PARTICIPATION OF LIVER FUNCTION IN THE ACUTE TOLERANCE TO PENTOBARBITAL INDUCED AFTER SHORT-TERM INFUSION
スポンサーリンク
概要
著者
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Koida Masao
Department Of Parmacology Setsunan University
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Kaneto Hiroshi
Department Of Pharmacology Faculty Of Pharmaceutical Science Nagasaki University
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Tsuchie Fumiyo
Department of Pharmacology, Faculty of Pharmaceutical Sciences, Nagasaki University
関連論文
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- Glucocorticoid-Induced Osteopenia in Rats : Histomorphometrical and Microarchitectural Characterization and Calcitonin Effect
- Histomorphometrical Evaluation of Anti-Osteopenic Effect of Nasal Salmon Calcitonin in a Type 1 Osteoporotic Model of Rats
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- Glucocorticoid-Induced Secondary Osteopenia in Female Rats : A Time Course Study as Compared With Ovariectomy-InducedOsteopenia and Response to Salmon Calcitonin
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- ABUNDANCE AND LOCATION OF 125-I-SALMON CALCITONIN BINDING SITE IN RAT BRAIN
- Role of GABAergic Systems in the Development of Morphine Tolerance in Formalin-Treated Mice
- Effects of Footshock-, Psychological- and Forced Swimming-Stress on the Leaning and Memory Processes: Involvement of Opioidergic Pathways
- INFLUENCES OF MIF AND RELATED PEPTIDES ON THE ACTIONS OF MORPHINE AND PENTOBARBITAL
- Comparative Studies on the Inhibitory Effect of Morphine, Pentobarbital and Ethanol on the Electrically Evoked Contractions of Isolated Mouse Vas Deferens
- A SCORING SYSTEM FOR ABSTINENCE SYNDROME IN MORPHINE DEPENDENT MICE AND APPLICATION TO EVALUATE MORPHINE TYPE DEPENDENCE LIABILITY OF DRUGS
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- THE MORPHINE 3-GLUCURONIDE DIRECTED ANTIBODY: ITS IMMUNOLOGICAL SPECIFICITY AND POSSIBLE USE FOR RADIOIMMUNOASSAY OF MORPHINE IN URINE
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- Comparative studies on morphine- and stress-induced analgesia and the development of tolerance to the effects: Implication of protein synthesis mechanism in the process.
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- Important role of adrenergic function in the development of analgesic tolerance to morphine in mice.
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- Autoradiographic Localization of Human Calcitonin Sensitive Binding Sites in Rat Brain.
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- Development of Tolerance to Morphine Antinociception in Mice Treated with Nociceptive Stimulants.
- Adrenergic function and the development of analgesic tolerance to morphine.
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- Further evidence for the implication of a .KAPPA.-opioid receptor mechanism in the production of psychological stress-induced analgesia.
- Role of adrenal glucocorticoids in the blockade of the development of analgesic tolerance to morphine by footshock stress exposure in mice.
- Involvement of Pain Associated Anxiety in the Development of Morphine Tolerance in Formalin Treated Mice.
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- Blockade of the development of analgesic tolerance to morphine by concurrent treatment with opioid-but not non-opioid-mediated stress in mice.
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- Blockade of the development of analgesic tolerance to morphine by psychological stress through benzodiazepine receptor mediated mechanism.
- Footshock- and Psychological-Stress Prevent the Development of Tolerance to Spinal but Not Supraspinal Morpine.
- Involvement of Serotonergic Receptor Subtypes in the Production of Antinociception by Psychological Stress in Mice.
- Morphine Dependence With or Without Tolerance in Formalin-Treated Mice: Further Evidence for the Dissociation.