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Biomedical subjects

T Inoue

Publications and source records attributed to T Inoue.

At least 991 records · Page 55Linked to original sources

[Spread of spinal anesthesia with 3 different hyperbaric solutions used in Japan].

We studied the spread of spinal anesthesia with 3 different hyperbaric solutions commercially available in Japan. Percamin-S [0.3% dibucaine in 5% hyperbaric saline] (P), Neo-Percamin.S [0.24% dibucaine with 0.12% T-caine in 9.5% glucose] (N) and 0.5% Tetcaine [tetracaine] in 10% glucose (T) were studied. Two ml of each solution was administered intrathecally using a 25 gauge Quincke needle. Patients (n = 90) were allocated to one of 9 groups receiving 2 ml of P, N or T at L 2-3, L 3-4 or L 4-5 interspace. Both N and T produced significantly higher spread of analgesia than P at any of L 3-4 and L 4-5 interspaces. P and N have the same specific gravity, even though significant differences were found in spread of segmental analgesia. Local anesthesic agents and solvent solutions themselves are considered to influence the spread of spinal anesthesia as the specific gravity of hyperbaric solution does.

Adult↗

The mechanisms of nickel uptake by rat primary hepatocyte cultures: role of calcium channels.

The present study was designed to clarify the mechanism of nickel (Ni) uptake in primary cultures of rat hepatocytes. Exposure of the hepatocytes to Ni (2-50 microM; as NiCl2) for up to 6 h was not cytotoxic, as assessed by the tetrazolium-based dye (MTT) assay. Hepatocytes were treated with 10 microM NiCl2 in the absence or presence of calcium (Ca) and magnesium (Mg) (1 mM). Ni uptake was increased by 19% in medium lacking Mg or Ca and was increased by 37% in Ca- and Mg-free medium. The role of Ca channels on Ni uptake by the hepatocytes was investigated. Pretreatment with nicardipine or verapamil (200 microM), potent inhibitors of Ca channels, decreased Ni uptake by 20%. This effect was only observed when the cells were incubated in the absence of Ca. Pretreatment with vasopressin (100 nM), a well-known Ca channel agonist, significantly increased Ni uptake by the hepatocytes (24%). To determine the involvement of carrier-mediated processes on Ni uptake, the effect of temperature was also investigated. At 4 degrees C the Ni uptake was decreased by 20% compared to uptake at 37 degrees C. These results indicate that Ni uptake by the hepatocytes occurs, at least in part, through the Ca channel transport processes. Further study will be required to assess what other mechanisms are involved.

Animals↗

Overexpression of GML promotes radiation-induced cell cycle arrest and apoptosis.

Expression of the GML gene is regulated in a p53-dependent manner and is correlated with the sensitivity of esophageal cancer cells to anti-cancer drugs. To clarify the effect of GML expression on the sensitivity of cancer cells to ionizing radiation treatment, we established cell lines derived from p53-mutant human osteosarcoma HOS and esophageal carcinoma TE10 lines in which GML expression can be induced using the tetracycline-regulable system. Colony formation assay showed that the growth of cells expressing GML are inhibited in response to ionizing radiation, whereas cells not expressing GML were resistant to irradiation. Further investigation demonstrated that GML expression enhances G2/M arrest and apoptosis induced by gamma-irradiation. These results suggest that GML sensitizes cancer cells to ionizing radiation.

Apoptosis↗

Role of inositol 1,4,5-trisphosphate receptor in ventral signaling in Xenopus embryos.

The inositol 1,4,5-trisphosphate (IP3) receptor is a calcium ion channel involved in the release of free Ca2+ from intracellular stores. For analysis of the role of IP3-induced Ca2+ release (IICR) on patterning of the embryonic body, monoclonal antibodies that inhibit IICR were produced. Injection of these blocking antibodies into the ventral part of early Xenopus embryos induced modest dorsal differentiation. A close correlation between IICR blocking potencies and ectopic dorsal axis induction frequency suggests that an active IP3-Ca2+ signal may participate in the modulation of ventral differentiation.

