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Published on: August 2, 2017
Placental 11 beta-hydroxysteroid dehydrogenase-2 and fetal cortisol/cortisone shuttle in small preterm infants
Eero Kajantie1, Leo Dunkel, Ursula Turpeinen
1Hospital for Children and Adolescents, Helsinki University Central Hospital, 00029 HUS, Helsinki, Finland. eero.kajantie@hus.fi
Insights
Reduced placental 11 beta-hydroxysteroid dehydrogenase-2 (11 beta-HSD2) function in preterm infants is linked to low birth weight and fetal distress. This finding impacts understanding of neonatal adrenal health and potential long-term risks.
Area of Science:
- Perinatology and Neonatology
- Endocrinology
- Fetal Medicine
Background:
- Glucocorticoids are controversial in perinatology, with debates on adrenal insufficiency in preterm infants.
- Physiological glucocorticoid exposure before preterm birth is poorly understood.
- Placental 11 beta-hydroxysteroid dehydrogenase-2 (11 beta-HSD2) regulates fetal glucocorticoid exposure, converting cortisol to cortisone.
- Impaired 11 beta-HSD2 activity is linked to intrauterine growth restriction and preeclampsia, conditions associated with preterm birth.
Purpose of the Study:
- To identify clinical factors associated with decreased placental 11 beta-HSD2 function in small preterm infants.
- To investigate the relationship between placental 11 beta-HSD2 activity and infant clinical characteristics.
Main Methods:
- Studied 107 small preterm infants (gestational age 22.4–32.0 wk).
- Measured placental 11 beta-HSD2 activity (rate and total) and cord vein cortisol (F) and cortisone (E) concentrations.
- Calculated the E/(E+F) ratio to assess the cortisol/cortisone balance.
Main Results:
- Positive correlations found between relative birth weight and placental 11 beta-HSD2 activity and E/(E+F) ratio.
- Infants with increased umbilical artery resistance showed lower placental 11 beta-HSD2 activity and E/(E+F) ratio.
- Gestational age was inversely associated with placental 11 beta-HSD2 activity rate.
Conclusions:
- Reduced placental 11 beta-HSD2 function in small preterm infants is associated with low relative birth weight and severe fetal distress.
- Further research is needed to determine if these associations relate to early postnatal adrenal insufficiency or long-term cardiovascular risks.
Abstract:
Glucocorticoids rate among the most controversial topics in today's perinatology and neonatology. Many sick preterm infants exhibit signs of adrenal insufficiency, the etiology, diagnostic criteria, and optimal treatment of which are under debate. Moreover, most of these infants are exposed to pharmacological glucocorticoid doses both in utero and after birth. In face of this, surprisingly little is known about the physiological glucocorticoid exposure before early preterm birth. This exposure is highly variable and mainly regulated by the placental enzyme 11 beta-hydroxysteroid dehydrogenase-2 (11 beta-HSD2), which converts excess cortisol (F) to inactive cortisone (E). Impaired activity of this enzyme is common in intrauterine growth restriction and preeclampsia, conditions frequently associated with early preterm birth. To identify clinical determinants associated with decreased placental 11 beta-HSD2 function, we studied 107 small preterm infants [mean birth weight, 1067 g (range, 395-2453 g); gestational age, 28.2 wk (range, 22.4-32.0 wk)] by determining their placental 11 beta-HSD2 activity rate (per milligram protein) and total activity (per placenta) as well as cord vein F and E concentrations. An E/(E+ F) ratio expresses the overall balance of the F/E shuttle. There were positive correlations between relative birth weight and placental 11 beta-HSD2 activity rate (r = 0.30; P = 0.002) and total activity (r = 0.56; P < 0.0001) as well as E/(E+ F) ratio (r = 0.27; P = 0.01) and E concentration (r = 0.32; P = 0.003). Infants with increased umbilical artery resistance had lower total placental 11 beta-HSD2 activity (P = 0.02), E/(E+ F) ratio (P = 0.04), and E concentration (P = 0.0002). Gestational age was inversely associated with placental 11 beta-HSD2 activity rate (r = -0.25; P = 0.009). We conclude that, in small preterm infants, reduced placental 11 beta-HSD2 function is associated with low relative birth weight and severe fetal distress. Whether these conditions are associated with early postnatal adrenal insufficiency or long-term cardiovascular risk remains an important issue for further study.
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