Repurposing eflornithine to treat a patient with a rare ODC1 gain-of-function variant disease

Author:

Rajasekaran Surender123ORCID,Bupp Caleb P34,Leimanis-Laurens Mara13,Shukla Ankit5,Russell Christopher2,Junewick Joseph6,Gleason Emily2,VanSickle Elizabeth A4ORCID,Edgerly Yvonne2,Wittmann Bryan M7,Prokop Jeremy W38,Bachmann André S3

Affiliation:

1. Pediatric Critical Care Medicine, Helen DeVos Children’s Hospital, Grand Rapids, United States

2. Spectrum Health Office of Research and Education, Grand Rapids, United States

3. Department of Pediatrics and Human Development, College of Human Medicine, Michigan State University, Grand Rapids, United States

4. Medical Genetics, Spectrum Health and Helen DeVos Children’s Hospital, Grand Rapids, United States

5. Department of Pharmacy, Helen DeVos Children’s Hospital, Grand Rapids, United States

6. Department of Diagnostic Radiology, Spectrum Health and Helen DeVos Children's Hospital, Grand Rapids, United States

7. Metabolon, Morrisville, United States

8. Department of Pharmacology and Toxicology, College of Human Medicine, Michigan State University, East Lansing, United States

Abstract

Background:Polyamine levels are intricately controlled by biosynthetic, catabolic enzymes and antizymes. The complexity suggests that minute alterations in levels lead to profound abnormalities. We described the therapeutic course for a rare syndrome diagnosed by whole exome sequencing caused by gain-of-function variants in the C-terminus of ornithine decarboxylase (ODC), characterized by neurological deficits and alopecia.Methods:N-acetylputrescine levels with other metabolites were measured using ultra-performance liquid chromatography paired with mass spectrometry and Z-scores established against a reference cohort of 866 children.Results:From previous studies and metabolic profiles, eflornithine was identified as potentially beneficial with therapy initiated on FDA approval. Eflornithine normalized polyamine levels without disrupting other pathways. She demonstrated remarkable improvement in both neurological symptoms and cortical architecture. She gained fine motor skills with the capacity to feed herself and sit with support.Conclusions:This work highlights the strategy of repurposing drugs to treat a rare disease.Funding:No external funding was received for this work.

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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