoforms by N-alkanols.

We examined the effect of n-alkanols on adenylyl cyclase isoforms (types II and V) overexpressed in insect cells. Ethanol stimulated the type II isoform but not the type V isoform. Ethanol stimulated type II adenylyl cyclase greater than GTP gamma S, and the treatment of the membrane with GDP beta S or cholera toxin did not affect this stimulation. Other n-alkanols inhibited type V adenylyl cyclase activity in proportion to their lipophilic potency. In contrast, type II adenylyl cyclase was stimulated by weakly lipophilic n-alkanols and inhibited by strongly lipophilic n-alkanols. When solubilized membranes and purified preparations were used, all the n-alkanols inhibited type II adenylyl cyclase. Our data suggest that n-alkanols regulated adenylyl cyclase isoform-dependently. Stimulation of the type II isoform was independent from the interaction with Gs alpha but required the presence of an intact membrane structure. Our study may provide another step to understanding how membrane protein subtypes are differentially regulated by n-alkanols.

Adenylyl Cyclase Inhibitors↗

A simple method for the propagation and purification of gamma delta T cells from the peripheral blood of glioblastoma patients using solid-phase anti-CD3 antibody and soluble IL-2.

Although gamma delta T cells make up no more than 10% of the peripheral blood mononuclear (PBM) cells, they appear to play an important role in host defense against tumor growth. In order to evaluate their functional activity against tumors and their response to various cytokines, large numbers of cells are required. Here, we describe a newly-devised method for the isolation and expansion of gamma delta T cells from the peripheral blood of cancer patients, in particular those with glioblastoma. Using this approach, a 1000-1500-fold increase in total cell numbers was achieved in two weeks, the proportion of gamma delta T cells in the expanded population being, on average, approximately 30% after 14 days of culture. The method therefore gives a yield of approximately 10-15 x 10(8) gamma delta T cells from only 5 ml of peripheral blood from glioblastoma patients and normal controls. The highly purified gamma delta T cells of glioblastoma patients were shown to bear both a high-affinity interleukin-2 receptor (IL-2R) and a low-affinity IL-12 receptor (IL-12R). They also displayed significant cytotoxicity against autologous tumor cells, but not against autologous fresh or IL-2-treated lymphocytes, and proliferated in response to IL-2, both effects being dependent on the dose of IL-2 used for activation. In addition, overnight incubation with 700 U/ml of IL-2 or 50 ng/ml of IL-12 resulted in significant cytotoxic activity of patients' gamma delta T cells against K562 target cells, the level of activity being almost the same as with similarly-treated gamma delta T cells from normal controls (P > 0.05). These results demonstrate that the patients' gamma delta T cells obtained using this method are intact in terms of cytotoxic function. Thus, this method not only makes it possible to produce large numbers of purified gamma delta T cells but also to produce populations containing both gamma delta T cells and NK cells, both active against tumor targets which might be suitable for clinical trials of adoptive-immunotherapy, especially in cancer patients for whom no effective therapy is available.

Adolescent↗

Conformation-dependent activation of type II adenylyl cyclase by protein kinase C.

Phorbol ester treatment enhanced the catalytic activity of type II adenylyl cyclase overexpressed in insect cells. In cells coexpressing type II adenylyl cyclase and protein kinase C-alpha, type II adenylyl cyclase catalytic activity was higher even in the absence of phorbol ester treatment; phorbol ester treatment further and markedly enhanced type II adenylyl cyclase catalytic activity. However, this enhancement, either by phorbol ester treatment or by coexpression of protein kinase C-alpha, was lost following membrane solubilization with detergents. This attenuation was unaffected by phosphatase inhibitor or salts. In contrast, membrane solubilization did not affect forskolin-stimulated type II adenylyl cyclase catalytic activity. Purified type II adenylyl cyclase was stimulated by forskolin and Gs alpha, but not by protein kinase C-alpha. Therefore, a specific mammalian protein kinase C isoenzyme can activate type II adenylyl cyclase, but the mechanism clearly differs from that underlying either Gs alpha- or forskolin-mediated stimulation.

Adenylyl Cyclases↗

Isoform-dependent activation of adenylyl cyclase by proteolysis.

