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Published on: May 16, 2019
Complications During Ketogenic Diet Initiation: Prevalence, Treatment, and Influence on Seizure Outcomes
Abigail Lin1, Zahava Turner2, Sarah C Doerrer2
1School of Medicine, The Johns Hopkins University, Baltimore, Maryland.
Insights
Most children experience mild adverse effects when starting the ketogenic diet, with younger children facing greater risks. The diet
Area of Science:
- Pediatric Neurology
- Metabolic Disorders
- Epilepsy Management
Background:
- Many pediatric epilepsy centers admit children for ketogenic diet initiation.
- The incidence and impact of adverse effects during this inpatient initiation are not well-studied.
Purpose of the Study:
- To investigate the incidence and severity of adverse effects during ketogenic diet initiation in children.
- To explore the relationship between adverse effects and seizure reduction at three months.
- To identify risk factors for adverse events during ketogenic diet initiation.
Main Methods:
- Retrospective chart review of 158 children with intractable epilepsy admitted for ketogenic diet initiation (2011-2016).
- Adverse effects during admission were recorded and severity rated (1-4).
- Seizure reduction and compliance were assessed at three months post-initiation.
Main Results:
- 80% of children experienced adverse effects, most commonly emesis, food refusal, and hypoglycemia.
- Younger children (mean age 3.6 years) had a higher likelihood of moderate to severe adverse effects, including hypoglycemia.
- No statistically significant correlation was found between the severity of adverse effects during admission and three-month seizure reduction.
Conclusions:
- Mild, treatable adverse effects are common during ketogenic diet initiation.
- Younger children require close monitoring due to increased risk of significant adverse events.
- Avoiding fasting in younger children may mitigate risks of lethargy and hypoglycemia.
Background:
Many centers still admit children for several days to start the ketogenic diet. The exact incidence of adverse effects during the admission and their potential later impact on seizure reduction has not been widely studied.
Methods:
We performed a retrospective study of children with intractable epilepsy electively admitted for ketogenic diet initiation at our institution from 2011 to 2016. Charts were reviewed for adverse effects during the admission period and then examined for seizure reduction and compliance at three months. A rating scale (1 to 4) was created for severity of any adverse events.
Results:
A total of 158 children were included, with the mean age 4.6 years. Potentially attributable adverse effects occurred in 126 (80%) children, most commonly emesis, food refusal, and hypoglycemia. Seventy-three (46%) children received some form of intervention by the medical team, most commonly the administration of juice (24%). Younger age was correlated with an increased likelihood of moderate to severe adverse effects during admission, often repeated hypoglycemia (3.6 versus 4.9 years, P = 0.04). Fasting was more likely to result in lethargy and a single blood glucose in the 30 to 40 mg/dL range, but it was not correlated with emesis, repeated hypoglycemia, or higher adverse effect scores. There was no statistically significant correlation between the severity of adverse effects and the three-month seizure reduction.
Conclusions:
Mild easily treated adverse effects occurred in most children admitted for the ketogenic diet. Younger children were at greater risk for significant difficulties and should be monitored closely. Because fasting led to more lethargy and hypoglycemia, it may be prudent to avoid this in younger children.
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