Decrease of [3H]5-HT high affinity binding and 5-HT adenylate cyclase activation after kainic acic lesion in rat brain striatum. 1979

G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob

UI MeSH Term Description Entries
D007608 Kainic Acid (2S-(2 alpha,3 beta,4 beta))-2-Carboxy-4-(1-methylethenyl)-3-pyrrolidineacetic acid. Ascaricide obtained from the red alga Digenea simplex. It is a potent excitatory amino acid agonist at some types of excitatory amino acid receptors and has been used to discriminate among receptor types. Like many excitatory amino acid agonists it can cause neurotoxicity and has been used experimentally for that purpose. Digenic Acid,Kainate,Acid, Digenic,Acid, Kainic
D008297 Male Males
D009435 Synaptic Transmission The communication from a NEURON to a target (neuron, muscle, or secretory cell) across a SYNAPSE. In chemical synaptic transmission, the presynaptic neuron releases a NEUROTRANSMITTER that diffuses across the synaptic cleft and binds to specific synaptic receptors, activating them. The activated receptors modulate specific ion channels and/or second-messenger systems in the postsynaptic cell. In electrical synaptic transmission, electrical signals are communicated as an ionic current flow across ELECTRICAL SYNAPSES. Neural Transmission,Neurotransmission,Transmission, Neural,Transmission, Synaptic
D011759 Pyrrolidines Compounds also known as tetrahydropyridines with general molecular formula (CH2)4NH. Tetrahydropyridine,Tetrahydropyridines
D011985 Receptors, Serotonin Cell-surface proteins that bind SEROTONIN and trigger intracellular changes which influence the behavior of cells. Several types of serotonin receptors have been recognized which differ in their pharmacology, molecular biology, and mode of action. 5-HT Receptor,5-HT Receptors,5-Hydroxytryptamine Receptor,5-Hydroxytryptamine Receptors,Receptors, Tryptamine,Serotonin Receptor,Serotonin Receptors,Tryptamine Receptor,Tryptamine Receptors,Receptors, 5-HT,Receptors, 5-Hydroxytryptamine,5 HT Receptor,5 HT Receptors,5 Hydroxytryptamine Receptor,5 Hydroxytryptamine Receptors,Receptor, 5-HT,Receptor, 5-Hydroxytryptamine,Receptor, Serotonin,Receptor, Tryptamine,Receptors, 5 HT,Receptors, 5 Hydroxytryptamine
D003342 Corpus Striatum Striped GRAY MATTER and WHITE MATTER consisting of the NEOSTRIATUM and paleostriatum (GLOBUS PALLIDUS). It is located in front of and lateral to the THALAMUS in each cerebral hemisphere. The gray substance is made up of the CAUDATE NUCLEUS and the lentiform nucleus (the latter consisting of the GLOBUS PALLIDUS and PUTAMEN). The WHITE MATTER is the INTERNAL CAPSULE. Lenticular Nucleus,Lentiform Nucleus,Lentiform Nuclei,Nucleus Lentiformis,Lentiformis, Nucleus,Nuclei, Lentiform,Nucleus, Lenticular,Nucleus, Lentiform,Striatum, Corpus
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D000262 Adenylyl Cyclases Enzymes of the lyase class that catalyze the formation of CYCLIC AMP and pyrophosphate from ATP. Adenyl Cyclase,Adenylate Cyclase,3',5'-cyclic AMP Synthetase,Adenylyl Cyclase,3',5' cyclic AMP Synthetase,AMP Synthetase, 3',5'-cyclic,Cyclase, Adenyl,Cyclase, Adenylate,Cyclase, Adenylyl,Cyclases, Adenylyl,Synthetase, 3',5'-cyclic AMP
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D012701 Serotonin A biochemical messenger and regulator, synthesized from the essential amino acid L-TRYPTOPHAN. In humans it is found primarily in the central nervous system, gastrointestinal tract, and blood platelets. Serotonin mediates several important physiological functions including neurotransmission, gastrointestinal motility, hemostasis, and cardiovascular integrity. Multiple receptor families (RECEPTORS, SEROTONIN) explain the broad physiological actions and distribution of this biochemical mediator. 5-HT,5-Hydroxytryptamine,3-(2-Aminoethyl)-1H-indol-5-ol,Enteramine,Hippophaine,Hydroxytryptamine,5 Hydroxytryptamine

Related Publications

G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
November 1988, Brain research. Developmental brain research,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
January 1981, Journal de physiologie,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
August 1979, Brain research,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
January 1981, Advances in experimental medicine and biology,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
June 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
May 1980, Biochemical pharmacology,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
November 1985, Life sciences,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
October 1979, European journal of pharmacology,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
January 1982, Developmental neuroscience,
G Fillion, and D Beaudoin, and J C Rousselle, and J M Deniau, and M P Fillion, and F Dray, and J Jacob
January 1988, Psychopharmacology,
Copied contents to your clipboard!