Search Results - "Kunugi, Akiyoshi"

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    Mislocalization of Nucleocytoplasmic Transport Proteins in Human Huntington's Disease PSC-Derived Striatal Neurons by Lange, Jenny, Wood-Kaczmar, Alison, Ali, Aneesa, Farag, Sahar, Ghosh, Rhia, Parker, Jennifer, Casey, Caroline, Uno, Yumiko, Kunugi, Akiyoshi, Ferretti, Patrizia, Andre, Ralph, Tabrizi, Sarah J

    Published in Frontiers in cellular neuroscience (29-09-2021)
    “…Huntington's disease (HD) is an inherited neurodegenerative disorder caused by a CAG repeat expansion in the huntingtin gene ( ). Disease progression is…”
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    Preclinical characterization of AMPA receptor potentiator TAK‐137 as a therapeutic drug for schizophrenia by Tanaka, Maiko, Kunugi, Akiyoshi, Suzuki, Atsushi, Suzuki, Noriko, Suzuki, Motohisa, Kimura, Haruhide

    Published in Pharmacology research & perspectives (01-06-2019)
    “…The downregulation of the glutamate system may be involved in positive, negative, and cognitive symptoms of schizophrenia. Through enhanced glutamate…”
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    HBT1, a Novel AMPA Receptor Potentiator with Lower Agonistic Effect, Avoided Bell-Shaped Response in In Vitro BDNF Production by Kunugi, Akiyoshi, Tajima, Yasukazu, Kuno, Haruhiko, Sogabe, Satoshi, Kimura, Haruhide

    “…-Amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) receptor (AMPA-R) potentiators with brain-derived neurotrophic factor (BDNF)-induction potential…”
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    Electrophysiological characterization of a novel AMPA receptor potentiator, TAK-137, in rat hippocampal neurons by Suzuki, Atsushi, Tajima, Yasukazu, Kunugi, Akiyoshi, Kimura, Haruhide

    Published in Neuroscience letters (01-11-2019)
    “…•TAK-137 is a potent and selective AMPA receptor potentiator.•TAK-137 and LY451646 have comparable enhancing effects on AMPA-induced currents.•TAK-137 has…”
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    TAK-653, an AMPA receptor potentiator with minimal agonistic activity, produces an antidepressant-like effect with a favorable safety profile in rats by Hara, Hiroe, Suzuki, Atsushi, Kunugi, Akiyoshi, Tajima, Yasukazu, Yamada, Ryuji, Kimura, Haruhide

    Published in Pharmacology, biochemistry and behavior (01-12-2021)
    “…The N-methyl-d-aspartate receptor antagonist, ketamine, exhibits rapid and sustained antidepressant activity in patients with treatment-resistant depression…”
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    TAK-137, an AMPA receptor potentiator with little agonistic effect, produces antidepressant-like effect without causing psychotomimetic effects in rats by Suzuki, Atsushi, Murakami, Koji, Tajima, Yasukazu, Hara, Hiroe, Kunugi, Akiyoshi, Kimura, Haruhide

    Published in Pharmacology, biochemistry and behavior (01-08-2019)
    “…Ketamine produces a rapid-onset antidepressant effect in patients with treatment-resistant depression (TRD), although it concurrently causes undesirable…”
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    Desensitization, surface expression, and glycosylation of a functional, epitope-tagged type I PACAP (PAC1) receptor by Shintani, Norihito, Hashimoto, Hitoshi, Kunugi, Akiyoshi, Koyama, Yutaka, Yamamoto, Kyohei, Tomimoto, Shuhei, Mori, Wakaba, Matsuda, Toshio, Baba, Akemichi

    “…To study desensitization and glycosylation of the type I pituitary adenylate cyclase-activating polypeptide (PACAP) receptor (PAC1R), a hemagglutinin (HA)…”
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    TAK-137, an AMPA-R potentiator with little agonistic effect, has a wide therapeutic window by Kunugi, Akiyoshi, Tanaka, Maiko, Suzuki, Atsushi, Tajima, Yasukazu, Suzuki, Noriko, Suzuki, Motohisa, Nakamura, Shinji, Kuno, Haruhiko, Yokota, Akihiro, Sogabe, Satoshi, Kosugi, Yohei, Awasaki, Yasuyuki, Kaku, Tomohiro, Kimura, Haruhide

    Published in Neuropsychopharmacology (New York, N.Y.) (01-04-2019)
    “…Activation of α-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid receptor (AMPA-R) is a promising strategy to treat psychiatric and neurological diseases if…”
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    The regulatory mechanisms of PACAP expression in neuronal cells by Hashimoto, Hitoshi, Koga, Kazumi, Hagihara, Nami, Shintani, Norihito, Yamamoto, Kyohei, Tomimoto, Shuhei, Kunugi, Akiyoshi, Matsuda, Toshio, Baba, Akemichi

    Published in Japanese Journal of Pharmacology (2000)
    “…Pituitary adenylate cyclase-activating polypeptide (PACAP) gene expression was analyzed in PC12 cells using the luciferase reporter gene systems, RT-PCR, and…”
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