Activins↗

Intrathecal administration of a new nitric oxide donor, NOC-18, produces acute thermal hyperalgesia in the rat.

A nitric oxide releasing compound, NOC-18, was injected intrathecally in order to determine the role of NO in spinal nociceptive mechanisms in rats. The nociceptive threshold was evaluated by the radiant heat tail-flick test. The effects of intrathecal injection of N-nitro-L-arginine methyl ester (L-NAME), an NO synthase inhibitor; methylene blue (MB), a soluble guanylate cyclase inhibitor and hemoglobin (Hb), an NO scavenger, on the nociceptive threshold were measured in the presence and absence of 0.1, 1 and 10 microg of NOC-18. The results were compared with a control group of rats which were injected with the same volume of normal saline. NOC-18 caused a dose-dependent curtailment of the tail-flick latency during the period from 15 to 150 min. L-NAME, MB and Hb all produced prolongation of the tail-flick latency during the same time period. The hyperalgesia induced by this concentration range of NOC-18 was completely blocked by Hb, but was not affected by either L-NAME or MB. These findings indicate that NO plays a direct role in thermal hyperalgesia in the spinal cord, and that an another pathway in addition to the NO-cGMP pathway may be involved.

Animals↗

A late ON response remains in visual response of the mGluR6-deficient mouse.

In a previous study, we showed that the visual ON response recorded from the superior colliculus is absent in the metabotropic glutamate receptor subtype 6 (mGluR6) knockout mice. However, these mutant mice can respond to some visual inputs and are able to learn a light-dark discrimination task. Here, we systematically investigated the possibility that some ON responses could remain in the mutant mice. Recording light evoked field potentials from the superior colliculus of mGluR6-deficient mice at scotopic and mesopic backgrounds, we found a characteristic ON response that differs from the ON response of wild-type mice. The ON responses recorded from the mutant mice appeared with a latency (200-300 ms) longer than that of the wild-type mice (50-100 ms) and amplitudes of this late ON response decreased upon increase of the light intensity in most cases examined. The late ON response may contribute to the apparent normal behavior and some physiological responses to light stimuli in mGluR6-deficient mice.

Animals↗

Pharmacological characterization of a novel, orally active, nonpeptide bradykinin B2 receptor antagonist, FR167344.

To investigate the pathophysiological role of bradykinin and to develop a drug for inflammatory diseases, we discovered an orally active, nonpeptide bradykinin B2 receptor antagonist, FR167344, N-[N-[3-[(3-bromo-2-methylimidazo[1,2-a]pyridin-8-yl)oxymethyl]-2, 4dichlorophenyl]-N-methylaminocarbonylmethyl]-4-(dimethyl aminocarbonyl) cinnamylamide hydrochloride. This compound competitively displaced [3H]bradykinin binding to bradykinin B2 receptors present in guinea-pig ileum membrane with an IC50 value of 6.6 X 10(-10) M. In isolated guinea-pig ileum preparations, it also antagonized bradykinin-induced contraction with a pA2 value of 9.3. In human lung fibroblast IMR-90 cells, FR167344 displaced [3H]bradykinin binding to human bradykinin B2 receptors with an IC50 value of 1.3 X 10(-8) M, but not [3H]des-Arg10-kallidin binding to human bradykinin B1 receptors. In vivo, oral administration of FR167344 inhibited bradykinin-induced bronchoconstriction in guinea pigs and the bradykinin-induced hypotensive response for 6 h in rats. These results show that FR167344 is a potent, selective, orally active and long acting bradykinin B2 receptor antagonist.

Animals↗

Phosphorylation-dependent regulation of N-methyl-D-aspartate receptors by calmodulin.