Recent findings have suggested that the cellular proteolytic system plays a major role in the regulation of various intra- and extra-cellular signaling. It was previously shown that proteolytic treatment of adenylyl cyclase leads to the activation of this enzyme. We demonstrate that this activation occurs in an adenylyl cyclase isoform-dependent manner. The type II isoform was strongly activated (approximately 500%), the type III isoform was modestly activated (approximately 30%),and the type V isoform was inhibited by trypsin. Activation of type II adenylyl cyclase occurred in trypsin dose- and time-dependent manners and was blocked by a trypsin inhibitor in a dose-dependent manner. Other proteases, such as thrombin and plasminogen, similarly activated the type II isoform, but not the others. Our data suggest that proteolytic activation is an isoform- and thus cell type-dependent mechanism of altering adenylyl cyclase catalytic activity.

Adenylyl Cyclases↗

Isoform-specific regulation of adenylyl cyclase by oxidized catecholamines.

Both epinephrine and manganese are known to stimulate cAMP production in cardiac homogenates. When added together, however, they inhibited adenylyl cyclase catalytic activity. Type V adenylyl cyclase, the major isoform in the heart, was also inhibited when an increasing concentration of epinephrine was added in the presence of manganese. Inhibition was not dependent on the condition of stimulation or preparation of the enzyme. However, this inhibition was abolished in the presence of anti-oxidant. Other catecholamines, including dopamine and isoproterenol, as well as adrenochrome, an oxidized product of epinephrine, similarly inhibited the activity of this enzyme. Kinetic analyses revealed that the K(m) for the substrate ATP was unchanged, but the V(max) was significantly decreased. In contrast, type II adenylyl cyclase, a non-cardiac isoform, was resistant to such inhibition by adrenochrome and was somewhat stimulated by it. Thus, catecholamines, when oxidized, directly interacted with adenylyl cyclase in an isoform-specific manner in the absence of G proteins. Our findings suggest that adenylyl cyclase isoforms have different sensitivity to various stresses, including oxidative stress.

Adenylyl Cyclases↗

Crohn's disease associated with renal amyloidosis successfully treated with an elemental diet.

We report a case of Crohn's disease associated with nephrotic syndrome due to renal amyloidosis in a 21-year-old man in whom remission of both Crohn's disease and the nephrotic syndrome has been maintained with an elemental diet. The patient developed toxic megacolon and nephrotic syndrome due to renal amyloidosis. Intensive intravenous prednisolone therapy with total parenteral nutrition was dramatically effective in treating the toxic megacolon and inducing remission in Crohn's disease and afterward, remission of the nephrotic syndrome. Remission of both conditions has been maintained for more than 2 years with the elemental diet. To our knowledge, this is the first confirmed case of Crohn's disease complicated with renal amyloidosis in which only slight proteinuria (below 0.3 g/day) was shown with an elemental diet used for a long period.

Adult↗

Computer simulation study on the conversion of spirolactone to enones over H-Y zeolite.

We report here the results of computer modeling studies and quantum chemical calculations on the spirolactone-to-enone conversion reaction over the zeolite catalysts, especially H-Y zeolite. We studied the adsorption mode of the molecules inside the supercage of H-Y and the mechanism of electron transfer between organic molecules and the framework of zeolite H-Y by density functional theory (DFT) calculations. Because the organic molecules considered in the present study are less symmetrical we docked the molecule inside the supercage of H-Y and energy minimization was then applied to these docked structures to yield representative low-energy binding sites for the molecules within the host structure. The interaction energy results show that the major interaction is between the methylene hydrogen of the molecule and the oxygen of the framework. The molecular electrostatic potential maps show that the ketonic oxygen of the reactant molecules abstract proton from Brönsted acid site. Thus the mechanism proposed by DFT calculation matches well with the experimental observations.

Computer Simulation↗

[Catecholamine and dopamine].

