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Updated: Oct 11, 2025

Intravenous Injections in Neonatal Mice
Published on: November 11, 2014
Intravenous ketogenic diet therapy for neonatal-onset pyruvate dehydrogenase complex deficiency
Takehiko Inui1, Yoichi Wada2, Moriei Shibuya1
1Department of Pediatric Neurology, Miyagi Children's Hospital, Miyagi, Japan.
Insights
Intravenous ketogenic diets show promise for treating neonatal pyruvate dehydrogenase complex (PDHC) deficiency. This metabolic disorder causes lactic acidosis and neurodevelopmental issues, but the diet improved outcomes in two infants.
Area of Science:
- Biochemistry
- Genetics
- Neurology
Background:
- Pyruvate dehydrogenase complex (PDHC) deficiency is a severe inborn error of metabolism.
- It leads to lactic acidosis and significant neurodevelopmental challenges.
- Neonatal encephalopathy due to PDHC deficiency has high mortality and no current effective treatment.
Observation:
- Two neonates diagnosed with PDHC deficiency (PDHA1 mutations) presented with specific MRI findings and worsening lactic acidosis.
- Intravenous ketogenic diet therapy was initiated within 24 hours of birth.
- The ketogenic ratio was adjusted to control blood lactate levels while monitoring for adverse effects.
Findings:
- Both patients showed immediate improvement in lactic acidosis without apparent side effects.
- Developmental outcomes were more favorable compared to previously reported cases.
- Neither child developed epilepsy, a common complication in similar conditions.
Implications:
- Intravenous ketogenic diet therapy represents a potential treatment for neonatal-onset PDHC deficiency.
- This approach may improve neurodevelopmental outcomes in affected infants.
- Further research is necessary to optimize ketogenic diet protocols for PDHC deficiency.
Background:
Pyruvate dehydrogenase complex (PDHC) deficiency is an inborn error of metabolism that causes lactic acidosis and neurodevelopmental changes. Five causative genes have been identified: PDHA1, PDHB, DLAT, DLD, and PDHX. Four neurological phenotypes have been reported: neonatal encephalopathy with lactic acidosis, non-progressive infantile encephalopathy, Leigh syndrome, and relapsing ataxia. Of these, neonatal encephalopathy has the worst mortality and morbidity and there is no effective treatment.
Subjects And Methods:
We studied two girls who were clinically diagnosed with PDHC deficiency as neonates; they were subsequently found to have PDHA1 mutations. The clinical diagnosis was based on white matter loss and a lateral ventricular septum on fetal MRI, spasticity of the lower extremities, and lactic acidosis worsening after birth. Intravenous ketogenic diets were started within 24 h after birth. The ketogenic ratio was increased until the blood lactate level was controlled, while monitoring for side effects.
Results:
In both cases, the lactic acidosis improved immediately with no apparent side effects. Both children had better developmental outcomes than previously reported cases; neither exhibited epilepsy.
Conclusions:
Intravenous ketogenic diet therapy is a treatment option for neonatal-onset PDHC deficiency. Further studies are needed to optimize this therapy.
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