The N-methyl-D-aspartate (NMDA) receptor plays important roles in synaptic plasticity and brain development. The NMDA receptor subunits have large intracellular domains in the COOH-terminal region that may interact with signal-transducing proteins. By using the yeast two-hybrid system, we found that calmodulin interacts with the COOH terminus of the NR1 subunit and inactivates the channels in a Ca2+-dependent manner. Here we show that protein kinase C (PKC)-mediated phosphorylation on serine residues of NR1 decreases its affinity for calmodulin. This suggests that PKC-mediated phosphorylation of NR1 prevents calmodulin from binding to the NR1 subunit and thereby inhibits the inactivation of NMDA receptors by calmodulin. In addition, we show that stimulation of metabotropic glutamate receptor 1alpha, which potentiates NMDA channels through PKC, decreases the ability of NR1 to bind to calmodulin. Thus, our data provide clues to understanding the basis of cross-talk between two types of receptors, metabotropic glutamate receptors and the NR1 subunit, in NMDA channel potentiation.

Amino Acid Sequence↗

Hematopoietic and lymphopoietic responses in human granulocyte-macrophage colony-stimulating factor (GM-CSF) receptor transgenic mice injected with human GM-CSF.

Using a clonal assay of bone marrow (BM) cells from transgenic mice (Tg-mice) expressing the human granulocyte-macrophage colony-stimulating factor receptor (hGM-CSFR), we found in earlier studies that hGM-CSF alone supported the development not only of granulocyte-macrophage colonies, but also of erythrocytes, megakaryocytes, mast cells, blast cells, and mixed hematopoietic colonies. In this report, we evaluated the in vivo effects of hGM-CSF on hematopoietic and lymphopoietic responses in the hGM-CSFR Tg-mice. Administration of this factor to Tg-mice resulted in dose-dependent increases in numbers of reticulocytes and white blood cells (WBCs) in the peripheral blood. Morphological analysis of WBCs showed that the numbers of all types of the cell, including neutrophils, eosinophils, monocytes, and lymphocytes increased; the most remarkable being in lymphocytes that contained a number of large granular lymphocytes (LGLs) in addition to mature T and B cells. However, total cellularity of the BM of the Tg-mice decreased in a dose-dependent manner when hGM-CSF was injected. In sharp contrast to the BM, spleens of the Tg-mice were grossly enlarged. Although all types of blood cells and hematopoietic progenitors increased in the spleen, erythroid cells and their progenitors showed the most significant increase. Increased numbers of megakaryocytes and LGLs were also observed in spleen and liver of the treated Tg-mice. Flow cytometric analysis showed that LGLs expanded in Tg-mice expressed Mac-1+ CD3- NK1.1+. The thymus of Tg-mice treated with hGM-CSF exhibited a dose-dependent shrinkage and a remarkable decrease in CD4+ CD8+ cells. Thus, hGM-CSF stimulated not only myelopoiesis but also erythropoiesis and megakaryopoiesis of hGM-CSFR Tg-mice in vivo, in accordance with our reported in vitro findings. In addition, hGM-CSF affected the development of lymphoid cells, including natural killer cells of these Tg-mice.

Animals↗

Phase Behavior of Binary Mixture of Heptaethylene Glycol Decyl Ether and Water: Formation of Phase Compound in Solid Phase

Differential scanning calorimetry (DSC) and Fourier transform infrared spectroscopy (FT-IR) were used to construct and characterize the phase diagram for a binary mixture of heptaethylene glycol decyl ether (C10 E7 ) and water in the temperature range from -60 to 80°C. Plots of the endothermic peak temperatures obtained by DSC measurements against compositions provided eutectic solid-liquid phase boundaries with a eutectic composition of 34 wt% of H2 O. On the other hand, heat of fusion per unit weight of the mixture changed discretely at the composition corresponding to the "eutectic" composition. Furthermore, the IR spectra obtained for the mixture in the solid phase were well reproduced as a superposition of those for the mixture of 34 wt% H2 O and pure components but were not reproduced by superimposing the spectra obtained for the solid surfactant and ice. These observations indicate that a solid phase compound is formed between C10 E7 and water with a stoichiometry of 1:14 and that the compound and pure components exist as separate phases, rather than the phases separating into surfactant and ice, which would be expected if the C10 E7 /water mixture formed a true eutectic mixture system. It is estimated from the composition corresponding to the phase compounds that two molecules of water per oxyethylene unit are bound to hydrophilic polyoxyethylene chain of C10 E7 to form a hydrated compound.

