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Published on: November 20, 2015
The role of complement in neurodevelopmental impairment following neonatal hypoxic-ischemic encephalopathy
Hany Aly1, Mohamed T Khashaba, Ayman Nada
1Department of Pediatrics, George Washington University and Children's National Medical Center, Washington, DC, USA. haly@mfa.gwu.edu
Insights
Complement activation in the central nervous system is linked to poor outcomes in infants with hypoxic-ischemic encephalopathy (HIE). Increased terminal complement complexes (TCC) in cerebrospinal fluid correlate with death or neurological impairment after birth asphyxia.
Area of Science:
- Neuroscience
- Immunology
- Neonatal Medicine
Background:
- Hypoxic-ischemic encephalopathy (HIE) is a severe condition in newborns.
- Complement activation is implicated in brain injury following HIE.
- The link between complement activation and long-term neurological deficits in HIE is unclear.
Purpose of the Study:
- To investigate the association between central nervous system complement activation and subsequent neurodevelopmental abnormalities in infants with HIE.
- To test the hypothesis that complement activation in the CNS is positively associated with neurodevelopmental impairment.
Main Methods:
- Prospective study of 18 infants with HIE and 7 controls.
- Cerebrospinal fluid (CSF) analysis for terminal complement complexes (TCC), C9, and albumin via ELISA within 24 hours of birth.
- Neurological examinations and Denver Developmental Screening Test II at 6 and 12 months.
Main Results:
- Elevated TCC concentrations in CSF of HIE infants who died or had abnormal outcomes compared to controls (p=0.026).
- Increased albumin levels in CSF of HIE infants with abnormal outcomes (p=0.005).
- A trend towards decreased C9 concentration in HIE infants was not statistically significant (p=0.056).
Conclusions:
- Complement activation, indicated by increased TCC in the CNS, correlates with increased mortality and neurological sequelae in HIE infants.
- These findings support a role for complement in HIE pathogenesis.
- Further research with larger cohorts is needed to validate findings and justify clinical trials of complement inhibitors.
Abstract:
Evidence has accumulated implicating complement activation in the pathogenesis of acute post-hypoxic-ischemic cerebral injury in infants who develop hypoxic-ischemic encephalopathy (HIE). However, the relationship between complement activation and subsequent neurological impairment is not known. We tested the hypothesis that in human neonates, post-hypoxic-ischemic complement activation within the central nervous system is positively associated with the acquisition of subsequent neurodevelopmental abnormalities. This prospective study included 18 full-term infants diagnosed with HIE following resuscitation at birth and seven control infants. Cerebrospinal fluid (CSF) samples were obtained from all infants in the first 24 hours of life as part of routine investigations to exclude sepsis and meningitis. Concentrations of terminal complement complexes (TCC), complement component 9 (C9), and albumin were quantified by enzyme-linked immunosorbent assay in all CSF samples. Neurological examination and Denver Developmental Screening Test II were performed at 6 and 12 months of life. Of the 18 HIE subjects, nine died, six survived with significant neurological impairment, and three had normal neurological outcomes. In the CSF of the 15 HIE infants who died or survived with abnormal outcomes, the mean concentration of TCC was increased compared with controls (p = 0.026) and the mean C9 concentration appeared to be decreased but the difference was not statistically significant (p = 0.056). Similar to the TCC concentration, the concentration of albumin in the CSF was significantly increased in infants with abnormal outcomes (p = 0.005). This study indicates that complement activation following resuscitation at birth, as manifested by increased TCC in the CNS, is positively correlated with the combination of the development of subsequent neurological sequelae and death. Further study incorporating larger sample sizes will be required to confirm this association. This step is essential before clinical trials of complement inhibitors can be justified in human neonates who suffer birth asphyxia.
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