Circulating levels of biologically active and immunoreactive intact parathyroid hormone in human newborns

L P Rubin1, J T Posillico, C S Anast

  • 1Department of Pediatrics and Medicine, Harvard Medical School, Boston, Massachusetts.

Pediatric Research
|February 1, 1991
PubMed

Insights

Newborns have higher biologically active parathyroid hormone (bioPTH) than intact parathyroid hormone (iPTH). Hypocalcemic preterm infants can significantly increase PTH levels, indicating a robust neonatal response to low calcium.

Area of Science:

  • Neonatal physiology
  • Endocrinology
  • Calcium homeostasis

Background:

  • Parathyroid hormone (PTH) is crucial for calcium regulation.
  • Circulating PTH levels in newborns and their response to hypocalcemia are not fully understood.
  • Distinguishing between biologically active and intact PTH is important for accurate assessment.

Purpose of the Study:

  • To evaluate circulating levels of biologically active PTH (bioPTH) and intact PTH (iPTH) in newborns.
  • To compare bioPTH and iPTH concentrations in term and preterm infants, including those born to diabetic mothers.
  • To investigate the PTH response to hypocalcemia in preterm infants.

Main Methods:

  • Utilized cytochemical bioassay and immunoradiometric assay to measure bioPTH and iPTH-(1-84).
  • Analyzed plasma samples from 47 newborns at birth and 8 preterm infants over 10 days.
  • Correlated bioPTH with the transplacental calcium gradient.

Main Results:

  • Umbilical venous bioPTH was elevated in term and preterm newborns compared to adults.
  • Umbilical bioPTH was suppressed in infants of diabetic mothers.
  • iPTH-(1-84) levels were low in all umbilical samples.
  • Declining calcium in preterm infants was accompanied by significant increases in both bioPTH and iPTH-(1-84).

Conclusions:

  • The 3rd trimester fetoplacental circulation has significantly higher bioPTH than iPTH.
  • Hypocalcemic preterm infants demonstrate a significant elevation in circulating PTH levels.
  • Neonatal calcium homeostasis involves a complex interplay of PTH forms.

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