Journal Article↗

Continuous infusion of 5-fluorouracil and low dose cisplatin infusion for the treatment of advanced and recurrent gastric adenocarcinoma.

BACKGROUND: Several chemotherapy studies have suggested that continuous infusion of 5-fluorouracil (5-FU) is more effective than bolus 5-FU. In addition, 5-FU and cis-Diamminedichloroplatinum-II (cisplatin) in combination have been shown to have synergistic cytotoxicity against several human neoplasms. In this study, the authors evaluated the efficacy and toxicity of continuous infusion of 5-FU and low dose cisplatin infusion (FP therapy) in the treatment of advanced and recurrent gastric adenocarcinoma. The relationship between the response to FP therapy and several factors was also examined. METHODS: A total of 26 patients fulfilling standard eligibility criteria were enrolled in the trial. FP therapy consisted of 5-FU (350 mg/m2/day every day by continuous infusion) and cisplatin (7.5 mg/m2/day in 100 mL of normal saline infused over 1 hour on Days 1-5 every week) for 4 weeks. RESULTS: A complete response was observed in 2 cases and a partial response in 11 cases, for an overall response rate of 50%. Patients with good performance status (PS) (0-1) and differentiated histologic type showed higher response rates (50.0% and 63.6%, respectively) than patients with poor PS (2 or 3) and undifferentiated histologic type (28.6% and 35.3%, respectively), although there were no significant differences. Patients with low serum levels of immunosuppressive acidic protein (IAP) showed a significantly higher response rate (71.4%) than those with high IAP levels (0%). Toxic effects included leukopenia, thrombocytopenia, nausea, and vomiting; these were not life-threatening and did not require treatment interruption. CONCLUSIONS: FP therapy is a promising regimen for patients with advanced and recurrent gastric adenocarcinoma. Serum levels of IAP may predict chemosensitivity.

Adenocarcinoma↗

Activation of the G protein Gq/11 through tyrosine phosphorylation of the alpha subunit.

Various receptors coupled to the heterotrimeric guanine nucleotide-binding protein Gq/11 stimulate formation of inositol-1,4,5-trisphosphate (IP3). Activation of these receptors also induces protein tyrosine phosphorylation. Formation of IP3 in response to stimulated receptors that couple to Gq/11 was blocked by protein tyrosine kinase inhibitors. These inhibitors appeared to act before activation of Gq/11. Moreover, stimulation of receptors coupled to Gq/11 induced phosphorylation on a tyrosine residue (Tyr356) of the Galphaq/11 subunit, and this tyrosine phosphorylation event was essential for Gq/11 activation. Tyrosine phosphorylation of Galphaq/11 induced changes in its interaction with receptors. Therefore, tyrosine phosphorylation of Galphaq/11 appears to regulate the activation of Gq/11 protein.

Animals↗

Determination of the amount of native structural bacteriorhodopsin in purple membrane Langmuir-Blodgett films by a spectroscopic surface denaturation quantifying technique.

Purple membrane (PM) shows denaturation when spread over an air/water interface. We established a technique, which we call the spectroscopic surface denaturation quantifying (SSDQ) technique, that uses infrared linear dichroism to determine the amount of native structural bacteriorhodopsin (BR) in PM Langmuir-Blodgett (LB) films. Using the SSDQ technique we found that the conformational change after surface denaturation of BR was the same as that caused by ethanol treatment. By extrapolating the data of the amount of non-denatured BR molecules in PM LB films vs. the area of a single BR molecule on an air/water interface, we also found that the surface area of a single non-denatured BR molecule was 11.5 nm2, which is consistent with that determined by high-resolution electron cryo-microscopy and electron diffraction (EMD). These results demonstrate that the SSDQ technique is effective in quantifying the amount of native structural BR in PM LB films. The SSDQ technique is also applicable to other types of protein consisting of alpha-helical conformation.

