Works matching AU Nishizaki, Tomoyuki
Results: 89
Hippocampal size may contribute to prospective diagnosis of age-related dementia.
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- Psychogeriatrics, 2007, v. 7, n. 2, p. 76, doi. 10.1111/j.1479-8301.2007.00192.x
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- Article
The newly synthesized linoleic acid derivative DCP-LA ameliorates memory deficits in animal models treated with amyloid-β peptide and scopolamine.
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- Psychogeriatrics, 2005, v. 5, n. 4, p. 122, doi. 10.1111/j.1479-8301.2005.00106.x
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- Article
Critical Role of Presynaptic Nicotinic ACh Receptor in the Formation of Long-Term Potentiation: Implications for Development of Anti-Dementia Drugs.
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- Psychogeriatrics, 2001, v. 1, n. 3, p. 209, doi. 10.1111/j.1479-8301.2001.tb00050.x
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Neuronal Ca<sub>2+</sub> Channels and Nicotinic ACh Receptors as Functional Targets of the Nootropic Nefiracetam.
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- Psychogeriatrics, 2001, v. 1, n. 1, p. 39, doi. 10.1111/j.1479-8301.2001.tb00071.x
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- Article
Clinical Significance of Serum Angiopoietin-1 in Malignant Peritoneal Mesothelioma.
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- Cancer Investigation, 2013, v. 31, n. 8, p. 511, doi. 10.3109/07357907.2013.830734
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Newly synthesized anticancer drug HUHS1015 is effective on malignant pleural mesothelioma.
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- Cancer Science, 2014, v. 105, n. 7, p. 883, doi. 10.1111/cas.12429
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- Article
Activation of nicotinic acetylcholine receptors induces long-term potentiation in vivo in the intact mouse dentate gyrus.
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- European Journal of Neuroscience, 2000, v. 12, n. 10, p. 3741, doi. 10.1046/j.1460-9568.2000.00259.x
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- Article
C4.4A highly expressed in HER2-positive human breast cancers may indicate a good prognosis.
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- Breast Cancer (13406868), 2015, v. 22, n. 4, p. 366, doi. 10.1007/s12282-013-0487-x
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Biological characteristics of luminal subtypes in pre- and postmenopausal estrogen receptor-positive and HER2-negative breast cancers.
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- Breast Cancer (13406868), 2014, v. 21, n. 1, p. 52, doi. 10.1007/s12282-012-0348-z
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- Article
A new amyloid β variant favoring oligomerization in Alzheimer's-type dementia.
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- Annals of Neurology, 2008, v. 63, n. 3, p. 377, doi. 10.1002/ana.21321
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- Article
The newly synthesized anticancer drug HUHS1015 is useful for treatment of human gastric cancer.
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- Cancer Chemotherapy & Pharmacology, 2015, v. 75, n. 3, p. 527, doi. 10.1007/s00280-014-2661-z
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- Article
Dioleoylphosphoethanolamine Retains Cell Surface GLUT4 by Inhibiting PKCa-Driven Internalization.
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- Cellular Physiology & Biochemistry (Karger AG), 2018, v. 46, n. 5, p. 1985, doi. 10.1159/000489439
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PKCε Increases Extracellular Elastin and Fibulin-5/DANCE in Dermal Fibroblasts.
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- Cellular Physiology & Biochemistry (Karger AG), 2018, v. 46, n. 1, p. 291, doi. 10.1159/000488430
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DCP-LA Activates Cytosolic PKCε by Interacting with the Phosphatidylserine Binding/Associating Sites Arg50 and Ile89 in the C2-Like Domain.
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- Cellular Physiology & Biochemistry (Karger AG), 2015, v. 37, n. 1, p. 193, doi. 10.1159/000430344
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Phosphatidylinositol Induces Caspase-Independent Apoptosis of Malignant Pleural Mesothelioma Cells by Accumulating AIF in the Nucleus.
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- Cellular Physiology & Biochemistry (Karger AG), 2015, v. 36, n. 3, p. 1037, doi. 10.1159/000430277
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Adenosine Deaminase Inhibitor EHNA Exhibits a Potent Anticancer Effect Against Malignant Pleural Mesothelioma.
