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Elevated endogenous erythropoietin concentrations are associated with increased risk of brain damage in extremely
Steven J Korzeniewski1, Elizabeth Allred2, J Wells Logan3
1Perinatology Research Branch, NICHD/NIH/DHHS, Bethesda, Maryland, and Detroit, MI, United States of America; Department of Obstetrics and Gynecology, Wayne State University School of Medicine, Detroit, MI, United States of America; Department of Epidemiology & Biostatistics, Michigan State University, East Lansing, MI, United States of America.
Insights
Elevated erythropoietin (EPO) in preterm infants is linked to brain damage indicators. The combination of high EPO and inflammation significantly increases risks for developmental issues and specific brain abnormalities.
Area of Science:
- Neonatal Medicine
- Neuroscience
- Developmental Biology
Background:
- Investigating risks of brain damage in very preterm infants.
- Examining the role of erythropoietin (EPO) and inflammation.
Purpose of the Study:
- To determine if elevated perinatal EPO is associated with brain damage indicators in very preterm infants.
- To assess if this risk is modified by intermittent or sustained systemic inflammation (ISSI).
Main Methods:
- Measured protein concentrations in 786 infants born before 28 weeks gestation.
- Defined hypererythropoietinemia (hyperEPO) and ISSI based on blood protein levels.
- Used logistic regression to compare brain damage risks across groups.
Main Results:
- Hypererythropoietinemia (hyperEPO) alone increased risks of low developmental indices and microcephaly.
- The combination of hyperEPO and ISSI significantly elevated risks for ventriculomegaly, hemiparetic cerebral palsy, and microcephaly.
Conclusions:
- Hypererythropoietinemia is associated with increased risks of developmental delays and microcephaly, independent of inflammation.
- Concomitant hyperEPO and inflammation heighten risks for severe neurodevelopmental outcomes and specific brain abnormalities in preterm infants.
Background:
We sought to determine, in very preterm infants, whether elevated perinatal erythropoietin (EPO) concentrations are associated with increased risks of indicators of brain damage, and whether this risk differs by the co-occurrence or absence of intermittent or sustained systemic inflammation (ISSI).
Methods:
Protein concentrations were measured in blood collected from 786 infants born before the 28th week of gestation. EPO was measured on postnatal day 14, and 25 inflammation-related proteins were measured weekly during the first 2 postnatal weeks. We defined ISSI as a concentration in the top quartile of each of 25 inflammation-related proteins on two separate days a week apart. Hypererythropoietinemia (hyperEPO) was defined as the highest quartile for gestational age on postnatal day 14. Using logistic regression and multinomial logistic regression models, we compared risks of brain damage among neonates with hyperEPO only, ISSI only, and hyperEPO+ISSI, to those who had neither hyperEPO nor ISSI, adjusting for gestational age.
Results:
Newborns with hyperEPO, regardless of ISSI, were more than twice as likely as those without to have very low (< 55) Mental (OR 2.3; 95% CI 1.5-3.5) and/or Psychomotor (OR 2.4; 95% CI 1.6-3.7) Development Indices (MDI, PDI), and microcephaly at age two years (OR 2.4; 95%CI 1.5-3.8). Newborns with both hyperEPO and ISSI had significantly increased risks of ventriculomegaly, hemiparetic cerebral palsy, microcephaly, and MDI and PDI < 55 (ORs ranged from 2.2-6.3), but not hypoechoic lesions or other forms of cerebral palsy, relative to newborns with neither hyperEPO nor ISSI.
Conclusion:
hyperEPO, regardless of ISSI, is associated with elevated risks of very low MDI and PDI, and microcephaly, but not with any form of cerebral palsy. Children with both hyperEPO and ISSI are at higher risk than others of very low MDI and PDI, ventriculomegaly, hemiparetic cerebral palsy, and microcephaly.
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