Literature DB >> 3001670

Autoradiographic distribution of 125I calcitonin gene-related peptide binding sites in the rat central nervous system.

G Skofitsch, D M Jacobowitz.   

Abstract

Using autoradiographic method and 125I-Tyro rat CGRP as a ligand, receptor binding sites were demonstrated in the rat central nervous system. Saturation studies and Scatchard analysis of CGRP-binding to slide mounted tissue sections containing primarily cerebellum showed a single class of receptors with a dissociation constant of 0.96 nM and a Bmax of 76.4 fmol/mg protein. 125I-Tyro rat CGRP binding sites were demonstrated throughout the rat central nervous system. Dense binding was observed in the telencephalon (medial prefrontal, insular and outer layers of the temporal cortex, nucleus accumbens, fundus striatum, central and inferior lateral amygdaloid nuclei, most caudal caudate putamen, organum vasculosum laminae terminalis, subfornical organ), the diencephalon (anterior hypothalamic, suprachiasmatic, arcuate, paraventricular, dorsomedial, periventricular, reuniens, rhomboid, lateral thalamic pretectalis and habenula nuclei, zona incerta), in the mesencephalon (superficial layers of the superior colliculus, central nucleus of the geniculate body, inferior colliculus, nucleus of the fifth nerve, locus coeruleus, nucleus of the mesencephalic tract, the dorsal tegmental nucleus, superior olive), in the molecular layer of the cerebellum, in the medulla oblongata (inferior olive, nucleus tractus solitarii, nucleus commissuralis, nuclei of the tenth and twelfth nerves, the prepositus hypoglossal and the gracilis nuclei, dorsomedial part of the spinal trigeminal tract), in the dorsal gray matter of the spinal cord (laminae I-VI) and the confines of the central canal. Moderate receptor densities were found in the septal area, the "head" of the anterior caudate nucleus, medial amygdaloid and bed nucleus of the stria terminalis, the pyramidal layers of the hippocampus and dentate gyri, medial preoptic area, ventromedial nucleus, lateral hypothalamic and ventrolateral thalamic area, central gray, reticular part of the substantia nigra, parvocellular reticular nucleus. Purkinje cell layer of the cerebellum, nucleus of the spinal trigeminal tract and gracile fasciculus of the spinal cord. The discrete distribution of CGRP-like binding sites in a variety of sensory systems of the brain and spinal cord as well as in thalamic and hypothalamic areas suggests a widespread involvement of CGRP in a variety of brain functions.

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Year:  1985        PMID: 3001670     DOI: 10.1016/0196-9781(85)90331-6

Source DB:  PubMed          Journal:  Peptides        ISSN: 0196-9781            Impact factor:   3.750


  16 in total

Review 1.  Unmasking the mysteries of the habenula in pain and analgesia.

Authors:  L Shelton; L Becerra; D Borsook
Journal:  Prog Neurobiol       Date:  2012-01-14       Impact factor: 11.685

Review 2.  CGRP as a neuropeptide in migraine: lessons from mice.

Authors:  Andrew F Russo
Journal:  Br J Clin Pharmacol       Date:  2015-07-14       Impact factor: 4.335

Review 3.  Central nervous system binding sites for calcitonin and calcitonin gene-related peptide.

Authors:  P M Sexton
Journal:  Mol Neurobiol       Date:  1991       Impact factor: 5.590

Review 4.  Neural mechanisms of swallowing: neurophysiological and neurochemical studies on brain stem neurons in the solitary tract region.

Authors:  B J Sessle; J L Henry
Journal:  Dysphagia       Date:  1989       Impact factor: 3.438

Review 5.  Calcitonin gene-related peptide in migraine: intersection of peripheral inflammation and central modulation.

Authors:  Ann C Raddant; Andrew F Russo
Journal:  Expert Rev Mol Med       Date:  2011-11-29       Impact factor: 5.600

Review 6.  CGRP and migraine: could PACAP play a role too?

Authors:  Eric A Kaiser; Andrew F Russo
Journal:  Neuropeptides       Date:  2013-10-23       Impact factor: 3.286

7.  Role of central calcitonin gene-related peptide (CGRP) in locomotor and anxiety- and depression-like behaviors in two mouse strains exhibiting a CGRP-dependent difference in thermal pain sensitivity.

Authors:  Ara Schorscher-Petcu; Jean-Sébastien Austin; Jeffrey S Mogil; Rémi Quirion
Journal:  J Mol Neurosci       Date:  2009-04-18       Impact factor: 3.444

8.  Distribution and origin of calcitonin gene-related peptide in the rat stomach and duodenum: an immunocytochemical analysis.

Authors:  Y Lee; Y Shiotani; N Hayashi; T Kamada; C J Hillyard; S I Girgis; I MacIntyre; M Tohyama
Journal:  J Neural Transm       Date:  1987       Impact factor: 3.575

9.  Calcitonin gene-related peptide immunoreactivity in airway epithelial cells of the human fetus and infant.

Authors:  D E Johnson; J D Wobken
Journal:  Cell Tissue Res       Date:  1987-12       Impact factor: 5.249

10.  Effect of CGRP antagonist, alpha-CGRP 8-37, on acid secretion in the dog.

Authors:  D C Lawson; C R Mantyh; T N Pappas
Journal:  Dig Dis Sci       Date:  1994-07       Impact factor: 3.199

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