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February 1, 1983Acta Paediatrica0 citations

Modulation of Renal Tubular Function by Renal Interstitium

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APA. Erik G. Persson

Key Result

High hydrostatic and low oncotic interstitial pressures reduced proximal tubular fluid absorption and tubulo-glomerular feedback sensitivity, whereas low hydrostatic and high oncotic pressures increased them.

Structured PICO

Do renal interstitial pressure conditions modulate proximal tubular fluid absorption and tubulo-glomerular feedback sensitivity in rats?

P
Population
Rat micropuncture experiments
E
Exposure
Alteration of renal interstitial pressure conditions (high hydrostatic/low oncotic pressure vs low hydrostatic/high oncotic pressure)
O
Outcome
Proximal tubular fluid absorption and sensitivity of the tubulo-glomerular feedback controlsurrogate

Renal interstitial pressure-volume conditions modulate renal function in response to extracellular fluid needs and blood pressure levels by altering proximal fluid absorption and tubulo-glomerular feedback sensitivity.

Abstract

Rat micropuncture experiments have been performed to investigate the influence of renal interstitial pressure conditions on proximal tubular fluid absorption and on the tubulo-glomerular feedback mechanism. The feedback mechanism works by sensing the distal tubular fluid flow rate at the macula densa segment and adjusting the tonus of the arterioles with resulting changes in blood flow and glomerular filtration rate. It was found that in situations with high hydrostatic and low oncotic pressure within the interstitium like in saline volume expansion and post-nephrectomy situations, proximal tubular fluid absorption and the sensitivity of the tubulo-glomerular feedback control are reduced giving rise to increased urine production without activating the feedback mechanism. In situations with low hydrostatic and high oncotic interstitial pressures like in dehydration, hypotension and hypovolemia proximal fluid absorption and feedback sensitivity is increased, feedback sensitivity even so much that the mechanism is activated to reduce GFR even though the load to the distal portion of the nephron is reduced below normal. In this way renal interstitial pressure-volume conditions can modulate renal function in response to extracellular fluid needs and blood pressure level.

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Cite This Study

A. Erik G. Persson (1983) studied this question. Renal interstitial pressure conditions was evaluated on Proximal tubular fluid absorption and sensitivity of the tubulo-glomerular feedback control. High hydrostatic and low oncotic interstitial pressures reduced proximal tubular fluid absorption and tubulo-glomerular feedback sensitivity, whereas low hydrostatic and high oncotic pressures increased them.

synapsesocial.com/papers/6a219bbb153b2036cbf1e510https://doi.org/10.1111/j.1651-2227.1983.tb09858.x
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Also Consider

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

  1. 1On central control of body fluid homeostasis1973 · 60 citations
  2. 2Functional Ultrastructure of the Kidney1981 · 146 citations
  3. 3Volume absorption in the pars recta. II. Hydraulic conductivity coefficient1978 · 48 citations
  4. 4Tubulo-glomerular feedback response and excretory characteristics of the transplanted rat kidney.1978 · 19 citations
  5. 5The role of bicarbonate and other buffers on isotonic fluid absorption in the proximal convolution of the rat kidney1971 · 120 citations