Literature DB >> 29444593

Validation of an automated ultraperformance liquid chromatography IgG N-glycan analytical method applicable to classical galactosaemia.

Hugh Owen Colhoun1, Eileen P Treacy1,2, Marguerite MacMahon3, Pauline M Rudd4, Maria Fitzgibbon3, Roisin O'Flaherty4, Karolina M Stepien2.   

Abstract

Background Classical galactosaemia (OMIM #230400) is a rare disorder of carbohydrate metabolism caused by deficiency of the galactose-1-phosphate uridyltransferase enzyme. The pathophysiology of the long-term complications, mainly cognitive, neurological and female fertility problems, remains poorly understood. Current clinical methods of biochemical monitoring lack precision and individualization with an identified need for improved biomarkers for this condition. Methods We report the development and detailed validation of an automated ultraperformance liquid chromatography N-glycan analytical method of high peak resolution applied to galactose incorporation into human serum IgG. Samples are prepared on 96-well plates and the workflow features rapid glycoprotein denaturation, enzymatic glycan release, glycan purification on solid-supported hydrazide, fluorescent labelling and post-labelling clean-up with solid-phase extraction. Results This method is shown to be accurate and precise with repeatability (cumulative coefficients of variation) of 2.0 and 8.5%, respectively, for G0/G1 and G0/G2 ratios. Both serum and processed N-glycan samples were found to be stable at room temperature and in freeze-thaw experiments. Conclusions This high-throughput method of IgG galactose incorporation is robust, affordable and simple. This method is validated with the potential to apply as a biomarker for treatment outcomes for galactosaemia.

Entities:  

Keywords:  Galactosaemia; IgG; N-glycan glycoproteins; biomarkers; method development

Mesh:

Substances:

Year:  2018        PMID: 29444593     DOI: 10.1177/0004563218762957

Source DB:  PubMed          Journal:  Ann Clin Biochem        ISSN: 0004-5632            Impact factor:   2.057


  9 in total

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Review 4.  Automation of Immunoglobulin Glycosylation Analysis.

Authors:  Jenifer L Hendel; Richard A Gardner; Daniel I R Spencer
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6.  A galactose-1-phosphate uridylyltransferase-null rat model of classic galactosemia mimics relevant patient outcomes and reveals tissue-specific and longitudinal differences in galactose metabolism.

Authors:  Shauna A Rasmussen; Jennifer M I Daenzer; Jessica A MacWilliams; S Taylor Head; Martine B Williams; Aron M Geurts; Jason P Schroeder; David Weinshenker; Judith L Fridovich-Keil
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7.  Fertility in classical galactosaemia, a study of N-glycan, hormonal and inflammatory gene interactions.

Authors:  Hugh-Owen Colhoun; Estela M Rubio Gozalbo; Annet M Bosch; Ina Knerr; Charlotte Dawson; Jennifer Brady; Marie Galligan; Karolina Stepien; Roisin O'Flaherty; C Catherine Moss; P Peter Barker; Maria Fitzgibbon; Peter P Doran; Eileen P Treacy
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Review 8.  Monitoring of immunoglobulin N- and O-glycosylation in health and disease.

Authors:  Noortje de Haan; David Falck; Manfred Wuhrer
Journal:  Glycobiology       Date:  2020-03-20       Impact factor: 4.313

9.  Abnormal N-glycan fucosylation, galactosylation, and sialylation of IgG in adults with classical galactosemia, influence of dietary galactose intake.

Authors:  Eileen P Treacy; Sebastian Vencken; Annet M Bosch; Matthias Gautschi; Estela Rubio-Gozalbo; Charlotte Dawson; Darragh Nerney; Hugh Owen Colhoun; Loai Shakerdi; Gregory M Pastores; Roisin O'Flaherty; Radka Saldova
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  9 in total

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