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Original

Dissociation of vascular and adrenal responsiveness to angiotensin ii following calcium channel blockade

, M.D., , M.D., , M.D., Ph.D. & , M.D.
Pages 127-139 | Published online: 09 May 2012

References

  • Anderson G H, Howland T, Domschek R, Streeten D H.P. Effect of sodium balance and calcium channel-blocking drugs on plasma aldosterone responses to infusion of angiotensin II in normal subjects and patients with essential hypertension. J Clin Endocrinol Metab 1986; 63: 1126–1135
  • Millar J A, McLean K A, Sumner D J, Reid J L. The effect of the calcium antagonist nifedipine on pressor and aldosterone responses to angiotensin II in normal man. Eur J Clin Pharmacol 1983; 24: 315–321
  • Leonetti G, Cuspidi C, Sampieri L, Terzoli L, Zanchetti A. Comparison of cardiovascular, renal, and humoral effects of acute administration of two calcium channel blockers in normotensive and hypertensive subjects. J Cardiovasc Pharmacol 1982; 4: S319–S324
  • Krusell L R, Jespersen L T, Schmitz A, Thomsen K, Pedersen O L. Repetitive natriuresis and blood pressure. Long term calcium entry blockade with isradipine. Hypertension 1987; 10: 577–581
  • Bean B P, Sturek M, Paga A, Hermsmeyer K. Calcium channels in muscle cells isolated from rat mesenteric arteries: modulation by dihydropyridine drugs. Circ Res 1986; 59: 229–235
  • Spedding M, Spedding PR. Classification of calcium channels and the sites of action of drugs modifying channel function. Pharmacol Rev 1992; 44: 363–376
  • Aguilera G, Catt K J. Participation of voltage-dependent calcium channels in regulation of adrenal glomerulosa function by angiotensin II and potassium. Endocrinology 1986; 118: 112–118
  • Kojima I, Kojima K, Rasmussen H. Characteristics of angiotensin II, K+, and ACTH-induced calcium influx in adrenal glomerulosa cells. J Biol Chem 1985; 260: 9171–9176
  • Millar J A, McLean K, Reid J L. Calcium antagonists decrease adrenal and vascular responsiveness to angiotensin II in normal man. Clin Sci 1981; 61: 65S–68S
  • Millar J A, Struthers A D, Beastall G H, Reid J L. Effect of nifedipine on blood pressure and adrenocortical responses to trophic stimuli in humans. J Cardiovasc Pharmacol 1982; 4: S330–S334
  • Nadler J L, Hseuh W, Horton R. Therapeutic effect of calcium channel blockade in primary aldosteronism. J Clin Endocrinol Metab 1985; 60: 896–899
  • Stimpel M, Ivens K, Wambach G, Kaufmann W. Are calcium antagonists helpful in the management of primary aldosteronism?. J Cardiovasc Pharmacol 1988; 12((suppl 6))S131–S134
  • Freed M I, Rastegar A, Bia M J. Effects of calcium channel blockers on potassium homeostasis. Yale J Biol Med 1991; 64: 177–186
  • Emanuel R L, Cain J P, Williams G H. Double antibody radio-immunoassay of renin activity and angiotensin II in human peripheral plasma. J Lab Clin Med 1973; 81: 632–640
  • Braley L M, Adler G K, Mortensen R M, Conlin P R, Chen R, Hallahan J, Menachery A I, Williams G H. Dose effect of ACTH on aldosterone and cortisol biosynthesis in cultured bovine adrenal glomerulosa cells: in vitro correlate of hyperreninemic hypoaldosteronism. Endocrinology 1992; 131: 187–194
  • Schiebinger R J. Dietary intake of sodium chloride in the rat influences [3H]nitrendipine binding to adrenal glomerulosa cell membranes but does not alter binding to vascular smooth muscle membranes. J Clin Invest 1985; 76: 2165–2170
  • Bean B P. Classes of calcium channels in vertebrate cells. Ann Rev Physiol 1989; 51: 367–384
  • Benham C D, Hess P, Tsien R W. Two types of calcium channels in single smooth muscle cells from rabbit ear artery studied with whole cells and single channel recordings. Circ Res 1987; 61: 10–16
  • Cohen C J, McCarthy R T, Barrett P Q, Rasmussen H. Calcium channels in adrenal glomerulosa cells: K+ and angiotensin II increase T-type calcium channel current. Proc Natl Acad Sci U.S.A 1988; 85: 2412–2416
  • Hondeghem L M, Ayad M J, Robertson R M. Verapamil diltiazem and nifedipine block the depolarization-induced potentiation of norepinephrine contractions in rabbit aorta and porcine coronary arteries. J Pharmacol Exp Ther 1986; 239: 808–813
  • Favre L, Riondel A, Valloton M B. Effect of calcium-channel blockade on the aldosterone response to sodium depletion and potassium loading in man. Am J Hypertens 1988; 1: 245–248
  • Sugarman A, Kahn T. Calcium channel blockers enhance extrarenal potassium disposal in the rat. Am J Physiol 1986; 250: F695–F701
  • Sugarman A, Brown R S. The role of aldosterone in potassium tolerance. Studies in anephric humans. Kidney Int 1988; 34: 397–403

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