Literature DB >> 15886040

Glucose tetrasaccharide as a biomarker for monitoring the therapeutic response to enzyme replacement therapy for Pompe disease.

Yan An1, Sarah P Young, Priya S Kishnani, David S Millington, Andrea Amalfitano, Deyanira Corz, Yuan-Tsong Chen.   

Abstract

A tetraglucose oligomer, Glcalpha1-6Glcalpha1-4Glcalpha1-4Glc, designated Glc4, has been shown to be a putative biomarker for the diagnosis of Pompe disease. The purpose of this study was to assess whether Glc4 could be used to monitor the therapeutic response to recombinant human acid alpha glucosidase (rhGAA) enzyme replacement therapy (ERT) in patients with Pompe disease. Urinary Glc4 levels in 11 patients receiving rhGAA therapy was determined by both HPLC-UV and stable isotope dilution ESI-MS/MS. Combined Glc4 and maltotetraose, Glcalpha1-4Glcalpha1-4Glcalpha1-4Glc, (M4) concentrations, designated Hex4, in plasma from these patients were measured by HPLC-UV only. Baseline urinary Glc4 and plasma Hex4 in these patients (mean+/-SD: 34.2+/-11.3 mmol/mol creatinine and 1.7+/-0.8 microM, respectively) were higher than age-matched control values (mean+/-SD, 6.1+/-5.1 mmol/mol creatinine and 0.22+/-0.15 microM, respectively). Both urinary Glc4 and plasma Hex4 levels decreased after initiation of ERT for all patients. In the four patients with the best overall clinical response in both skeletal and cardiac muscle, levels decreased to within, or near, normal levels during the first year of treatment. In contrast, levels fluctuated and were persistently elevated above the control ranges in those patients with a less favorable clinical response (good cardiac response but limited motor improvement). These results suggest that urinary Glc4 and plasma Hex4 could serve as a valuable adjunct to clinical endpoints for monitoring the efficacy of therapeutic interventions such as rhGAA ERT in Pompe disease.

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Year:  2005        PMID: 15886040     DOI: 10.1016/j.ymgme.2005.03.010

Source DB:  PubMed          Journal:  Mol Genet Metab        ISSN: 1096-7192            Impact factor:   4.797


  24 in total

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Journal:  Cell Metab       Date:  2019-07-25       Impact factor: 27.287

3.  Urine analysis of glucose tetrasaccharide by HPLC; a useful marker for the investigation of patients with Pompe and other glycogen storage diseases.

Authors:  Victoria Manwaring; Helen Prunty; Katie Bainbridge; Derek Burke; Niamh Finnegan; Rebecca Franses; Amanda Lam; Ashok Vellodi; Simon Heales
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4.  Limitations of enzyme replacement therapy: current and future.

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6.  Dermatan sulfate and heparan sulfate as a biomarker for mucopolysaccharidosis I.

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8.  Impaired clearance of accumulated lysosomal glycogen in advanced Pompe disease despite high-level vector-mediated transgene expression.

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Journal:  J Gene Med       Date:  2009-10       Impact factor: 4.565

9.  Pompe's Disease in Childhood: A Metabolic Myopathy.

Authors:  U Raju; S C Shaw; K S Rana; M Sharma; H R Ramamurthy
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10.  Proposed high-risk screening protocol for Fabry disease in patients with renal and vascular disease.

Authors:  C Auray-Blais; D S Millington; S P Young; J T R Clarke; R Schiffmann
Journal:  J Inherit Metab Dis       Date:  2009-01-26       Impact factor: 4.982

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