Glomerular and tubular antinatriuretic actions of low-dose angiotensin II infusion in man. 1992

H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
Department of Medicine and Nephrology C, Skejby Hospital, University Hospital, Aarhus, Denmark.

OBJECTIVE The aim was to study the physiological effects of angiotensin II upon the glomerular and tubular handling of sodium. METHODS Healthy volunteers were examined before and during infusion with either low-dose angiotensin II (n = 11) or placebo (n = 13). METHODS Lithium clearance was used to estimate the segmental tubular reabsorption of sodium. RESULTS During infusion with angiotensin II a sustained and marked fall in renal plasma flow was observed. The glomerular filtration rate (GFR) decreased to a minor extent so that the filtration fraction increased during angiotensin II infusion. Angiotensin II caused an extensive and instantaneous fall in both urinary flow and urinary sodium excretion. Proximal absolute reabsorption of sodium was unchanged despite the fall in GFR, showing that proximal fractional reabsorption was enhanced by angiotensin II. Distal absolute reabsorption was decreased during the entire period of angiotensin II infusion. However, when the distal reabsorption was related to the delivery of sodium from the proximal tubules, distal fractional reabsorption in fact increased after 30 min angiotensin II infusion. None of the measured parameters changed during infusion with placebo. A significant increase in plasma aldosterone was observed 30 min after the start of the angiotensin II infusion. Plasma atrial natriuretic peptide did not change during infusion with either angiotensin II or placebo. CONCLUSIONS We conclude that physiological increments in angiotensin II affect glomerular haemodynamics and cause a marked antinatriuresis in man. The antinatriuretic effect of angiotensin II is caused initially by a combination of a decrease in the GFR and an increase in proximal fractional sodium reabsorption, and later by the enhanced distal fractional reabsorption of sodium.

UI MeSH Term Description Entries
D007262 Infusions, Intravenous The long-term (minutes to hours) administration of a fluid into the vein through venipuncture, either by letting the fluid flow by gravity or by pumping it. Drip Infusions,Intravenous Drip,Intravenous Infusions,Drip Infusion,Drip, Intravenous,Infusion, Drip,Infusion, Intravenous,Infusions, Drip,Intravenous Infusion
D007678 Kidney Glomerulus A cluster of convoluted capillaries beginning at each nephric tubule in the kidney and held together by connective tissue. Glomerulus, Kidney
D007684 Kidney Tubules Long convoluted tubules in the nephrons. They collect filtrate from blood passing through the KIDNEY GLOMERULUS and process this filtrate into URINE. Each renal tubule consists of a BOWMAN CAPSULE; PROXIMAL KIDNEY TUBULE; LOOP OF HENLE; DISTAL KIDNEY TUBULE; and KIDNEY COLLECTING DUCT leading to the central cavity of the kidney (KIDNEY PELVIS) that connects to the URETER. Kidney Tubule,Tubule, Kidney,Tubules, Kidney
D008094 Lithium An element in the alkali metals family. It has the atomic symbol Li, atomic number 3, and atomic weight [6.938; 6.997]. Salts of lithium are used in treating BIPOLAR DISORDER. Lithium-7,Lithium 7
D008297 Male Males
D009320 Atrial Natriuretic Factor A potent natriuretic and vasodilatory peptide or mixture of different-sized low molecular weight PEPTIDES derived from a common precursor and secreted mainly by the HEART ATRIUM. All these peptides share a sequence of about 20 AMINO ACIDS. ANF,ANP,Atrial Natriuretic Peptide,Atrial Natriuretic Peptides,Atriopeptins,Auriculin,Natriuretic Peptides, Atrial,ANF (1-126),ANF (1-28),ANF (99-126),ANF Precursors,ANP (1-126),ANP (1-28),ANP Prohormone (99-126),ANP-(99-126),Atrial Natriuretic Factor (1-126),Atrial Natriuretic Factor (1-28),Atrial Natriuretic Factor (99-126),Atrial Natriuretic Factor Precursors,Atrial Natriuretic Factor Prohormone,Atrial Natriuretic Peptide (1-126),Atrial Pronatriodilatin,Atriopeptigen,Atriopeptin (1-28),Atriopeptin (99-126),Atriopeptin 126,Atriopeptin Prohormone (1-126),Cardiodilatin (99-126),Cardiodilatin Precursor,Cardionatrin I,Cardionatrin IV,Prepro-ANP,Prepro-CDD-ANF,Prepro-Cardiodilatin-Atrial Natriuretic Factor,Pro-ANF,ProANF,Proatrial Natriuretic Factor,Pronatriodilatin,alpha ANP,alpha-ANP Dimer,alpha-Atrial Natriuretic Peptide,beta-ANP,beta-Atrial Natriuretic Peptide,gamma ANP (99-126),gamma-Atrial Natriuretic Peptide,Natriuretic Peptide, Atrial,Peptide, Atrial Natriuretic,Peptides, Atrial Natriuretic,Prepro ANP,Prepro CDD ANF,Prepro Cardiodilatin Atrial Natriuretic Factor,Pro ANF,alpha ANP Dimer,alpha Atrial Natriuretic Peptide,beta ANP,beta Atrial Natriuretic Peptide,gamma Atrial Natriuretic Peptide
D012016 Reference Values The range or frequency distribution of a measurement in a population (of organisms, organs or things) that has not been selected for the presence of disease or abnormality. Normal Range,Normal Values,Reference Ranges,Normal Ranges,Normal Value,Range, Normal,Range, Reference,Ranges, Normal,Ranges, Reference,Reference Range,Reference Value,Value, Normal,Value, Reference,Values, Normal,Values, Reference
D012079 Renal Circulation The circulation of the BLOOD through the vessels of the KIDNEY. Kidney Circulation,Renal Blood Flow,Circulation, Kidney,Circulation, Renal,Blood Flow, Renal,Flow, Renal Blood
D005260 Female Females
D005919 Glomerular Filtration Rate The volume of water filtered out of plasma through glomerular capillary walls into Bowman's capsules per unit of time. It is considered to be equivalent to INULIN clearance. Filtration Rate, Glomerular,Filtration Rates, Glomerular,Glomerular Filtration Rates,Rate, Glomerular Filtration,Rates, Glomerular Filtration

Related Publications

H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
July 1987, American journal of kidney diseases : the official journal of the National Kidney Foundation,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
May 1984, The American journal of medicine,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
November 1992, Journal of hypertension,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
May 2003, Clinical and experimental hypertension (New York, N.Y. : 1993),
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
December 1969, Bollettino della Societa italiana di biologia sperimentale,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
June 1975, Circulation research,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
February 1979, The Journal of physiology,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
June 1989, Clinical science (London, England : 1979),
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
March 1986, Biochimica et biophysica acta,
H Eiskjaer, and S S Sørensen, and H Danielsen, and E B Pedersen
May 1987, Kidney international. Supplement,
Copied contents to your clipboard!