The effect of a low-protein diet in pregnancy on offspring renal calcium handling

Nick Ashton1, Saleh H Al-Wasil, Helen Bond

  • 1Faculty of Life Sciences, University of Manchester, 1.124 Stopford Bldg., Oxford Road, Manchester M13 9PT, UK. nick.ashton@manchester.ac.uk

Insights

Maternal low-protein diets reduce bone mineral content in offspring. This study found increased renal calcium excretion in young rats, linked to impaired sodium-potassium pump activity, contributing to bone loss.

Area of Science:

  • Nutritional Science
  • Developmental Biology
  • Nephrology

Background:

  • Maternal low-protein diets during gestation are linked to reduced bone mineral content in offspring.
  • Renal calcium loss during skeletal growth is a potential mechanism for this bone loss.
  • Altered renal function in young rats exposed to low protein suggests a need to investigate calcium handling.

Purpose of the Study:

  • To test the hypothesis that renal calcium excretion is perturbed in offspring exposed to a maternal low-protein diet.
  • To characterize calcium handling in young rats born to mothers fed low-protein diets.

Main Methods:

  • Pregnant Wistar rats were fed 18% (control) or 9% (low) protein diets.
  • Offspring were assessed at 4 weeks old using renal clearance techniques, Western blotting, and enzyme activity assays.
  • Bone histomorphometry, plasma biochemistry, and renal protein expression were analyzed.

Main Results:

  • Low-protein offspring exhibited reduced trabecular bone mass and increased renal calcium and sodium excretion.
  • Glomerular filtration rate was reduced, and total plasma calcium was lower, but ionized calcium and calcitropic hormones were unchanged.
  • Kidney Na(+)-K(+)-ATPase activity was significantly reduced, while expression of key calcium transport proteins remained unaltered.

Conclusions:

  • Maternal low-protein diet leads to hypercalciuria in offspring, likely due to reduced passive calcium reabsorption in the proximal tubule.
  • Impaired Na(+)-K(+)-ATPase activity may underlie the altered renal calcium handling.
  • These renal changes may contribute to the observed reduction in bone mass in this developmental programming model.

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