Almost all the genes of the enzymes which synthesize and metabolize the catecholamines (dopamine, norepinephrine, epinephrine) have been cloned and the gene targeting technology have been applied to introduce the gene knockout mouse such as thyrosine hydroxylase and dopamine beta hydroxylase. At least nine adrenergic receptors and five dopamine receptors have been cloned, which include alpha 1A-, alpha 1 B-, alpha 1 D-, alpha 2 A-, alpha 2B-, alpha 2C-, beta 1-, beta 2-, beta 3-adrenergic receptors and D1-, D2-, D3-, D4-, D5-dopamine receptors. Transgenic mouse as well as gene knockout mouse of these genes have been also produced. Furthermore, intracellular signal transduction systems of the catecholamines have been clarified using molecular techniques, including nine subtypes of adenylyl cyclase. Using these cloned genes and transgenic and gene knockout mouse, more detailed features of the catecholamine systems and those receptors and intracellular signal transduction systems will be clarified in near future.

Adenylyl Cyclases↗

In vitro interleukin 12 activation of peripheral blood CD3(+)CD56(+) and CD3(+)CD56(-) gammadelta T cells from glioblastoma patients.

Interleukin (IL)-12 has recently been shown to be directly involved in the activation of natural killer and alphabeta T cells via an IL-2-independent pathway. We show here that another type of human cytotoxic cell, gammadelta T cells activated by solid-phase anti-CD3 antibody and expanded using IL-2, obtained, in this case, from the peripheral blood of glioblastoma patients, displays significant tumoricidal activity. In addition, its cytotoxic activity against K562 or Daudi cells or against autologous glioblastoma targets (but not lymphocytes) is significantly enhanced when costimulated with IL-2 and IL-12. To study this synergistic activation by the two interleukins of the patients' gammadelta T cells, we screened the cells for the presence of the IL-2 receptor (IL-2R) and IL-12 receptor (IL-12R) using both flow cytometric analysis and PCR. The patients' gammadelta T cells constitutively expressed the high-affinity IL-2R; when stimulated with IL-12 plus IL-2, the levels of IL-2Ralpha and IL-2Rbeta increased, whereas that of IL-2gamma did not. They also expressed marginal levels of low-affinity IL-12R both immediately after IL-2 expansion and after 24-h incubation, and significantly higher levels after 72-h incubation, consistent with the level of gammadelta T-cell activation. IL-12 alone induced little proliferation of patients' gammadelta T cells in a 24-h assay and none in a 72-h assay; however, it caused a marked inhibition of the IL-2-induced proliferative response in the 72-h assay. The synergistic action of IL-2 and IL-12 was completely abolished by combined pretreatment with anti-IL-2alpha, beta, and gamma mAbs. IL-12-mediated enhancement of gammadelta T cell cytotoxic activity was inhibited by anti-IL-2Rbeta mAb in a dose-dependent manner but not by anti-IL-2Ralpha or anti-IL-2Rgamma mAbs. Thus, the increased expression of the IL-2Rbeta is critical for the synergistic activation of gammadelta T cells by IL-12 plus IL-2; it is also probable that at least the low-affinity IL-12R contributes to the activation of gammadelta T cells mediated by either IL-12 alone or IL-12 plus IL-2. We have, therefore, demonstrated that IL-12 can stimulate the cytotoxic activity of gammadelta T cells from glioblastoma patients, acting via the IL-2Rbeta component of the IL-2R and low-affinity IL-12R. IL-12 activation of patients' gammadelta T cells could possibly be of potential use in the treatment of glioblastoma patients.

Antigens, CD↗

Soluble adenylyl cyclase from Spodoptera frugiperda (Sf9) cells. Purification and biochemical characterization.

An insect ovarian cell, Spodoptera frugiperda (Sf9), has been widely used to express recombinant proteins, including adenylyl cyclase, as a host cell in the baculovirus expression system. We report the presence and characterization of a soluble adenylyl cyclase (sAC) distinct from a membrane-bound form of adenylyl cyclase (mAC) that is also present in Sf9 cells. sAC was purified 3,500-fold to near homogeneity; a single band at 25 kDa on SDS-polyacrylamide gel electrophoresis correlated well with adenylyl cyclase catalytic activity. The purified enzyme had a catalytic activity of 0.1 micromol/min.mg and the Km of 0.55 mM for the substrate ATP. In contrast to mAC, sAC was heat-stable. Enzymatic activity of sAC was not stimulated by forskolin and was inhibited by salts at high concentrations. sAC utilized both manganese- and magnesium-ATP as substrate. Di- or triphosphate-containing nucleotides, such as GTP and GDP, as well as pyrophosphate, noncompetitively inhibited sAC. Our data suggest that the physical and biochemical characteristics of sAC are different from those of mAC in Sf9 cells as well as from those of other known forms of adenylyl cyclase in animal cells; sAC in Sf9 cells may constitute a new member of adenylyl cyclase found in animals.

