Key result
L-NMMA reduced single-nephron glomerular filtration rate and proximal reabsorption in control and sham-operated rats, but these effects were prevented by prior renal denervation.
Why the study?
Does renal denervation alter the effects of nitric oxide synthase inhibition on glomerular filtration and proximal reabsorption in rats?
Does renal denervation alter the effects of nitric oxide synthase inhibition on glomerular filtration and proximal reabsorption in rats?
Renal adrenergic activity is required for the full expression of the glomerular and tubular effects of nitric oxide synthase blockade.
Renal denervation effects in this rat model should not change practice; extends mechanistic insight into sympathetic modulation of nitric oxide actions on glomerular function.
Endothelium-dependent nitric oxide (EDNO) exerts control over the processes of glomerular filtration and tubular reabsorption. The importance of the renal nerves to the tonic influence of EDNO in the glomerular microcirculation and proximal tubule was tested by renal micropuncture in euvolemic adult male Munich-Wistar rats. The physical determinants of glomerular filtration and proximal reabsorption were assessed before and during administration of the nitric oxide synthase inhibitor, NG-monomethyl-L-arginine (L-NMMA), in control animals and in animals 5-9 days after either ipsilateral surgical renal denervation (DNX) or after either sham surgery (SHX). L-NMMA caused single-nephron glomerular filtration rate to decline in control and SHX animals but not in DNX rats. L-NMMA caused a reduction in proximal reabsorption in control and SHX rats, which was prevented by prior DNX. DNX did not alter urinary guanosine 3',5'-cyclic monophosphate excretion, and, although DNX upregulates glomerular angiotensin II (ANG II) receptors, prior DNX did not alter intrarenal ANG II content as evaluated by radioimmunoassay. Some component of renal adrenergic activity is required for the full expression of the glomerular and tubular effects of blockade of nitric oxide synthase.
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Gabbai et al. (1995) studied Healthy (euvolemic adult male Munich-Wistar rats). NG-monomethyl-L-arginine (L-NMMA) and surgical renal denervation (DNX) vs. Control animals and sham surgery (SHX) was evaluated on Single-nephron glomerular filtration rate and proximal reabsorption. L-NMMA reduced single-nephron glomerular filtration rate and proximal reabsorption in control and sham-operated rats, but these effects were prevented by prior renal denervation.
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