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Published on: August 19, 2020
Toward understanding kernicterus: a challenge to improve the management of jaundiced newborns
Richard P Wennberg1, Charles E Ahlfors, Vinod K Bhutani
1Division of Neonatology, Department of Pediatrics, University of Washington, Box 356320, Seattle, WA 98195, USA. rpwennberg@hotmail.com
Insights
Free bilirubin (Bf) shows promise in predicting bilirubin toxicity risk in newborns, potentially improving upon total serum bilirubin (TSB) measurements. Further research is needed to establish Bf
Area of Science:
- Neonatal medicine
- Biochemistry
- Pharmacokinetics
Background:
- Bilirubin is a byproduct of heme breakdown, and elevated levels can cause neurotoxicity in newborns.
- Assessing the risk of bilirubin-induced neurotoxicity is crucial for timely intervention.
- Current methods using total serum bilirubin (TSB) may not accurately reflect the unbound, neurotoxic fraction.
Purpose of the Study:
- To evaluate the sensitivity and specificity of TSB and free bilirubin (Bf) in predicting bilirubin toxicity and kernicterus.
- To assess the consistency of TSB and Bf as predictors with bilirubin transport and brain uptake mechanisms.
Main Methods:
- Literature review to define bilirubin transport and brain uptake principles.
- Review of experimental and clinical evidence linking TSB or Bf to bilirubin toxicity and kernicterus risk.
Main Results:
- Insufficient data exist to precisely define the sensitivity and specificity of TSB or Bf for predicting neurotoxicity.
- Available evidence suggests Bf is a better indicator than TSB for discriminating risk in severe hyperbilirubinemia.
- Findings align with pharmacokinetic principles of bilirubin transport and tissue uptake.
Conclusions:
- Measuring Bf in newborns with hyperbilirubinemia may enhance neurotoxicity risk assessment.
- Further clinical evaluation is needed to correlate Bf and TSB with acute toxicity and long-term outcomes.
- Newer Bf measurement methods could improve sensitivity and specificity, reducing aggressive interventions.
Purpose:
We sought to evaluate the sensitivity and specificity of total serum bilirubin concentration (TSB) and free (unbound) bilirubin concentration (Bf) as predictors of risk for bilirubin toxicity and kernicterus and to examine consistency between these findings and proposed mechanisms of bilirubin transport and brain uptake.
Methods:
A review of literature was undertaken to define basic principles of bilirubin transport and brain uptake leading to neurotoxicity. We then reviewed experimental and clinical evidence that relate TSB or Bf to risk for bilirubin toxicity and kernicterus.
Results:
There are insufficient published data to precisely define sensitivity and specificity of either TSB or Bf in determining risk for acute bilirubin neurotoxicity or chronic sequelae (kernicterus). However, available laboratory and clinical evidence indicate that Bf is better than TSB in discriminating risk for bilirubin toxicity in patients with severe hyperbilirubinemia. These findings are consistent with basic pharmacokinetic principles involved in bilirubin transport and tissue uptake.
Conclusions:
Experimental and clinical data strongly suggest that measurement of Bf in newborns with hyperbilirubinemia will improve risk assessment for neurotoxicity, which emphasizes the need for additional clinical evaluation relating Bf and TSB to acute bilirubin toxicity and long-term outcome. We speculate that establishing risk thresholds for neurotoxicity by using newer methods for measuring Bf in minimally diluted serum samples will improve the sensitivity and specificity of serum indicators for treating hyperbilirubinemia, thus reducing unnecessary aggressive intervention and associated cost and morbidity.
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