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- Cellular Physiology & Biochemistry (Karger AG), 2015, v. 35, n. 1, p. 51, doi. 10.1159/000369674
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Dipalmitoleoylphosphoethanolamine as a PP2A Enhancer Obstructs Insulin Signaling by Promoting Ser/Thr Dephosphorylation of Akt.
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- Cellular Physiology & Biochemistry (Karger AG), 2014, v. 34, n. 3, p. 617, doi. 10.1159/000363027
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PTP1B Inhibition Causes Rac1 Activation by Enhancing Receptor Tyrosine Kinase Signaling.
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- Cellular Physiology & Biochemistry (Karger AG), 2014, v. 33, n. 4, p. 1097, doi. 10.1159/000358679
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DCP-LA-Phosphatidylinositol and Its Enantiomer Exhibit Different Bioactivities.
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- Cellular Physiology & Biochemistry (Karger AG), 2014, v. 33, n. 2, p. 300, doi. 10.1159/000356670
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Stearic Acid Serves as a Potent Inhibitor of Protein Tyrosine Phosphatase 1B.
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- Cellular Physiology & Biochemistry (Karger AG), 2013, v. 32, n. 5, p. 1451, doi. 10.1159/000356582
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Free Fatty Acids Inhibit Protein Tyrosine Phosphatase 1B and Activate Akt.
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- Cellular Physiology & Biochemistry (Karger AG), 2013, v. 32, n. 4, p. 871, doi. 10.1159/000354489
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Crosstalk between PI3 Kinase/PDK1/Akt/Rac1 and Ras/Raf/MEK/ERK Pathways Downstream PDGF Receptor.
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- Cellular Physiology & Biochemistry (Karger AG), 2013, v. 31, n. 6, p. 905, doi. 10.1159/000350108
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Effects of Newly Synthesized DCP-LA-Phospholipids on Protein Kinase C and Protein Phosphatases.
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- Cellular Physiology & Biochemistry (Karger AG), 2013, v. 31, n. 4/5, p. 555, doi. 10.1159/000350076
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A<sub>2a</sub> Adenosine Receptor Mediates PKA-Dependent Glutamate Release from Synaptic-like Vesicles and Ca Efflux from an IP<sub>3</sub>- and Ryanodine-Insensitive Intracellular Calcium Store in Astrocytes.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 6, p. 1398, doi. 10.1159/000343328
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A<sub>3</sub> Adenosine Receptor Mediates Apoptosis in 5637 Human Bladder Cancer Cells by G<sub>q</sub> Protein/PKC-Dependent AIF Upregulation.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 5, p. 1159, doi. 10.1159/000343306
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Indomethacin Serves as a Potential Inhibitor of Protein Phosphatases.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 4, p. 1014, doi. 10.1159/000341478
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Sphingosine Suppresses Mesothelioma Cell Proliferation by Inhibiting PKC-δ and Inducing Cell Cycle Arrest at the G<sub>0</sub>/G<sub>1</sub> Phase.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 4, p. 995, doi. 10.1159/000341476
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Sphingosine Induces Apoptosis in MKN-28 Human Gastric Cancer Cells in an SDK-Dependent Manner.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 4, p. 987, doi. 10.1159/000341475
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Adenosine Induces Apoptosis in SBC-3 Human Lung Cancer Cells through A<sub>3</sub> Adenosine Receptor-Dependent AMID Upregulation.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 3, p. 666, doi. 10.1159/000341447
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Novel Indomethacin Action: Selective and Direct Activation of Protein Kinase C-ε.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 3, p. 771, doi. 10.1159/000341456
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A<sub>3</sub> Adenosine Receptor-Mediated p53-Dependent Apoptosis in Lu-65 Human Lung Cancer Cells.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 1, p. 210, doi. 10.1159/000339058
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Linoleic Acid Derivative DCP-LA Stimulates Vesicular Transport of &agr;7 ACh Receptors Towards Surface Membrane.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 1, p. 75, doi. 10.1159/000339049
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AMP Converted from Intracellularly Transported Adenosine Upregulates p53 Expression to Induce Malignant Pleural Mesothelioma Cell Apoptosis.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 30, n. 1, p. 61, doi. 10.1159/000339048
