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2012, First, Handbook of experimental pharmacology, ISBN 3642232736, Volume 208, xiii, 499
Muscarinic acetylcholine receptors have played a key role in the advancement of knowledge of pharmacology and neurotransmission since the inception of studies... 
Muscarinic receptors | Biology, life sciences | Receptors | Acetylcholine | Molecular pharmacology | Biomedicine | Human Physiology | Pharmacology/Toxicology | Endocrinology | Neurobiology | Cell Biology
Book
Naunyn-Schmiedeberg's Archives of Pharmacology, ISSN 0028-1298, 4/2009, Volume 379, Issue 4, pp. 389 - 395
Journal Article
1989, Receptors., ISBN 089603156X, xviii, 478
Book
Neuroscience, ISSN 0306-4522, 2010, Volume 169, Issue 4, pp. 1610 - 1620
Abstract We have shown that cortical acetylcholine modulates the balance between excitation and inhibition evoked in layer 5 pyramidal neurons of rat visual... 
Neurology | pyramidal neuron | acetylcholine | M1- M2- M3- M4- M5-muscarinic receptors | cortical network | Acetylcholine | Cortical network | Pyramidal neuron | GABAERGIC TRANSMISSION | SYNAPTIC-TRANSMISSION | NEUROSCIENCES | ACETYLCHOLINE-RECEPTOR | CEREBRAL-CORTEX | IN-VITRO | CORTICAL-NEURONS | M1-M2-M3-M4-M5-muscarinic receptors | AUDITORY-CORTEX | CHOLINERGIC MODULATION | POSTNATAL-DEVELOPMENT | HIPPOCAMPAL PYRAMIDAL CELLS | Pyramidal Cells - metabolism | Rats, Wistar | Receptor, Muscarinic M4 - physiology | Receptor, Muscarinic M1 - antagonists & inhibitors | Receptor, Muscarinic M3 - physiology | Receptors, Muscarinic - metabolism | Receptor, Muscarinic M1 - physiology | Excitatory Postsynaptic Potentials - drug effects | Receptor, Muscarinic M2 - physiology | Visual Cortex - physiology | Excitatory Postsynaptic Potentials - physiology | Neural Inhibition - physiology | Muscarinic Antagonists - pharmacology | Pyramidal Cells - physiology | Receptor, Muscarinic M2 - antagonists & inhibitors | Glutamic Acid - secretion | Pyramidal Cells - drug effects | Organ Culture Techniques | Inhibitory Postsynaptic Potentials - physiology | Rats | Receptor, Muscarinic M3 - antagonists & inhibitors | Animals | Glutamic Acid - metabolism | Visual Cortex - drug effects | Neural Inhibition - drug effects | Receptor, Muscarinic M4 - antagonists & inhibitors | Inhibitory Postsynaptic Potentials - drug effects | Receptors, Muscarinic - physiology | Methyl aspartate | Cell research | Neurosciences | Neurons | GABA | Glutamate | Benzodiazepines | Acetylcholine receptors (muscarinic) | Neural Inhibition | Neurons and Cognition | Visual Cortex | Muscarinic Antagonists | Receptor, Muscarinic M1 | Receptor, Muscarinic M2 | Receptor, Muscarinic M3 | Receptor, Muscarinic M4 | Glutamic Acid | Life Sciences | Receptors, Muscarinic | Excitatory Postsynaptic Potentials | Pyramidal Cells | Inhibitory Postsynaptic Potentials
Journal Article
Pharmacology and Therapeutics, ISSN 0163-7258, 2008, Volume 117, Issue 2, pp. 232 - 243
Muscarinic acetylcholine receptors (mAChRs) are widely expressed in the CNS where they control a variety of neuronal functions. Due to their roles in a number... 
