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Published on: August 23, 2022
Direct hyperbilirubinemia and cholestasis in trisomy 13 and 18
Jeffrey W Kepple1, Eric S Peeples2
1School of Medicine, Creighton University, Omaha, Nebraska, USA.
Insights
Direct hyperbilirubinemia (DH) is common in neonates with Trisomy 13 and 18. Early screening for DH is recommended for these infants, especially those on total parenteral nutrition (TPN).
Area of Science:
- Neonatology
- Genetics
- Hepatology
Background:
- Trisomy 13 and 18 are common chromosomal abnormalities impacting multiple organ systems.
- Hepatic complications, particularly direct hyperbilirubinemia (DH), are underreported in these populations.
Purpose of the Study:
- To determine the incidence of direct hyperbilirubinemia (DH) in neonates with Trisomy 13 or Trisomy 18.
- To explore potential etiologies of DH in this vulnerable patient group.
Main Methods:
- Retrospective cohort study of infants admitted to NICUs between 2012-2020 with Trisomy 13 or 18.
- Evaluated DH using direct bilirubin cutoffs of >1 mg/dL and >2 mg/dL.
- Compared continuous and categorical variables using Fisher's exact test and Mann-Whitney U test, respectively.
Main Results:
- Thirty-five infants met inclusion criteria (13 Trisomy 13, 22 Trisomy 18).
- DH (>2 mg/dL) incidence was 53.8% in Trisomy 13 and 22.7% in Trisomy 18.
- Higher DH rates were observed in infants receiving total parenteral nutrition (TPN) (50.0% vs. 13.3%, p=0.026).
Conclusions:
- Neonates with Trisomy 13 and 18 exhibit high rates of direct hyperbilirubinemia (DH).
- Recommend screening for DH in newborns with Trisomy 13 or 18 starting in the first week of life and continuing weekly until 4 weeks or TPN completion.
- Further research is needed to elucidate the specific etiologies of DH in this population.
Abstract:
Trisomy 13 and 18 are common chromosomal abnormalities that affect multiple organ systems. There is a paucity of published data, however, on the hepatic complications seen in these patient populations. One of the most common pathologic hepatobiliary issues seen in the newborn period is direct hyperbilirubinemia (DH). Thus, this study sought to estimate the incidence and evaluate possible etiologies of DH in neonates with trisomy 13 or 18. This retrospective cohort study included all infants admitted to our two neonatal intensive care units between 2012 and 2020 with the diagnosis of trisomy 13 or 18. DH is most commonly diagnosed as a direct bilirubin >1 mg/dl but a cutoff of >2 mg/dl is more specific for cholestasis, so both cutoffs were evaluated. Continuous data were compared using Fisher's exact test and categorical variables by the Mann-Whitney U test. Thirty-five patients met inclusion: 13 with trisomy 13 and 22 with trisomy 18. DH of >2 mg/dl was seen in seven (53.8%) patients with trisomy 13 and five (22.7%) with trisomy 18. Using a cutoff of >1 mg/dl, the rate of trisomy 13 was unchanged, but the rate in trisomy 18 increased to 9/22 (40.9%). There was a trend toward more DH in trisomy 13 patients (p = 0.079) versus trisomy 18 and higher rates in infants who received total parenteral nutrition (TPN) (50.0 vs. 13.3%, p = 0.026). The presence of cardiac or ultrasound-defined hepatobiliary abnormalities was not correlated with DH. Due to the high rates of DH in hospitalized neonates with trisomy 13 and 18, we recommend screening newborns with trisomy 13 or 18 for DH starting in the first week of life and continuing at least weekly until 4 weeks of life or until completion of TPN, whichever comes later. Future studies should further evaluate possible etiologies of DH in this population.
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