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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.
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.
Abstract:
We evaluated circulating levels of biologically active and immunoreactive intact parathyroid hormone [iPTH-(1-84)] in 47 newborns at birth and eight hypocalcemic preterm infants during the first 10 d of life. Use of two sensitive detection systems, the cytochemical bioassay and an immunoradiometric assay specific for intact parathyroid hormone, enabled us to compare plasma concentrations of PTH-like bioactivity (bioPTH) and iPTH-(1-84). Mean umbilical venous plasma bioPTH was elevated in nondiabetic term and preterm newborns [22.5 +/- 3.1 (+/- SEM) and 15.8 +/- 2.5 ng-equiv/L, respectively] compared with normal adult subjects (9.8 +/- 2.6 ng-equiv/L; p less than 0.01). Umbilical bioPTH was suppressed in five term infants of diabetic mothers (2.6 +/- 0.4 ng-equiv/L). In contrast, iPTH-(1-84) was low in term and preterm nondiabetic infants' and term infants of diabetic mothers' umbilical samples (5.4 +/- 1.5, 4.3 +/- 1.5, and 2.4 +/- 1.0 ng/L, respectively). Umbilical venous bioPTH was highly correlated with the magnitude of the transplacental calcium gradient (r = 0.90; p less than 0.05). In eight preterm infants studied longitudinally, by 24-36 h of life, declining plasma total and ionized calcium (1.71 +/- 0.04 and 0.78 +/- 0.03 mmol/L, respectively) were accompanied by a significant rise in both bioPTH (41.2 +/- 6.3 ng-equiv/L) and iPTH-(1-84) (56.3 +/- 11.6 ng/L). These data indicate that the 3rd trimester fetoplacental circulation contains levels of bioPTH several-fold higher than those of immunoreactive intact hormone. We also conclude that even hypocalcemic preterm newborn infants can significantly elevate circulating levels of PTH.
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