11
Views
0
CrossRef citations to date
0
Altmetric
Original Article

Effects of Decrease of Extracellular Sodium in Carbachol-Evoked Catecholamine Secretion in Isolated Adrenal Medullae of Rats

, , , , , & show all
Pages 1-10 | Received 06 Oct 2000, Published online: 07 Jul 2009

References

  • Abad F., Garrido B., López M. G., Garcia A. G. The source of calcium for muscarinic-mediated catecholamine release from cat adrenals. Journal of Physiology 1992; 445: 725–740
  • Burgoyne R. D. Mechanisms of secretion from adrenal chromaffin cells. Biochimica et Biophysica Acta 1984; 779: 201–216
  • Chern Y.-J., Chueh S.-H., Lin Y.-J., Ho C.-M., Kao L.-S. Presence of Na1 /Ca2+ exchange activity and its role in regulation of intracellular calcium concentration in bovine adrenal chromaffin cells. Cell Calcium 1992; 13: 99–106
  • Duarte E. P., Baltazar G., Carvalho A. P. Differential stimulation of noradrenaline release by reversal of the Na1 /Ca2+ exchanger and depolarization in chromaffin cell. European Journal of Neuroscience 1994; 6: 1128–1135
  • Harish O. E., Kao L.-S., Raffaniello R., Wakade A. R., Schneider A. S. Calcium dependence of muscarinic receptor-mediated catecholamine secretion from the perfused rat adrenal medulla. Journal of Neurochemistry 1987; 48: 1730–1735
  • Kaczorowski G. J., Costello L., Dethmers J., Trumble M. J., Vandlen R. L. Mechanisms of Ca2,1 transport in plasma membrane vesicles prepared from cultured pituitary cells. In: Characterization of Na+ /Ca2+ exchange activity. Journal of Biological. Chemistry 1984; 259: 9395–9403
  • Kao L.-S., Cheung N. S. Mechanism of calcium transport across the plasma membrane of bovine chromaffin cells. Journal of Neurochemistry 1990; 54: 1972–1979
  • Kelner K. L., Levine R. A., Morita K., Pollard H. B. A comparison of trihydroxyindole and HPLC/eletrochemical methods for catecholamine measurement in adrenal chromaffin cells. Neurochemistry International 1985; 7: 373–376
  • Liu P.-S., Kao L.-S. Na+ -dependent Ca2,1 influx in bovine adrenal chromaffin cells. Cell Calcium 1990; 11: 573–579
  • Malhotra R. K., Wakade T. D., Wakade A. R. Comparison of secretion of catecholamines from the rat adrenal medulla during continuous exposure to nicotine, muscarine or excess K. Neuroscience 1988; 26: 313–320
  • Misbahuddin M., Oka M. Muscarinic stimulation of guinea pig adrenal chromaffin cells stimulates catecholamine secretion without significant increase in Ca2,1 uptake. Neuroscience Letters 1988; 87: 266–270
  • Nassar-Gentina V., Catalán L., Luxoro M. Nicotinic and muscarinic components in acetylcholine stimulation of porcine adrenal medullary cells. Molecular and Cell Biochemistry 1997; 169: 107–113
  • Saeki T., Shen J.-B., Pappano A. J. Carbachol promotes Na+ entry and augments Na/Ca exchange current in guinea pig myocytes. American Journal of Physiology 1997; 273: H1984–H1993
  • Tokumura A., Okuno M., Fukuzawa K., Houchi H., Tsuchiya K., Oka M. Positive and negative controls by protein kinases of sodium-dependent Ca2,1 efflux from cultured adrenal chromaffin cells stimulated by lysophosphatidic acid. Biochimica et Biophysica Acta 1998; 1389: 67–75
  • Van Eylen F., Lebeau C., Albuquerque-Silva J., Herchuelz A. Contribution of Na/Ca exchange to Ca2+ outflow and entry in the rat pancreatic,β-cell. Studies with antisense oligonucleotides. Diabetes 1998; 47: 1873–1880
  • Wakade A. R., Wakade T. D. Contribution of nicotinic and muscarinic receptors in the secretion of catecholamines evoked by endogenous and exogenous acetylcholine. Neuroscience 1983; 10: 973–978
  • Warashina A., Fujiwara N. Properties of intracellular calcium stores and their role in receptor-mediated catecholamine secretion in rat adrenal chromaffin cells. Biological. Signals 1995; 4: 195–205
  • Yamagami K., Nishimura S., Sorimachi M. Internal Ca2,1 mobilization by muscarinic stimulation increases secretion from adrenal chromaffin cells only in presence of Ca2 influx. Journal of Neurochemistry 1991; 57: 1681–1689
  • Yamaguchi N. Sympathoadrenal system in neuroendocrine control of glucose: mechanisms involved in the liver, pancreas. and adrenal gland under hemorrhagic and hypoglycemic stress. Canadian Journal of Physiology and Pharmacology 1992; 70: 167–206
  • Yamanara K., Kigoshi S., Muramatsu I. Muscarinic receptor subtypes in bovine adrenal medulla. Biochemical. Pharmacology 1986; 35: 3151–3157

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.