Parkinson's disease | mAChR | Schizophrenia | CNS | Drug dependence | Muscarinic receptors | Alzheimer's disease | AFFINITY AGONIST BINDING | ALZHEIMERS-DISEASE | schizophrenia | AMYLOID PRECURSOR PROTEIN | SUBSTANTIA-NIGRA | drug dependence | PEDUNCULOPONTINE TEGMENTAL NUCLEUS | muscarinic receptors | EXPERIMENTAL CHOLINERGIC DENERVATION | M-1 RECEPTOR | A-BETA | PHARMACOLOGY & PHARMACY | HAMSTER OVARY-M1 CELLS | NIGRA PARS COMPACTA | Central Nervous System Agents - therapeutic use | Schizophrenia - metabolism | Antiparkinson Agents - pharmacology | Central Nervous System - metabolism | Muscarinic Agonists - pharmacology | Humans | Muscarinic Agonists - therapeutic use | Receptor, Muscarinic M2 - drug effects | Receptors, Muscarinic - metabolism | Parkinson Disease - drug therapy | Muscarinic Antagonists - therapeutic use | Receptors, Muscarinic - drug effects | Receptor, Muscarinic M1 - drug effects | Muscarinic Antagonists - pharmacology | Parkinson Disease - metabolism | Substance-Related Disorders - metabolism | Receptor, Muscarinic M2 - metabolism | Alzheimer Disease - drug therapy | Receptor, Muscarinic M4 - metabolism | Animals | Receptor, Muscarinic M4 - drug effects | Alzheimer Disease - metabolism | Central Nervous System Agents - pharmacology | Central Nervous System - drug effects | Antipsychotic Agents - pharmacology | Schizophrenia - drug therapy | Substance-Related Disorders - drug therapy | Receptor, Muscarinic M1 - metabolism | Antipsychotic drugs | Antiparkinsonian agents
Journal Article
2016, Neuromethods, ISBN 1493928589, Volume 107.
Web Resource
2016, Neuromethods, ISBN 1493928589, Volume 107.
Web Resource
Neuropharmacology, ISSN 0028-3908, 07/2018, Volume 136, Issue Pt C, pp. 401 - 410
Journal Article
Pflügers Archiv - European Journal of Physiology, ISSN 0031-6768, 1/2012, Volume 463, Issue 1, pp. 89 - 102
Modulation of the standing outward current (I SO) by muscarinic acetylcholine (ACh) receptor (MAChR) stimulation is fundamental for the state-dependent change... 
Sleep/wake activity | Biomedicine | Phospholipid signaling | Human Physiology | K 2P channels | Muscarinic receptor | Thalamic function | channels | SELECTIVE-INHIBITION | PHYSIOLOGY | DOMAIN POTASSIUM CHANNEL | PHOSPHOLIPASE-C | C-DEPENDENT PROCESSES | ALTERNATIVE TRANSLATION INITIATION | TREK-1 | KCNK | NEUROTRANSMITTERS | TASK-1 | K+ CHANNEL | K-2P channels | Oxotremorine - pharmacology | Gene Expression - genetics | Muscarinic Agonists - pharmacology | Lateral Thalamic Nuclei - cytology | Rats, Long-Evans | Receptor, Muscarinic M1 - antagonists & inhibitors | Guanosine Triphosphate - metabolism | Cholinergic Neurons - physiology | Lateral Thalamic Nuclei - physiology | Receptor, Muscarinic M1 - agonists | Phospholipase C beta - antagonists & inhibitors | Muscarinic Antagonists - pharmacology | Oxotremorine - analogs & derivatives | Thalamus - physiology | Sleep - physiology | Action Potentials - drug effects | Guanosine Diphosphate - pharmacology | Membrane Potentials - drug effects | Phospholipase C beta - metabolism | Potassium Channels, Tandem Pore Domain - metabolism | GTP-Binding Protein alpha Subunits, Gq-G11 - genetics | Electrophysiological Phenomena - physiology | Receptor, Muscarinic M3 - metabolism | Potassium Channels, Tandem Pore Domain - genetics | Rats | Cholinergic Neurons - drug effects | Thionucleotides - pharmacology | Membrane Potentials - physiology | Receptor, Muscarinic M3 - genetics | Receptor, Muscarinic M3 - antagonists & inhibitors | Phospholipase C beta - genetics | Action Potentials - physiology | Receptor, Muscarinic M1 - genetics | Patch-Clamp Techniques | Animals | Guanosine Diphosphate - analogs & derivatives | Signal Transduction - drug effects | Potassium Channels, Tandem Pore Domain - antagonists & inhibitors | Muscarine - pharmacology | Thalamus - cytology | Signal Transduction - physiology | Guanosine Triphosphate - antagonists & inhibitors | Receptor, Muscarinic M1 - metabolism | Electrophysiological Phenomena - drug effects | Hydrogen-Ion Concentration | Sleep | Neurons | Acetylcholine | Phospholipids | Phospholipases | G proteins | Membrane proteins | Potassium Channels, Tandem Pore Domain | Neurons and Cognition | Muscarinic Antagonists | Guanosine Diphosphate | Action Potentials | Muscarine | Life Sciences | Phospholipase C beta | Thionucleotides | Thalamus | Guanosine Triphosphate | Pharmaceutical sciences | Gene Expression | Signal Transduction | Cholinergic Neurons | Receptor, Muscarinic M1 | Receptor, Muscarinic M3 | Muscarinic Agonists | Membrane Potentials | GTP-Binding Protein alpha Subunits, Gq-G11 | Electrophysiological Phenomena | Lateral Thalamic Nuclei | Oxotremorine
Journal Article