Sleep deprivation induces excess diuresis and natriuresis in healthy children

B Mahler1, K Kamperis, M Schroeder

  • 1Institute of Clinical Medicine, Aarhus Univ. Hospital, Skejby, Aarhus N, Denmark. mahler@ki.au.dk

Insights

Sleep deprivation significantly increases urine production in children, leading to more nighttime urination. This occurs due to hormonal changes and increased blood pressure during sleep deprivation.

Area of Science:

  • Pediatrics
  • Nephrology
  • Sleep Medicine

Background:

  • Nocturnal urine production is typically reduced to facilitate undisturbed sleep.
  • The impact of sleep deprivation on urine production in children, particularly concerning gender and enuresis-prone ages, requires further investigation.

Purpose of the Study:

  • To investigate the effect of sleep deprivation on urine production in healthy children.
  • To analyze gender-specific differences and hormonal changes associated with sleep deprivation and urine output.

Main Methods:

  • Twenty healthy children (10 girls) participated in two 24-hour studies, one with normal sleep and one with sleep deprivation.
  • Standardized diet and fluid intake, fractional urine collection, and monitoring of blood pressure and heart rate were employed.
  • Plasma levels of antidiuretic hormone (AVP), atrial natriuretic peptide (ANP), angiotensin II, aldosterone, and renin were measured, along with urinary aquaporin-2 and PGE(2).

Main Results:

  • Sleep deprivation resulted in significantly increased urine production (477 ± 145 ml vs. 291 ± 86 ml) in both boys and girls.
  • Urinary sodium excretion increased during sleep deprivation, while solute-free water reabsorption remained unchanged.
  • Nighttime sleep deprivation led to decreased plasma AVP, renin, angiotensin II, and aldosterone, alongside elevated blood pressure and heart rate.

Conclusions:

  • Sleep deprivation causes increased diuresis and natriuresis in healthy children.
  • Reduced nighttime blood pressure dip and suppressed renin-angiotensin-aldosterone system activity may underlie these effects during sleep deprivation.

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