4
Views
3
CrossRef citations to date
0
Altmetric
Research Article

Two Classes of [3H]Spiperone Binding Sites in Bovine Neurohypophysis: D-2 Receptors and Putative 5-Ht2 Receptors

&
Pages 297-312 | Published online: 26 Sep 2008

References

  • Morris J. F., Nordmann J. J., Dyball R. E. Structure‐ function correlation in mammalian neurosecretion. Int. Rev. Exp. Pathol. 1978; 18: 2–95
  • Bjorklund A., Moore R. Y., Nobin A., Stenevi U. The organization of tubero‐hypophyseal and reticulo‐infundibular catecholamine neuron systems in the rat brain. Brain Res. 1973; 51: 171–191
  • Pelletier G. Identification of endings containing dopamine and vasopressin in the rat posterior pituitary by a combination of radioautography and immunocytochemistry at the ultrastructural level. J. Histochem. Cytochem. 1983; 31: 562–564
  • Saland L. C., Wallace J. A., Comunas F. Serotonin‐immunoreactive nerve fibers of the rat pituitary: effects of anticatecholamine and antiserotonin drugs on staining patterns. Brain Res. 1986; 368: 310–318
  • Holzbauer M., Sharman D. F., Godden U., Mann S. P., Stephens D. B. Effect of water and salt intake on pituitary catecholamines in the rat and domestic pig. Neuroscience 1980; 5: 1959–1968
  • Saavedra J., Palkovits M., Kizer J. S., Brownstein M., Zivin J. A. Distribution of biogenic amines and related enzymes in the rat pituitary gland. J. Neurochem. 1975; 25: 257–260
  • Treiman M., Greengard P. D‐1 and D‐2 dopaminergic receptors regulate protein phosphorylation in the rat neurohypophysis. Neuroscience 1985; 15: 713–722
  • Holzbauer M., Racke K. The dopaminergic innervation of the intermediate lobe and of the neural lobe of the pituitary gland. Medical Biol. 1985; 63: 97–116
  • Holzbauer M., Sharman D. F., Cohen G., Cooper T. R. Pituitary 5–hydroxytryptamine nerves ‐ a possible link with pituitary hormone secretion. J. Neural Trans. 1985; 63: 53–71
  • Cronin M. J., Weiner R. I. [3H]spiroperidol (spiperone) binding to a putative dopamine receptor in sheep and steer pituitary and stalk median eminence. Endocrinology 1979; 104: 307–312
  • Stefanini E., Devoto P., Marchisio A. M., Vernaleone F., Collu R. [3H]spiroperidol binding to a putative dopaminergic receptor in rat pituitary gland. Life Sci. 1980; 26: 583–587
  • Leysen J. E., Niemegeers C. J. E., Tollenaere J. P., Laduron P. M. Serotonergic component of neuroleptic receptors. Nature 1978; 272: 168–171
  • Creese I., Snyder S. H. [3H]spiroperidol labels serotonin receptors in rat cerebral cortex and hippocampus. Eur. J. Pharmacol. 1978; 49: 201–202
  • Withy R. M., Mayer R. J., Strange P. G. [3H]spiroperidol binding to brain neurotransmitter receptors. FEBS Lett. 1980; 112: 293–295
  • Withy R. M., Mayer R. J., Strange P. M. Use of [3H]spiperone for labelling dopaminergic and serotonergic receptors in bovine caudate nucleus. J. Neurochem. 1981; 37: 1144–1154
  • Hamblin M. W., Leff S. E., Creese I. Interactions of agonists with D‐2 dopamine receptors: evidence for a single receptor population existing in multiple agonist affinity‐states in rat striatal membranes. Biochem. Pharmacol. 1984; 33: 877–887
  • Feldman H. A. Mathematical theory of complex ligand‐binding systems at equilibrium: Some methods of parameter fitting. Anal. Biochem. 1972; 48: 317–338
  • Leysen J. E., Niemegeers J. E., Van Neuten J. M., Laduron P. M. [3H]ketanserin (R41 486), a selective [3H]ligand for serotonin2 receptor binding sites. Mol. Pharmacol. 1982; 21: 301–314
  • Leff S. E., Chen A., Creese I. Sulpiride isomers exhibit reversed stereospecificity for D‐1 and D‐2 dopamine receptors in the CNS. Neuropharmacology 1984; 23: 589–590
  • Hall H., Wedel I. Comparisons between the in vitro binding of two substituted benzamides and two butyrophenones to dopamine‐D2 receptors in the rat striatum. Acta pharmacol. toxicol. 1986; 58: 368–373
  • Andersen P. H., Grønvald F. C., Jansen J. A. A comparison between dopamine‐stimulated adenylate cyclase and [3H]SCH23390 binding in rat striatum. Life Sci. 1985; 37: 1971–1983
  • Seeman P. Brain dopamine receptors. Pharm. Rev. 1981; 32: 229–313
  • Grigoriadis D., Seeman P. Complete conversion of brain D2 dopamine receptors from the high‐ to low‐affinity state for dopamine agonists, using sodium ions and guanine nucleotide. J. Neurochem. 1985; 44: 1925–1935
  • Seeman P., Grigoriadis D. Dopamine receptors in brain and periphery. Neurochem. Int. 1987; 10: 1–25
  • George S. R., Watanabe M., Di Paolo T., Falardeau P., Labrie F., Seeman P. The functional state of the dopamine receptor in the anterior pituitary is in the high affinity form. Endocrinology 1985; 117: 690–697
  • Sibley D. R., Creese I. Dopamine receptor binding in bovine intermediate lobe pituitary membranes. Endocrinology 1980; 107: 1405–1409
  • Lightman S. L., Ninkovic M., Hunt S. P. Localization of [3H]spiperone binding sites in the intermediate lobe of the rat pituitary gland. Neurosci. Lett. 1982; 32: 99–102

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.