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Neuroscience

Neuroscience signaling pathways focus on the communication between neurons in the brain and nervous system. This subcategory within the broader field of signaling pathways examines the intricate mechanisms by which neurons transmit information through electrical and chemical signals. Researchers in this field investigate the complex network of signaling molecules, receptors, and intracellular pathways that regulate various physiological processes in the brain, such as neuronal differentiation, synaptic plasticity, and neurotransmitter release.

Studies in neuroscience signaling pathways have significant implications for understanding the underlying mechanisms of brain function and dysfunction. Dysregulation in these pathways can lead to neurological disorders and conditions, such as Alzheimer’s disease, Parkinson’s disease, and depression. By unraveling the intricacies of these signaling pathways, researchers aim to identify potential targets for therapeutic interventions to treat and manage these disorders.

Overall, neuroscience signaling pathways play a crucial role in advancing our understanding of brain function and in developing new strategies for the diagnosis and treatment of neurological conditions. This subfield provides valuable insights into the molecular mechanisms that govern brain physiology and pathology.

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AF-DX 384, B6697, C27H38N6O2, M2/M4 selective antagonist
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C10H9NO6, B6679, C10H9NO6, mGlu8a agonist
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RJR 2429 dihydrochloride, B6666, C12H16N2·2HCl, nAChR agonist that displays selectivity for α4β2
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(S)-WAY 100135 dihydrochloride, B6659, C24H33N3O2·2HCl, 5-HT1A receptor antagonist,potent and selective
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CY 208-243, B6657, C19H18N2, dopamine D1 receptor agonist
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LY 367385, B6649, C10H11NO4, mGlu1a receptor antagonist
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(RS)-PPG, B6640, C8H10NO5P, group III metabotropic glutamate receptor agonist
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SIB 1893, B6635, C14H13N, mGlu5 antagonist
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SIB 1757, B6636, C12H11N3O, mGlu5 antagonist
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(2R,4R)-APDC, B6634, C6H10N2O4, group II metabotropic glutamate receptor agonist

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