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August 1, 1993AJP Renal Physiology51 citations

Influence of endothelium-derived relaxing factor on renal microvessels and pressure-dependent vasodilation

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JHJohannes HoffendLudwigshafen University of Business and SocietyACAlessandro CavarapeUniversity of UdineKEKarlhans EndlichUniversitätsmedizin Greifswald

Key Result

Local administration of L-NAME decreased cortical glomerular blood flow by 46% and arcuate artery diameters by 17%, suggesting tonic EDRF formation influences basal renal hemodynamics.

Structured PICO

P
Population
In vivo study of the split hydronephrotic kidney in rats to visualize the influence of EDRF on renal microvessels and autoregulation.
I
Intervention
Local administration of 10(-5) M NG-nitro-L-arginine methyl ester (L-NAME) and L-arginine (10(-3) M)
C
Comparator
Baseline conditions without L-NAME
O
Outcome
Changes in renal microvessel diameters (arcuate arteries, efferent/afferent arterioles) and glomerular blood flow (GBF)surrogate

Tonic formation of endothelium-derived relaxing factor significantly influences basal renal hemodynamics and modulates autoregulation in juxtamedullary glomeruli.

Abstract

The influence of endothelium-derived relaxing factor (EDRF) on renal microvessels and autoregulation was visualized in vivo, in the split hydronephrotic kidney of rats. EDRF synthesis was inhibited by local administration of 10(-5) M NG-nitro-L-arginine methyl ester (L-NAME). Diameters of arcuate arteries decreased by 17%. In cortical vessels efferent arterioles constricted more (13-16%) than interlobular arteries and afferent arterioles (7-12%). Cortical glomerular blood flow (GBF) decreased by 46% after L-NAME. A similar behavior of blood flow and vascular diameters was also observed in juxtamedullary (JM) arterioles. The responses to acetylcholine but not to sodium nitroprusside were attenuated after L-NAME. After local administration of L-arginine (10(-3) M) diameters of all vessels and GBF increased, vascular responses to L-NAME were blunted. Stepwise reduction of renal perfusion pressure revealed that autoregulation was preserved in cortical vessels after L-NAME. In JM arterioles, which do not autoregulate in female Wistar rats, autoregulation of GBF was enhanced after L-NAME. These data suggest that tonic formation of EDRF influences basal renal hemodynamics to a considerable extent. EDRF may also impair autoregulation of JM glomeruli without disturbing autoregulation of cortical glomeruli.

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Cite This Study

Hoffend et al. (1993) studied this question. L-NAME (NG-nitro-L-arginine methyl ester) was evaluated on Vascular diameters and cortical glomerular blood flow (GBF). Local administration of L-NAME decreased cortical glomerular blood flow by 46% and arcuate artery diameters by 17%, suggesting tonic EDRF formation influences basal renal hemodynamics.

synapsesocial.com/papers/6a9405e06ba650b41c6d19b3https://doi.org/10.1152/ajprenal.1993.265.2.f285
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Endothelium modulates renal blood flow but not autoregulation1992 · 107 citations
  2. 2Endothelial derived relaxing factor controls renal hemodynamics in the normal rat kidney.1990 · 292 citations
  3. 3Endothelium-derived relaxing factor regulates renin release in vivo1992 · 90 citations
  4. 4Endothelium-derived relaxing factor in regulation of basal cardiopulmonary and renal function1991 · 66 citations
  5. 5Endothelin and endothelium‐derived relaxing factor control of basal renovascular tone in hydronephrotic rat kidneys.1993 · 24 citations