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Greater loop chloride uptake contributes to blunted pressure natriuresis in Dahl salt sensitive rats.

K A Kirchner
JASN August 1990, 1 (2) 180-186;
K A Kirchner
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Abstract

A blunted pressure natriuretic response is present in Dahl salt sensitive rats. To determine whether this results from tubular or glomerular mechanisms, late proximal, early distal, and late distal micropuncture were performed in salt resistant (R), salt sensitive (S), or salt sensitive rats with renal perfusion reduced to that of R rats (S-AC). Differences in neuro-endocrine background between groups were eliminated by renal denervation and by fixing plasma aldosterone, norepinephrine, and vasopressin levels by infusion. Renal perfusion pressure was greater (P less than 0.05) and inulin clearance less (P less than 0.05) in S than R rats. Urinary sodium excretion, however, was not different. S-AC had renal perfusion pressures that were similar to R rats and inulin clearance similar to S rats. Urinary NaCl excretion was less (P less than 0.05) than either group. Single nephron inulin clearance, fluid, and chloride delivery to late proximal sites were not different between groups. Absolute and fractional chloride delivery to early distal sites was less (P less than 0.05) in S-AC than R or S but not different between R and S. Late distal chloride delivery was not different between any group. Calculated loop chloride reabsorption was greater in S-AC than R or S. Thus, the lower urinary NaCl excretion in S-AC rats is in part due to increased loop chloride reabsorption. This effect is probably intrinsic to the S kidney as it occurs despite renal denervation when plasma levels of vasopressin, norepinephrine, and aldosterone are fixed. The increased loop chloride uptake is abolished when perfusion pressure increases.

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Journal of the American Society of Nephrology
Vol. 1, Issue 2
1 Aug 1990
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Greater loop chloride uptake contributes to blunted pressure natriuresis in Dahl salt sensitive rats.
K A Kirchner
JASN Aug 1990, 1 (2) 180-186;

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Greater loop chloride uptake contributes to blunted pressure natriuresis in Dahl salt sensitive rats.
K A Kirchner
JASN Aug 1990, 1 (2) 180-186;
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Cited By...

  • Deficiency of Renal Cortical EGF Increases ENaC Activity and Contributes to Salt-Sensitive Hypertension
  • Increased Proliferative Cells in the Medullary Thick Ascending Limb of the Loop of Henle in the Dahl Salt-Sensitive Rat
  • Hyperphosphorylation of Na-K-2Cl Cotransporter in Thick Ascending Limbs of Dahl Salt-Sensitive Rats
  • Dynamin2, Clathrin, and Lipid Rafts Mediate Endocytosis of the Apical Na/K/2Cl Cotransporter NKCC2 in Thick Ascending Limbs
  • Angiotensin II Type 2 Receptor-Mediated Inhibition of NaCl Absorption Is Blunted in Thick Ascending Limbs From Dahl Salt-Sensitive Rats
  • A Novel Mechanism Contributing to Development of Dahl Salt-Sensitive Hypertension: Role of the Transient Receptor Potential Vanilloid Type 1
  • Enhancement of Intrarenal Angiotensinogen in Dahl Salt-Sensitive Rats on High Salt Diet
  • Nitric Oxide Induced Inhibition of Transport by Thick Ascending Limbs From Dahl Salt-Sensitive Rats
  • Role of 20-HETE in Elevating Chloride Transport in the Thick Ascending Limb of Dahl SS/Jr Rats
  • Induction of P4504A Activity Improves Pressure-Natriuresis in Dahl S Rats
  • Effects of Lipid-Lowering Agents in the Dahl Salt-Sensitive Rat
  • Inhibition of Renal Outer Medullary 20-HETE Production Produces Hypertension in Lewis Rats
  • Role of 20-HETE in Elevating Loop Chloride Reabsorption in Dahl SS/Jr Rats
  • Cytochrome P4504A Genotype Cosegregates With Hypertension in Dahl S Rats
  • Nitric Oxide Synthase Isoform Activities in Kidney of Dahl Salt-Sensitive Rats
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