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2006, 1. Aufl., The receptors, ISBN 9781588295682, xvii, 618
A comprehensive, state-of-the-art review of our current understanding of the molecular and structural biology of 5-HT receptors and their potential use for... 
Receptors | Serotonin | Physiological effect | Serotoninergic mechanisms | Other branches of medicine | Pharmacy
Book
2008, Handbook of experimental pharmacology, ISBN 3540748059, Volume 184, xiv, 582
It has been known for half a century that neurotransmitters are released in preformed quanta, that the quanta represent transmitter-storing vesicles, and that... 
Neurotransmitter Agents | Neurotransmitters | secretion | Receptors, Neurotransmitter | Exocytosis | Neurotransmitter receptors | Synaptic Transmission | Toxicology | Neurology | Neurosciences | Biomedicine | Human Physiology | Pharmacology/Toxicology
Book
Pharmacological Reviews, ISSN 0031-6997, 2012, Volume 64, Issue 3, pp. 389 - 420
Journal Article
Journal Article
Neuron, ISSN 0896-6273, 2010, Volume 68, Issue 1, pp. 113 - 126
Endocannabinoids and their receptor CB1 play key roles in brain function. Astrocytes express CB1Rs that are activated by endocannabinoids released by neurons.... 
ENDOGENOUS CANNABINOIDS | ACTIVATION | CA1 PYRAMIDAL CELLS | EXCITATORY SYNAPSES | NEURONS | LONG-TERM POTENTIATION | GLIAL-CELLS | NEUROSCIENCES | MODULATION | HIPPOCAMPAL SYNAPSES | PLASTICITY | Cannabinoid Receptor Modulators - metabolism | Cannabinoid Receptor Modulators - pharmacology | Glycine - analogs & derivatives | Synaptic Transmission - physiology | Synaptic Transmission - genetics | Calcium - metabolism | Excitatory Postsynaptic Potentials - drug effects | Patch-Clamp Techniques - methods | Resorcinols - pharmacology | Drug Interactions | Photolysis | Piperidines - pharmacology | Pyramidal Cells - physiology | Egtazic Acid - analogs & derivatives | Synaptic Transmission - drug effects | Pyramidal Cells - drug effects | Electric Stimulation - methods | Endocannabinoids | Excitatory Postsynaptic Potentials - genetics | Pyrazoles - pharmacology | Animals, Newborn | Mice, Inbred C57BL | Enzyme Inhibitors - pharmacology | Excitatory Amino Acid Antagonists - pharmacology | Biophysics | Chelating Agents - pharmacology | Hippocampus - cytology | Mice, Knockout | Astrocytes - physiology | Animals | Egtazic Acid - pharmacology | Glycine - pharmacology | Cannabinoid Receptor Modulators - antagonists & inhibitors | Benzoates - pharmacology | Thapsigargin - pharmacology | Mice | Pyridines - pharmacology | Receptor, Cannabinoid, CB1 - deficiency | In Vitro Techniques | Glutamate | Neurons | Studies | Retina | Transmitters | Potentiation | Brain | Neurotransmitter release | Astrocytes | Glutamic acid receptors | Cannabinoid CB1 receptors | synaptic depression | Calcium signalling | Pyramidal cells | Synaptic transmission | Endogenous stimuli | Receptor mechanisms | Glutamic acid receptors (metabotropic) | Hippocampus | Neurotransmission
Journal Article
Nature, ISSN 0028-0836, 04/2016, Volume 532, Issue 7599, pp. 334 - 339
The serotonin transporter (SERT) terminates serotonergic signalling through the sodium-and chloride-dependent reuptake of neurotransmitter into presynaptic... 
HIGH-AFFINITY RECOGNITION | NEUROTRANSMITTER TRANSPORTERS | NOREPINEPHRINE TRANSPORTERS | N-LINKED GLYCOSYLATION | ALLOSTERIC BINDING | BACTERIAL HOMOLOG | MULTIDISCIPLINARY SCIENCES | BINDING-SITE | SELECTIVE RECOGNITION | MEMBRANE-PROTEINS | DOPAMINE TRANSPORTER | Citalopram - pharmacology | Humans | Protein Conformation - drug effects | Crystallography, X-Ray | Dopamine Plasma Membrane Transport Proteins - chemistry | Structure-Activity Relationship | Antidepressive Agents - metabolism | Citalopram - metabolism | Serotonin Plasma Membrane Transport Proteins - chemistry | Extracellular Space - metabolism | Antidepressive Agents - chemistry | Protein Binding - drug effects | Drug Design | Antidepressive Agents - pharmacology | Protein Stability | Allosteric Regulation - drug effects | Ions - chemistry | Serotonin Plasma Membrane Transport Proteins - immunology | Allosteric Site - drug effects | Models, Molecular | Ions - metabolism | Paroxetine - metabolism | Serotonin Plasma Membrane Transport Proteins - metabolism | Citalopram - chemistry | Intracellular Space - metabolism | Serotonin - metabolism | Ligands | Immunoglobulin Fab Fragments - immunology | Paroxetine - pharmacology | Paroxetine - chemistry | Drug metabolism | Paroxetine | Physiological research | Research | Serotonin | Binding sites (Biochemistry) | X rays | Mutation | Antidepressants | Binding sites
Journal Article
1997, Lung biology in health and disease, ISBN 9780824794965, Volume 106, xvi, 443
Book
Journal of Medicinal Chemistry, ISSN 0022-2623, 02/2008, Volume 51, Issue 3, pp. 347 - 372
Journal Article
Pharmaceutical Biology, ISSN 1388-0209, 8/2012, Volume 50, Issue 8, pp. 1053 - 1061
Context: Sinomenium acutum (Thumb.) Rehd. et Wils. (Menispermaceae, SA) has been used as a traditional Chinese medicine in the treatment of various diseases... 
Sinomenine | immune system | cardiovascular system | nervous system | adaptogen | Cardiovascular system | Nervous system | Adaptogen | Immune system | ABILITY IN-VITRO | MORPHINANE ALKALOIDS | ACTIVATION | SPINAL-CORD | PAEONIFLORIN | RAT MODEL | PLANT SCIENCES | TISSUE DISTRIBUTION | PHARMACOLOGY & PHARMACY | MEDICAL LABORATORY TECHNOLOGY | NF-KAPPA-B | CELL | EXPRESSION | Humans | Drugs, Chinese Herbal - pharmacology | Anti-Inflammatory Agents - adverse effects | Neurotransmitter Agents - pharmacology | Alkaloids - analysis | Anti-Inflammatory Agents - therapeutic use | Antirheumatic Agents - adverse effects | Antirheumatic Agents - pharmacology | Drugs, Chinese Herbal - therapeutic use | Morphinans - adverse effects | Morphinans - pharmacology | Drugs, Chinese Herbal - adverse effects | Antirheumatic Agents - therapeutic use | Morphinans - therapeutic use | Sinomenium - chemistry | Anti-Inflammatory Agents - pharmacology | Morphinans - analysis | Cardiovascular Agents - pharmacology | Cardiovascular Agents - therapeutic use | Ethnopharmacology | Neurotransmitter Agents - chemistry | Animals | Anti-Inflammatory Agents - chemistry | Neurotransmitter Agents - therapeutic use | Drugs, Chinese Herbal - chemistry | Neurotransmitter Agents - adverse effects | Antirheumatic Agents - chemistry | Cardiovascular Agents - adverse effects | Cardiovascular Agents - chemistry
Journal Article
Psychopharmacology, ISSN 0033-3158, 12/2008, Volume 201, Issue 3, pp. 435 - 442
Journal Article