Adenylyl Cyclase Inhibitors↗

Regulation of type V adenylyl cyclase by PMA-sensitive and -insensitive protein kinase C isoenzymes in intact cells.

Abstract Type V adenylyl cyclase (AC) was stably over-expressed in HEK293 cells (293AC-V). Forskolin-stimulated cAMP accumulation in 293AC-V was 5 times as great as that in control cells. PMA, a protein kinase C (PKC) activator, enhanced cAMP accumulation in 293AC-V cells dose-and time-dependently and this enhancement was abolished by staurosporine. Insulin also enhanced cAMP accumulation in 293AC-V cells. Co-transfection of PKC-zeta, but not PKC-alpha, potentiated the effects of insulin. These data suggest that type V AC activity is regulated in cells by PKC isoenzymes through different extracellular stimuli.

Adenylyl Cyclases↗

Prophylaxis of rotavirus gastroenteritis using immunoglobulin.

Oral inoculation of the human group A rotavirus MO strain (G serotype 3) into 5-day-old BALB/c mice causes gastroenteritis characterized by diarrhea. Using this small animal model, passive protection of suckling mice against human rotavirus infection was achieved with the use of immunoglobulin (IgY) from the yolks of eggs of rotavirus-immunized hens. When IgY against the rotavirus strain homotypic with the challenge virus (MO strain) was administered to mice, complete protection was achieved. After immunizing 8-month old pregnant Holstein cows with human rotavirus MO strain, colostrum containing neutralizing antibody to four different G serotypes of human rotavirus, designated Rota colostrum, was obtained. Rota colostrum completely protected suckling mice against rotavirus infection, and purified IgG obtained from Rota colostrum protected against infection with the homologous virus. After randomly grouping 20 infants from a baby care center, 10 infants received 20 ml of Rota colostrum for 2 weeks and 10 control infants received none. Rotavirus-associated diarrhea developed in 7 of the 10 infants in the control group. None of the three infants in the group daily receiving the Rota colostrum had such symptoms, and one of three infants in the group receiving treatment, every other day developed rotavirus-induced diarrhea. Oral administration of Rota colostrum seems to be an effective and safe means of preventing diarrhea caused by human rotavirus infection. Recently, the immunized cows were boosted by reinjection of 4 serotypes of human rotavirus into a superficial cervical lymph node two weeks after delivery, resulting in mass production of cow's milk containing a high-titered antibody to human rotavirus. Therefore, the hyperimmune cow's milk is a candidate for a "physiologically functional food" in Japan.

Animals↗

Relationship between infrared spectra and isomorphous substitution in smectites: a computer simulation study.

Smectites, members of the 2:1 layer silicate family, share the common feature that two tetrahedral sheets sandwich a sheet of octahedrally coordinated metal ion. The diversity of the members of the 2:1 layer silicates occurs because of their capacity for isomorphous substitution of various cations in the octahedral or tetrahedral sheets. Substitution of a divalent metal ion (such as Mg2+) for the trivalent Al3+ or a trivalent metal ion (such as Al3+) for the tetravalent silicon results in a net negative charge, which then undergoes interaction with positive ions (the exchangeable cations) to form an interlayer hydrated phase. Local density functional (LDF) calculations were employed to model isomorphous substitution of Al3+ by Na+, K+, Mg2+, Fe2+, and Fe3+ in the octahedral layer of a dioctahedral smectite clay such as montmorillonite. The energies of the isomorphous substitution were then compared with the experimental observation. The ordering for successful substitution is Al3+ > Fe3+ > Mg2+ > Fe2+ > Na+ < K+. This ordering is consistent with experimental observation. The vibrational frequencies for the isomorphous substituted systems were calculated by LDF calculation and were compared with the experimental IR results. The results match very well with experiment. This understanding will help in successful prediction of the catalytic activity of smectite clays.

Aluminum Silicates↗

AT1 receptor antagonist, TCV 116, does not prevent cardiac hypertrophy in salt-loaded Dahl salt-sensitive rats.

