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Journal of Neuroscience, ISSN 0270-6474, 09/2004, Volume 24, Issue 35, pp. 7745 - 7753
Norepinephrine (NE) plays a complex role in the behavioral state-dependent regulation of sensory processing. However, the role of forebrain NE action in... 
Forebrain | Song system | Norepinephrine | Auditory | Behavioral state | Arousal | norepinephrine | MALE ZEBRA FINCHES | JAPANESE QUAIL | song system | VOCAL CONTROL | LOCUS COERULEUS NEURONS | CORTICAL NEURONAL RESPONSES | PUTATIVE NEUROTRANSMITTERS | ADRENERGIC-RECEPTORS | NEUROSCIENCES | CEREBRAL-CORTEX | behavioral state | auditory | MOVING VISUAL-STIMULI | forebrain | arousal | Norepinephrine - pharmacology | Receptors, Adrenergic, beta-2 - physiology | Norepinephrine - physiology | Adrenergic Fibers - physiology | Male | Prosencephalon - physiology | Adrenergic alpha-Antagonists - pharmacology | Adrenergic Fibers - drug effects | Receptors, Adrenergic, beta-2 - drug effects | Auditory Perception - physiology | Finches - physiology | Prosencephalon - drug effects | Yohimbine - pharmacology | Dose-Response Relationship, Drug | Idazoxan - pharmacology | Receptors, Adrenergic, alpha-2 - drug effects | Adrenergic beta-Antagonists - pharmacology | Phenylephrine - pharmacology | Clonidine - pharmacology | Vocalization, Animal - drug effects | Receptors, Adrenergic, alpha-2 - physiology | Receptors, Adrenergic, alpha-1 - physiology | Oxathiins - pharmacology | Receptors, Adrenergic, alpha-1 - drug effects | Auditory Perception - drug effects | Adrenergic beta-Agonists - pharmacology | Vocalization, Animal - physiology | Imidazoles - pharmacology | Guanabenz - pharmacology | Arousal - physiology | Animals | Isoproterenol - pharmacology | Adrenergic alpha-Agonists - pharmacology | Propanolamines - pharmacology | Behavioral | Cognitive | Systems
Journal Article
Journal Article
Journal Article
Journal Article
Journal Article
Current Medicinal Chemistry, ISSN 0929-8673, 04/2010, Volume 17, Issue 10, pp. 915 - 928
2,3-dihydrobenzo[b][1,4] oxathiine represents a valuable pharmacophoric heterocyclic nucleus known since very long time. Initially, together with some patents... 
Antimicotic activity | Selective estrogen receptor modulators | Multi-defense antioxidants | Sweeteners | 4-thiaflavanes | 2,3-dihydrobenzo[b][1,4]oxathiines | selective estrogen receptor modulators | antimicotic activity | CHEMISTRY, MEDICINAL | sweeteners | multi-defense antioxidants | DIRECTED BORANE REDUCTION | DIELS-ALDER REACTIONS | DIHYDROBENZOXATHIIN SERAMS | BIOCHEMISTRY & MOLECULAR BIOLOGY | POLYHYDROXYLATED 4-THIAFLAVANS | ESTROGEN-RECEPTOR LIGANDS | FACED ANTIOXIDANT ACTIVITY | SIDE-CHAINS | O-THIOQUINONES | MELATONIN RECEPTORS | PHARMACOLOGY & PHARMACY | 2,3-Dihydrobenzo[b][1,4]oxathiines | ANTIMICROBIAL ACTIVITY | Adrenergic alpha-Antagonists - chemical synthesis | Receptors, Estrogen - metabolism | Antioxidants - chemistry | Oxathiins - pharmacology | Sweetening Agents - chemical synthesis | Sweetening Agents - pharmacology | Anti-Infective Agents - pharmacology | Antineoplastic Agents - chemical synthesis | Herbicides - chemistry | Adrenergic alpha-Antagonists - pharmacology | Herbicides - pharmacology | Antioxidants - chemical synthesis | Antioxidants - pharmacology | Antineoplastic Agents - chemistry | Adrenergic alpha-Antagonists - chemistry | Anti-Infective Agents - chemical synthesis | Sweetening Agents - chemistry | Oxathiins - chemistry | Receptors, Estrogen - chemistry | Heterocyclic Compounds - chemistry | Anti-Infective Agents - chemistry | Herbicides - chemical synthesis | Oxathiins - chemical synthesis | Antineoplastic Agents - pharmacology
Journal Article
Journal Article
Experimental Cell Research, ISSN 0014-4827, 2011, Volume 317, Issue 16, pp. 2239 - 2251
Preliminary data showed that α1-adrenergic antagonists induce apoptosis and a switch towards megakaryocytic differentiation in human erythroleukemia cells. To... 
α1-adrenergic drugs | Erythroleukemia cells | Erythroid progenitor cells | Differentiation | Cell death | Glycophorin - metabolism | Leukemia, Erythroblastic, Acute - metabolism | Leukocyte Common Antigens - metabolism | Gene Expression - drug effects | Apoptosis - drug effects | Erythroid Precursor Cells - drug effects | Gene Expression - genetics | Humans | Caspase 3 - metabolism | Cell Aggregation - drug effects | Adrenergic alpha-Antagonists - pharmacology | Erythroid Cells - cytology | Autophagy - drug effects | Adrenergic alpha-1 Receptor Agonists - pharmacology | Drug Interactions | Prazosin - pharmacology | Hydrogen-Ion Concentration - drug effects | Cell Death - drug effects | Hemin - pharmacology | Megakaryocytes - cytology | Megakaryocyte Progenitor Cells - cytology | Megakaryocyte Progenitor Cells - drug effects | Cell Survival - drug effects | Erythroid Precursor Cells - cytology | Oxathiins - pharmacology | Erythroid Cells - metabolism | Hemoglobins - metabolism | Fetal Blood - cytology | Megakaryocyte Progenitor Cells - metabolism | Necrosis - chemically induced | Cell Differentiation - drug effects | Leukemia, Erythroblastic, Acute - pathology | Receptors, Adrenergic, alpha-1 - genetics | K562 Cells | Cell Line, Tumor | Erythroid Precursor Cells - metabolism | Naphazoline - pharmacology | Adrenergic alpha-Agonists - pharmacology | Cell Proliferation - drug effects
Journal Article
Antimicrobial Agents and Chemotherapy, ISSN 0066-4804, 11/2011, Volume 55, Issue 11, pp. 5243 - 5254
Journal Article
Journal of Neuroendocrinology, ISSN 0953-8194, 11/2005, Volume 17, Issue 11, pp. 761 - 769
Journal Article