Bacteriorhodopsins↗

Long-range interaction between the P2.1 and P9.1 peripheral domains of the Tetrahymena ribozyme.

The Tetrahymena ribozyme possesses peripheral domains, termed P9.1 and P9.2. They are nonessential in the mechanism of the catalytic reaction but contribute to enhance the catalytic activity of the ribozyme. It has been postulated that P9.1 is capable of forming Watson-Crick base pairings with another peripheral domain, P2.1. We report here the existence of long-range base pairings between the loop regions of these two domains and show that this interaction apparently plays a role in enhancing the catalytic activity of the ribozyme.

Animals↗

Crystallization and preliminary X-ray studies of azurin-I and azurin-II from denitrifying bacterium Alcaligenes xylosoxidans GIFU 1051.

Two distinct azurins named azurin-I and azurin-II were isolated from Alcaligenes xylosoxidans GIFU 1051 (AzG-I and AzG-II). They have been purified and crystallized. The crystals of AzG-I belong to the monoclinic crystal system, space group C2, unit-cell parameters a = 130.6, b = 54.4, c = 74.7 A, beta = 96.1 degrees. The crystals of AzG-II belong to the tetragonal crystal system, space group P4(1)22 or P4(3)22, unit-cell parameters a = b = 52.6, c = 100.7 A. Both crystals diffract up to 2.0 A resolution and are suitable for X-ray crystallographic studies.

Journal Article↗

Bcl-2 relieves the trans-repressive function of the glucocorticoid receptor and inhibits the activation of CPP32-like cysteine proteases.

Glucocorticoid induces apoptosis in immature lymphocytes which is inhibitable by Bcl-2. Although glucocorticoid-mediated signal transduction is well understood, the mechanism of the induction of apoptosis by the activated glucocorticoid receptor as well as the inhibition of apoptosis by Bcl-2 remains enigmatic. Here we report that overexpressed Bcl-2 relieves the glucocorticoid receptor-mediated repressive function on the AP-1 activity and completely inhibits the activation of CPP32-like cysteine proteases. In contrast, glucocorticoid receptor-mediated transactivation was not affected by Bcl-2. This suggests that glucocorticoid may induce apoptosis by repressing transactivation by AP-1 which is relieved by Bcl-2. Furthermore, we report evidence that, in contrast with CPP32-like proteases, ICE-like proteases are not involved in this apoptotic pathway.

Apoptosis↗

Calorie restriction reduces the incidence of myeloid leukemia induced by a single whole-body radiation in C3H/He mice.

Dietary restriction, especially caloric restriction, is a major modifier in experimental carcinogenesis and is known to decrease significantly the incidence of neoplasms. Gross and Dreyfuss [Gross, L. & Dreyfuss, Y. (1984) Proc. Natl. Acad. Sci. USA 81, 7596-7598; Gross, L. & Dreyfuss, Y. (1986) Proc. Natl. Acad. Sci. USA 83, 7928-7931] reported that a 36% restriction in caloric intake dramatically decreased the radiation-induced solid tumors and/or leukemias. Their protocol predominantly produced lymphatic neoplasms. It is of interest to observe the effect of caloric restriction on radiation-induced myeloid leukemia, because the disease was observed to have been increased in the survivors of the atomic bombs in Hiroshima and Nagasaki. The spontaneous incidence of myeloid leukemia in C3H/He male mice is 1%, and the incidence increased to 23.3% when 3 Gy of whole-body x-ray irradiation was given. However, the incidence of myeloid leukemia was found to be significantly decreased by caloric restriction; it was reduced to 7.9% and 10.7% when restriction was started before (6 weeks old) and after (10 weeks old) irradiation, respectively. In addition, the onset of the myeloid leukemia in both restricted groups was prolonged to a greater extent as compared with the control diet group. Caloric restriction demonstrated a significant prolongation of the life span in the groups on a restricted diet after having been exposed to irradiation, either before or after dietary restriction, in comparison with mice that were only irradiated.

Aging↗