Partial correction of neutrophil dysfunction by oral galactose therapy in glycogen storage disease type Ib
File(s)Letkemann, revised.pdf (203.73 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Glycogen storage disease type Ib (GSD-Ib) is characterized by impaired glucose homeostasis, neutropenia and neutrophil dysfunction.
Mass spectrometric glycomic profiling of GSD-Ib neutrophils showed severely truncated N-glycans, lacking galactose. Experiments indicated the hypoglycosylation of the electron transporting subunit of NADPH oxidase, which is crucial for the defense against bacterial infections. In phosphoglucomutase 1 (PGM1) deficiency, an inherited disorder with an enzymatic defect just one metabolic step ahead, hypogalactosylation can be successfully treated by dietary galactose. We hypothesized the same pathomechanism in GSD-Ib and started a therapeutic trial with oral galactose and uridine. The aim was to improve neutrophil dysfunction through the correction of hypoglycosylation in neutrophils. The GSD-Ib patient was treated for 29 weeks. Monitoring included glycomics analysis of the patient's neutrophils and neutrophil function tests including respiratory burst activity, phagocytosis and migration. Although no substantial restoration of neutrophil glycosylation was found, there was partial improvement of respiratory burst activity.
Mass spectrometric glycomic profiling of GSD-Ib neutrophils showed severely truncated N-glycans, lacking galactose. Experiments indicated the hypoglycosylation of the electron transporting subunit of NADPH oxidase, which is crucial for the defense against bacterial infections. In phosphoglucomutase 1 (PGM1) deficiency, an inherited disorder with an enzymatic defect just one metabolic step ahead, hypogalactosylation can be successfully treated by dietary galactose. We hypothesized the same pathomechanism in GSD-Ib and started a therapeutic trial with oral galactose and uridine. The aim was to improve neutrophil dysfunction through the correction of hypoglycosylation in neutrophils. The GSD-Ib patient was treated for 29 weeks. Monitoring included glycomics analysis of the patient's neutrophils and neutrophil function tests including respiratory burst activity, phagocytosis and migration. Although no substantial restoration of neutrophil glycosylation was found, there was partial improvement of respiratory burst activity.
Date Issued
2017-01-23
Date Acceptance
2017-01-10
Citation
International Immunopharmacology, 2017, 44, pp.216-225
ISSN
1567-5769
Publisher
Elsevier
Start Page
216
End Page
225
Journal / Book Title
International Immunopharmacology
Volume
44
Copyright Statement
© 2017, Elsevier. Licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/
Sponsor
Biotechnology and Biological Sciences Research Council (BBSRC)
Grant Number
BB/K016164/1
Subjects
Science & Technology
Life Sciences & Biomedicine
Immunology
Pharmacology & Pharmacy
Glycogen storage disease
Galactose
CDG
Neutrophil dysfunction
Glycosylation
GLUCOSE-6-PHOSPHATE TRANSLOCASE
RESPIRATORY BURST
REACTIVE OXYGEN
NADPH OXIDASE
IN-VITRO
1B
GLYCOSYLATION
DEFICIENCY
MUTATIONS
GLUCOSE
Publication Status
Published