1. We investigated the effects of direct blockade of angiotensin II (AngII) by a potent, non-peptide angiotensin II toff 1 (AT1) receptor antagonist, TCV 116, on the development of cardiac hypertrophy in salt-loaded Dahl salt-sensitive rats. 2. Six week old male Dahl salt-sensitive rats (n = 44) were fed a 4% salt diet and were simultaneously given various doses of TCV 116 orally for 7 weeks. Each control group received vehicle alone. 3. Dietary high salt intake elevated blood pressure continuously and caused left ventricular hypertrophy in rats treated with vehicle. TCV 116 had a minor effect on the rise in blood pressure. Left ventricular mass (left ventricular weight/body-weight) decreased slightly but not significantly, in rats treated with 3 mg/kg per day of TCV 116 (n = 8). Higher doses of TCV 116 (6 and 10 mg/kg per day; n = 8 each) did not show a decrease in left ventricular mass compared with the vehicle control. 4. These results suggest that AngII blockade has only minor effects on hypertension and on cardiac hypertrophy in salt-loaded Dahl salt-sensitive rats and that the renin-angiotensin system may not contribute to the development of cardiac hypertrophy in Dahl salt-sensitive rats on a moderately high-salt diet.

Angiotensin Receptor Antagonists↗

Aortic intimal sarcoma with acute myocardial infarction.

An autopsy case of aortic sarcoma who died of acute myocardial infarction caused by coronary involvement is reported. The patient was a 54 year old woman who was admitted because of an undiagnosed fever and general fatigue of 6 months duration. Magnetic resonance imaging (MRI) showed a tumor in the aortic arch. Total aortic arch replacement was performed. It was diagnosed as a malignant mesenchymal tumor of the aorta. The patient died of acute myocardial infarction 10 months after the operation. At autopsy, the tumor had invaded the luminal surface and intima of the proximal anastomosis (the remnant ascending aorta and the graft), the aortic valves, the distal anastomosis (surgical line of the thoracic aorta plus the graft), and the coronary arteries. The left main coronary artery showed complete obstruction by fibrin thrombus with tumor invasion in the intima, which was responsible for acute myocardial infarction. Primitive and bizarre tumor cells proliferated with many slit-like tissue spaces. Most of the tumor except for its luminal surface showed necrosis. Ultrastructurally, there were spaces between tumor cells, suggesting lumen formation, and some of them had microvilli. This sarcoma was considered to be the so-called aortic intimal sarcoma.

Aortic Diseases↗

[Regional adoptive immunotherapy using activated lymphocytes].

The antitumor effect of PSK was analysed with the "double grafted tumor system" in which BALB/c mice received simultaneous intradermal inoculations of Meth-A in the right (10(6) cells) and left (2 x 10(5) cells) flanks and were then injected with PSK in the right tumor on day 3. PSK inhibited the growth of not only the right but also the left, non-treated tumor. Immunized spleen cells were taken from mice which had been cured by intratumoral administration of 5 mg of PSK. On day 3, one hour after intravenous injection of cyclophosphamide, immunized spleen cells (2 x 10(7) cells/mouse) were injected into the Meth-A tumor. Adoptive transfer of PSK immunized spleen cells caused the complete regression of Meth-A tumors. However, the intravenous administration of spleen cells showed no antitumor effect. Expansion of peripheral blood lymphocytes was stimulated with immobilized anti CD3 antibody plus IL-2 for use in adoptive immunotherapy. gamma delta T cells proliferated in response to immobilized anti CD3. About 5 x 10(9) BRM-activated killer (BAK) cells were treated in cancer patients who gave their informed consent. One patient with colon cancer and metastatic cancer of the liver was treated with BAK cells by transcatheter arterial infusion without side effect. During the course of BAK treatment, serum IAP CIAE (crossed immunoaffino electrophoresis) pattern of patient changed tumor IAP pattern to normal IAP pattern. Two patients with malignant tumor in maxillary sinus were treated with BAK cells and OK-432 intratumorally. BAK treatment induced more infiltration of T cells, M phi and granulocytes in the tumor than OK-432 treatment alone and showed an antitumor effect with extensive necrosis.

Animals↗