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Suppressed urinary excretion of aquaporin-2 in an infant with primary polydipsia

T Matsumoto1, M Takeya, S Takuwa

  • 1Department of Pediatrics and Child Health, Kurume University, School of Medicine, Fukuoka, Japan.

Insights

Severe overhydration in a child with primary polydipsia was linked to reduced antidiuretic hormone (ADH) secretion. The water channel protein (aquaporin-2) remained functional, indicating polydipsia caused the ADH and aquaporin-2 suppression.

Area of Science:

  • Pediatric Endocrinology
  • Nephrology
  • Water Balance Physiology

Background:

  • Primary polydipsia is characterized by excessive water intake, potentially leading to water intoxication.
  • Antidiuretic hormone (ADH) plays a crucial role in regulating water reabsorption in the kidneys.
  • Aquaporin-2 (AQP2) is a water channel protein regulated by ADH, essential for concentrating urine.

Observation:

  • An 18-month-old Japanese girl presented with severe overhydration.
  • Basal secretion of ADH was found to be decreased in the patient.
  • Urinary excretion of aquaporin-2 was suppressed under basal conditions.

Findings:

  • Despite suppressed basal levels, the aquaporin-2 response to ADH was preserved, suggesting the water channel's integrity.
  • The findings indicate that the primary issue was excessive water intake (polydipsia) rather than a defect in the water channels themselves.
  • Reduced ADH secretion and suppressed aquaporin-2 excretion were consequences of the severe overhydration.

Implications:

  • This case highlights that severe overhydration from primary polydipsia can suppress the body's natural water-regulating mechanisms, including ADH secretion and AQP2 expression.
  • Understanding this interplay is vital for diagnosing and managing pediatric patients with excessive thirst and water intake.
  • The preserved AQP2 response suggests potential for recovery of normal water balance once polydipsia is addressed.

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