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Updated: Aug 13, 2026

Comparative Analysis of Human Growth Hormone in Serum Using SPRi, Nano-SPRi and ELISA Assays
Published on: January 7, 2016
Spontaneous growth hormone release in term infants: changes during the first four days of life
J D Miller1, A Esparza, N M Wright
1Department of Pediatrics, University of California, Irvine 92717.
Insights
Newborns exhibit higher growth hormone (GH) levels, with pulse frequency and amplitude decreasing significantly within the first 72 hours after birth. This study tracked GH release in term infants to understand its physiological changes post-delivery.
Area of Science:
- Pediatrics
- Endocrinology
- Neonatal Physiology
Background:
- Umbilical cord growth hormone (GH) levels are elevated in healthy term infants compared to older children.
- The physiological pattern of GH release in human neonates shortly after birth is not well-characterized.
- Studies in sheep indicate a rapid decline in GH concentrations within an hour of parturition.
Purpose of the Study:
- To investigate the spontaneous 12-hour GH release patterns in male and female term infants.
- To determine how GH release characteristics change with postnatal age in the first few days of life.
Main Methods:
- Studied 14 term infants (7 males, 7 females) at two different postnatal age groups: early (approx. 28 hours) and late (approx. 75 hours).
- Collected blood samples every 30 minutes over a 12-hour period via an indwelling umbilical catheter.
- Measured GH levels using radioimmunoassay (RIA) and analyzed pulsatile release with the Cluster algorithm. Insulin-like growth factor I (IGF-I) was also measured.
Main Results:
- Spontaneous pulsatile GH release was observed in all studied infants.
- No significant differences in GH characteristics were found between male and female infants.
- Infants studied earlier (approx. 28 hours) showed a higher GH pulse frequency (5.1 vs. 2.5 pulses/12h) and greater pulse amplitude compared to those studied later (approx. 75 hours).
- Incremental GH pulse amplitude was significantly higher in the early group (P=0.01).
Conclusions:
- GH release in term infants is pulsatile and changes significantly within the first 72 hours postpartum.
- GH pulse frequency and amplitude decrease notably as infants approach 3 days of age.
- These findings contribute to understanding neonatal endocrine regulation and growth patterns.
Abstract:
Healthy term infants have higher umbilical cord GH levels compared to older infants and children. In the sheep, GH concentrations rapidly fall within an hour of birth; the physiology of GH release after parturition in the human term infant is less well known. The purpose of this study was to investigate spontaneous 12-h GH release in male and female term infants of varying postnatal ages. We studied 14 infants (7 males and 7 females). Subjects were divided into those studied earlier following delivery (28.2 +/- 3.4 h of age, mean +/- SE) and into those studied at a later time (74.8 +/- 3.5 h, P < 0.0005). The age at study was defined as the age (hours) when blood sampling began. There were eight infants studied at an early age (four males and four females) and six studied at a later age (three males and three females). Subjects were comparable with respect to gestational age, birth weight, and length; all were biochemically euthyroid. One infant was large for gestational age although his head circumference was in the normal range. Blood (0.1 mL) was taken every 30 min over a 12-h period from an indwelling umbilical catheter; no stress occurred during the blood withdrawal. GH was determined by a double-antibody RIA using 0.01 mL plasma. GH pulse detection was undertaken using Cluster, a computerized pulse detection algorithm. Total insulin-like growth factor I (IGF-I) was measured following separation of the IGFs from the serum binding proteins. Spontaneous pulsatile GH release was observed in all infants studied. No differences in GH characteristics were found between male and female subgroups in the early or late study groups. In subsequent analysis, the data for the males and females are combined. The GH pulse frequency per 12 h was greater in the earlier studied group, 5.1 +/- 0.9 (mean +/- SE) vs. 2.5 +/- 0.7 in the later group (P < 0.05). The maximal pulse amplitude was 47.1 +/- 7.9 micrograms/L in the early and 27.1 +/- 4.1 in the later studied group (P < 0.06). The incremental pulse amplitude was 26.4 +/- 3.4 micrograms/L in the early and 12.8 +/- 2.7 in the later group (P = 0.01). The pulse width was greater in the later studied group (202.8 +/- 71.1 min vs. 84.1 +/- 21.6, P < 0.06).(ABSTRACT TRUNCATED AT 400 WORDS)
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