Untargeted metabolomic profiling in a patient with glycogen storage disease Ib receiving empagliflozin treatment.

global metabolomics hypoglycemia inborn errors of metabolism inflammatory bowel disease neutropenia

Journal

JIMD reports
ISSN: 2192-8304
Titre abrégé: JIMD Rep
Pays: United States
ID NLM: 101568557

Informations de publication

Date de publication:
Jul 2022
Historique:
received: 21 03 2022
revised: 09 05 2022
accepted: 11 05 2022
entrez: 13 7 2022
pubmed: 14 7 2022
medline: 14 7 2022
Statut: epublish

Résumé

Glycogen storage disease type Ib (GSD-Ib) is a rare inborn error of glycogen metabolism uniquely associated with neutropenia and neutrophil dysfunction, causing severe infections, inflammatory bowel disease (IBD), and impaired wound healing. Recently, kidney sodium-glucose co-transporter-2 (SGLT2) inhibitors such as empagliflozin known to reduce plasma levels of 1,5-anhydroglucitol (1,5-AG) and its toxic derivatives in neutrophils, have been described as a new treatment option in case reports of patients with GSD-Ib from Europe and Asia. We report our experience with an 11-year-old girl with GSD-Ib presenting with short fasting hypoglycemia, neutropenia with neutrophil dysfunction, recurrent infections, suboptimal growth, iron-deficiency anemia, and IBD. Treatment with daily empagliflozin improved neutrophil counts and function with a significant reduction in G-CSF needs. Significant improvement in IBD has led to weight gain with improved nutritional markers and improved fasting tolerance. Reduction of maximum empagliflozin dose was needed due to arthralgia. No other significant side effects of empagliflozin were observed. This report uniquely highlights the novel use of untargeted metabolomics profiling for monitoring plasma levels of 1,5-AG to assess empagliflozin dose responsiveness and guide dietary management and G-CSF therapy. Clinical improvement correlated to rapid normalization of 1,5-AG levels in plasma sustained after dose reduction. In conclusion, empagliflozin appeared to be a safe treatment option for GSD-Ib-associated neutropenia and neutrophil dysfunction. Global untargeted metabolomics is an efficient method to assess biochemical responsiveness to treatment.

Identifiants

pubmed: 35822097
doi: 10.1002/jmd2.12304
pii: JMD212304
pmc: PMC9259396
doi:

Types de publication

Case Reports

Langues

eng

Pagination

309-315

Informations de copyright

© 2022 The Authors. JIMD Reports published by John Wiley & Sons Ltd on behalf of SSIEM.

Déclaration de conflit d'intérêts

Eran Tallis declares that he has no conflict of interest. Cecile L. Karsenty declares that he has no conflict of interest. Amanda B. Grimes declares that he has no conflict of interest. Lina B. Karam declares that he has no conflict of interest. Sarah H. Elsea declares that he has no conflict of interest. V. Reed Sutton declares that he has no conflict of interest. Brandy L. Rawls‐Castillo declares that he has no conflict of interest. Ning Liu declares that he has no conflict of interest. Claudia Soler‐Alfonso declares that he has no conflict of interest.

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Auteurs

Eran Tallis (E)

Department of Molecular and Human Genetics Baylor College of Medicine Houston Texas USA.

Cecile L Karsenty (CL)

Department of Pediatrics Baylor College of Medicine Houston Texas USA.
Texas Children's Cancer and Hematology Centers Houston Texas USA.

Amanda B Grimes (AB)

Department of Pediatrics Baylor College of Medicine Houston Texas USA.
Texas Children's Cancer and Hematology Centers Houston Texas USA.

Lina B Karam (LB)

Department of Pediatrics-Gastroenterology Baylor College of Medicine Houston Texas USA.

Sarah H Elsea (SH)

Department of Molecular and Human Genetics Baylor College of Medicine Houston Texas USA.
Baylor Genetics Houston Texas USA.

Vernon Reed Sutton (VR)

Department of Molecular and Human Genetics Baylor College of Medicine Houston Texas USA.
Baylor Genetics Houston Texas USA.

Brandy L Rawls-Castillo (BL)

Department of Molecular and Human Genetics Baylor College of Medicine Houston Texas USA.

Ning Liu (N)

Department of Molecular and Human Genetics Baylor College of Medicine Houston Texas USA.
Baylor Genetics Houston Texas USA.

Claudia Soler-Alfonso (C)

Department of Molecular and Human Genetics Baylor College of Medicine Houston Texas USA.

Classifications MeSH