Search Results - "KIDACHI, Yumi"

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  1. 1

    6-(methylsulfinyl)hexyl isothiocyanate (6-MITC) from Wasabia japonica alleviates inflammatory bowel disease (IBD) by potential inhibition of glycogen synthase kinase 3 beta (GSK-3β) by Lohning, Anna, Kidachi, Yumi, Kamiie, Katsuyoshi, Sasaki, Kazuo, Ryoyama, Kazuo, Yamaguchi, Hideaki

    Published in European journal of medicinal chemistry (15-04-2021)
    “…Inflammatory bowel disease (IBD) describes a set of disorders involving alterations to gastrointestinal physiology and mucosal immunity. Unravelling its…”
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  2. 2

    Larval mesenchyme cell specification in the primitive echinoid occurs independently of the double-negative gate by Yamazaki, Atsuko, Kidachi, Yumi, Yamaguchi, Masaaki, Minokawa, Takuya

    Published in Development (Cambridge) (01-07-2014)
    “…Echinoids (sea urchins) are divided into two major groups - cidaroids (a 'primitive' group) and euechinoids (a 'derived' group). The cidaroids are a promising…”
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  3. 3

    Novel effects of glycyrrhetinic acid on the central nervous system tumorigenic progenitor cells: Induction of actin disruption and tumor cell-selective toxicity by Yamaguchi, Hideaki, Noshita, Toshiro, Yu, Tao, Kidachi, Yumi, Kamiie, Katsuyoshi, Umetsu, Hironori, Ryoyama, Kazuo

    Published in European journal of medicinal chemistry (01-07-2010)
    “…Licorice extracts are used worldwide in foods and medicines, and glycyrrhetinic acid (GA) is a licorice component that has been reported to induce various…”
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  4. 4

    “Micromere” formation and expression of endomesoderm regulatory genes during embryogenesis of the primitive echinoid Prionocidaris baculosa by Yamazaki, Atsuko, Kidachi, Yumi, Minokawa, Takuya

    Published in Development, growth & differentiation (01-06-2012)
    “…Blastomere composition and expression profiles of wnt8 and hox11/13b orthologues were examined in the primitive indirect‐developing echinoid Prionocidaris…”
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  5. 5

    Glycyrrhetinic Acid Induces Anoikis-Like Death and Cytoskeletal Disruption in the Central Nervous System Tumorigenic Cells by Yamaguchi, Hideaki, Kidachi, Yumi, Kamiie, Katsuyoshi, Noshita, Toshiro, Umetsu, Hironori, Ryoyama, Kazuo

    “…We analyzed the effects of glycyrrhetinic acid (GA), a licorice compound, on the induction of anoikis-like death and cytoskeletal disruption in the central…”
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  6. 6

    New cytotoxic phenolic derivatives from matured fruits of Magnolia denudata by Noshita, T.(Aomori Univ. (Japan)), Kiyota, H, Kidachi, Y, Ryoyama, K, Funayama, S, Hanada, K, Murayama, T

    “…Magnolia species are widely cultivated in Japan as garden plants, and have been found to contain various compounds, including alkaloids, terpenoids, lignans,…”
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  7. 7

    Isolation of Ursolic Acid from Apple Peels and Its Specific Efficacy as a Potent Antitumor Agent by Yamaguchi, Hideaki, Noshita, Toshiro, Kidachi, Yumi, Umetsu, Hironori, Hayashi, Masahiko, Komiyama, Kanki, Funayama, Shinji, Ryoyama, Kazuo

    Published in Journal of Health Science (2008)
    “…Dried apple peels were extracted with n-hexane, chloroform, and methanol successively. The portion of the chloroform extract that showed the strongest…”
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  8. 8

    Anti-Tumor Activity of an Enzymatically Synthesized α-1,6 Branched α-1,4-Glucan, Glycogen by RYOYAMA, Kazuo, KIDACHI, Yumi, YAMAGUCHI, Hideaki, KAJIURA, Hideki, TAKATA, Hiroki

    “…Oral administration of an enzymatically synthesized α-1,4:1,6-glycogen (ESG) at a dose of 50 μg/ml significantly prolonged the survival time of Meth A…”
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  9. 9

    Differentiation of Serum-Free Mouse Embryo Cells into an Astrocytic Lineage is Associated with the Asymmetric Production of Early Neural, Neuronal and Glial Markers by Yamaguchi, Hideaki, Kidachi, Yumi, Umetsu, Hironori, Ryoyama, Kazuo