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Apoptosis-Related Gene Transcription in Human A549 Lung Cancer Cells via A<sub>3</sub> Adenosine Receptor.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 5/6, p. 687, doi. 10.1159/000312589
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Mesothelioma Cell Proliferation through Autocrine Activation of PDGF-ββ Receptor.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 5/6, p. 667, doi. 10.1159/000176386
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AMP Converted from Intracellularly Transported Adenosine Upregulates p53 Expression to Induce Malignant Pleural Mesothelioma Cell Apoptosis.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 5/6, p. 61, doi. 10.1159/000339048
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Linoleic Acid Derivative DCP-LA Stimulates Vesicular Transport of α7 ACh Receptors towards Surface Membrane.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 5/6, p. 75, doi. 10.1159/000339049
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- Article
A<sub>3</sub> Adenosine Receptor-Mediated p53-Dependent Apoptosis in Lu-65 Human Lung Cancer Cells.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 5/6, p. 210, doi. 10.1159/000339058
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- Article
PDGF-D/PDGF-ββ Receptor-Regulated Chemotaxis of Malignant Mesothelioma Cells.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 1/2, p. 241, doi. 10.1159/000337605
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Indomethacin Activates Protein Kinase C and Potentiates α7 ACh Receptor Responses.
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- Cellular Physiology & Biochemistry (Karger AG), 2012, v. 29, n. 1/2, p. 189, doi. 10.1159/000337600
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Adenosine Promotes GATA-2-Regulated p53 Gene Transcription to Induce HepG2 Cell Apoptosis.
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- Cellular Physiology & Biochemistry (Karger AG), 2011, v. 28, n. 4, p. 761, doi. 10.1159/000335770
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α, β-DCP-LA Selectively Activates PKC-ε and Stimulates Neurotransmitter Release with the Highest Potency among 4 Diastereomers.
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- Cellular Physiology & Biochemistry (Karger AG), 2011, v. 27, n. 2, p. 149, doi. 10.1159/000325217
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AMID Mediates Adenosine-Induced Caspase-Independent HuH-7 Cell Apoptosis.
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- Cellular Physiology & Biochemistry (Karger AG), 2011, v. 27, n. 1, p. 37, doi. 10.1159/000325203
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Adenosine Activates AMPK to Phosphorylate Bcl-X<sub>L</sub> Responsible for Mitochondrial Damage and DIABLO Release in HuH-7 Cells.
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- Cellular Physiology & Biochemistry (Karger AG), 2011, v. 27, n. 1, p. 71, doi. 10.1159/000325207
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Higher Concentrations of Extracellular ATP Suppress Proliferation of Caco-2 Human Colonic Cancer Cells via an Unknown Receptor Involving PKC Inhibition.
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- Cellular Physiology & Biochemistry (Karger AG), 2010, v. 26, n. 2, p. 125, doi. 10.1159/000320518
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Auto-Positive Feedback Regulation for Nicotinic Acetylcholine Receptors by Protein Kinase C Activation.
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- Cellular Physiology & Biochemistry (Karger AG), 2010, v. 26, n. 2, p. 247, doi. 10.1159/000320524
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N-Ethylmaleimide Dissociates α7 ACh Receptor from a Complex with NSF and Promotes Its Delivery to the Presynaptic Membrane.
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- Neurochemical Research, 2016, v. 41, n. 8, p. 2043, doi. 10.1007/s11064-016-1915-z
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Acute Restraint Stress Impairs Induction of Long-Term Potentiation by Activating GSK-3β.
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- Neurochemical Research, 2015, v. 40, n. 1, p. 36, doi. 10.1007/s11064-014-1462-4
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Linoleic Acid Derivative DCP-LA Protects Neurons from Oxidative Stress-Induced Apoptosis by Inhibiting Caspase-3/-9 Activation.
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- Neurochemical Research, 2010, v. 35, n. 5, p. 712, doi. 10.1007/s11064-010-0124-4
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Regulation of AMPA Receptor Trafficking by O-Glycosylation.
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- Neurochemical Research, 2010, v. 35, n. 5, p. 782, doi. 10.1007/s11064-010-0135-1
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