    Published in Biological & pharmaceutical bulletin (01-05-2008)
    “…Serum-free mouse embryo (SFME) cells, the astrocyte progenitor cells in the central nervous system (CNS), were exposed to 10 ng/ml leukemia inhibitory factor…”
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  10. 10

    Low-level bisphenol A increases production of glial fibrillary acidic protein in differentiating astrocyte progenitor cells through excessive STAT3 and Smad1 activation by Yamaguchi, Hideaki, Zhu, Jun, Yu, Tao, Sasaki, Kazuo, Umetsu, Hironori, Kidachi, Yumi, Ryoyama, Kazuo

    Published in Toxicology (Amsterdam) (21-09-2006)
    “…The effects of bisphenol A (BPA) on the differentiation of serum-free mouse embryo (SFME) cells, the astrocyte progenitor cells in the central nervous system,…”
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  11. 11

    Machilin G and four neolignans from young fruits of Magnolia denudata show various degrees of inhibitory activity on nitric oxide (NO) production by Noshita, T.(Aomori Univ. (Japan)), Funayama, S, Hirakawa, T, Kidachi, Y, Ryoyama, K

    “…Denudatin A and B, denudadione B, fargesone A and machilin G were isolated from Magnolia denudata. These compounds showed inhibitory effects on nitric oxide…”
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  12. 12

    The augmenting activity of 6-(Methylsulfinyl)hexyl isothiocyanate on cellular glutathione levels is less sensitive to thiol compounds than its cytotoxic activity by Kidachi, Y.(Aomori Univ. (Japan)), Noshita, T, Yamaguchi, H, Umetsu, H, Fuke, Y, Ryoyama, K

    “…We analyzed the effects of thiol compounds on the biological activities of 6-(methylsulfinyl)hexyl isothiocyanate (6-MITC). Thiol compounds abolished the…”
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    Mouse 11β-Hydroxysteroid Dehydrogenase Type 2 for Human Application: Homology Modeling, Structural Analysis and Ligand-Receptor Interaction by Yamaguchi, Hideaki, Akitaya, Tatsuo, Kidachi, Yumi, Kamiie, Katsuyoshi, Noshita, Toshiro, Umetsu, Hironori, Ryoyama, Kazuo

    Published in Cancer informatics (01-01-2011)
    “…Mouse (m) 11β-hydroxysteroid dehydrogenase type 2 (11βHSD2) was homology-modeled, and its structure and ligand-receptor interaction were analyzed. The modeled…”
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  15. 15

    Differentiation of Serum-Free Mouse Embryo Cells into an Astrocytic Lineage is Associated with the Asymmetric Production of Early Neural, Neuronal and Glial Markers by Hideaki YAMAGUCHIa, Yumi KIDACHIa, Hironori UMETSUb, Kazuo RYOYAMAa

    “…Serum-free mouse embryo (SFME) cells, the astrocyte progenitor cells in the central nervous system (CNS), were exposed to 10ng/ml leukemia inhibitory factor…”
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    Utilization of 6-(methylsulfinyl)hexyl isothiocyanate for sensitization of tumor cells to antitumor agents in combination therapies by Yamaguchi, Hideaki, Kidachi, Yumi, Kamiie, Katsuyoshi, Noshita, Toshiro, Umetsu, Hironori, Fuke, Yoko, Ryoyama, Kazuo

    Published in Biochemical pharmacology (15-08-2013)
    “…In the present study, we performed in silico and in vitro analyses to evaluate the chemosensitizing effects of 6-(methylsulfinyl)hexyl isothiocyanate (6-MITC)…”
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    Selective cytotoxicity of glycyrrhetinic acid against tumorigenic r/m HM-SFME-1 cells: Potential involvement of H-Ras downregulation by Yu, Tao, Yamaguchi, Hideaki, Noshita, Toshiro, Kidachi, Yumi, Umetsu, Hironori, Ryoyama, Kazuo

    Published in Toxicology letters (15-02-2010)
    “…With the intensive need for the development of more effective and safer agents for chemoprevention and therapy of human cancer, natural products from plants…”
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  20. 20

    Anti-nitric oxide production activity of isothiocyanates correlates with their polar surface area rather than their lipophilicity by Noshita, Toshiro, Kidachi, Yumi, Funayama, Hirokazu, Kiyota, Hiromasa, Yamaguchi, Hideaki, Ryoyama, Kazuo

    Published in European journal of medicinal chemistry (01-12-2009)
    “…There is increasing demand for novel anti-inflammatory drugs with different mechanisms of action. We synthesized a series of isothiocyanates 2b– h based on…”
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