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Home > Biblio > A novel method to quantify in vivo transferrin glycation: applications in diabetes mellitus

A novel method to quantify in vivo transferrin glycation: applications in diabetes mellitus

Public Access

Published

Peer reviewed scientific article

DOI : http://dx.doi.org/10.1016/j.cca.2006.01.028 [1]

Authors

A. Van Campenhout [2]; C . Van Campenhout [3]; Olyslager,Y.S. [4]; O. Van Damme [5]; A.R. Lagrou [6]; B. Keenoy [7]

Keywords

  1. Affect [8]
  2. analysis [9]
  3. Antwerp [10]
  4. application [11]
  5. applications [12]
  6. Belgium [13]
  7. blood [14]
  8. chemistry [15]
  9. Control [16]
  10. Diabetes Mellitus [17]
  11. differences [18]
  12. Female [19]
  13. Fructosamine [20]
  14. Glycosylation [21]
  15. Humans [22]
  16. im [23]
  17. Immunoassay [24]
  18. in vivo [25]
  19. Iron [26]
  20. IS [27]
  21. journal [28]
  22. Laboratories [29]
  23. Male [30]
  24. measure [31]
  25. measurement [32]
  26. metabolism [33]
  27. method [34]
  28. methods [35]
  29. middle aged [36]
  30. Nitroblue Tetrazolium [37]
  31. Oxidative Stress [38]
  32. parameters [39]
  33. performance [40]
  34. Print [41]
  35. Research [42]
  36. Research Support [43]
  37. result [44]
  38. results [45]
  39. serum [46]
  40. stress [47]
  41. study [48]
  42. Transferrin [49]
  43. Type [50]
  44. Universities [51]
  45. university [52]
  46. VARIABILITY [53]

Abstract:

BACKGROUND: In vitro glycation of transferrin leads to increased oxidative stress by impairing iron-binding antioxidant capacity. The aim of this study is to develop a method to evaluate in vivo transferrin glycation in diabetes. METHODS: We adapted the nitroblue tetrazolium assay to measure in micro-well plates the fructosamine content of transferrin isolated from serum by immunocomplexation. RESULTS: Introduction of the immunocomplexation step did not affect the analytical performance of the fructosamine measurement and analytical variability was lower than 7%. The diabetic group (n=107) …
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Abstract

BACKGROUND: In vitro glycation of transferrin leads to increased oxidative stress by impairing iron-binding antioxidant capacity. The aim of this study is to develop a method to evaluate in vivo transferrin glycation in diabetes. METHODS: We adapted the nitroblue tetrazolium assay to measure in micro-well plates the fructosamine content of transferrin isolated from serum by immunocomplexation. RESULTS: Introduction of the immunocomplexation step did not affect the analytical performance of the fructosamine measurement and analytical variability was lower than 7%. The diabetic group (n=107) had significantly higher transferrin glycation (1.39+/-1.12 versus 0.79+/-1.09 micromol fructosamine/g transferrin in the non-diabetic group, n=91, p<0.0005) and this was most pronounced in type 1 diabetes (1.95+/-1.02 versus 1.06+/-1.04 micromol fructosamine/g transferrin in type 2, p<0.0005). Transferrin glycation was associated with parameters of glycaemic control but did not correlate with serum iron or total iron-binding capacity. Total iron-binding capacity was lower in type 1 diabetes (63+/-9 versus 69+/-12 micromol/l in type 2, p<0.05) and was mainly determined by transferrin concentration. CONCLUSIONS: These results indicate that the adapted nitroblue tetrazolium assay combined with immunocomplexation of serum transferrin is suitable to detect differences in in vivo transferrin glycation between non-diabetic, type 1 and type 2 diabetic subjects

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Source URL:https://sciensano.be/en/biblio/a-novel-method-quantify-vivo-transferrin-glycation-applications-diabetes-mellitus

Links
[1] http://dx.doi.org/10.1016/j.cca.2006.01.028 [2] https://sciensano.be/en/biblio?f%5Bauthor%5D=25860&amp;f%5Bsearch%5D=A.%20Van%20Campenhout [3] https://sciensano.be/en/biblio?f%5Bauthor%5D=21126&amp;f%5Bsearch%5D=C%20.%20Van%20Campenhout [4] https://sciensano.be/en/biblio?f%5Bauthor%5D=28548&amp;f%5Bsearch%5D=Olyslager%2CY.S. [5] https://sciensano.be/en/biblio?f%5Bauthor%5D=28551&amp;f%5Bsearch%5D=O.%20Van%20Damme [6] https://sciensano.be/en/biblio?f%5Bauthor%5D=28554&amp;f%5Bsearch%5D=A.R.%20Lagrou [7] https://sciensano.be/en/biblio?f%5Bauthor%5D=21417&amp;f%5Bsearch%5D=B.%20Keenoy [8] https://sciensano.be/en/biblio?f%5Bkeyword%5D=17862&amp;f%5Bsearch%5D=Affect [9] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1506&amp;f%5Bsearch%5D=analysis [10] https://sciensano.be/en/biblio?f%5Bkeyword%5D=4035&amp;f%5Bsearch%5D=Antwerp [11] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1713&amp;f%5Bsearch%5D=application [12] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1716&amp;f%5Bsearch%5D=applications [13] https://sciensano.be/en/biblio?f%5Bkeyword%5D=444&amp;f%5Bsearch%5D=Belgium [14] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1758&amp;f%5Bsearch%5D=blood [15] https://sciensano.be/en/biblio?f%5Bkeyword%5D=4965&amp;f%5Bsearch%5D=chemistry [16] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1332&amp;f%5Bsearch%5D=Control [17] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1950&amp;f%5Bsearch%5D=Diabetes%20Mellitus [18] https://sciensano.be/en/biblio?f%5Bkeyword%5D=3159&amp;f%5Bsearch%5D=differences [19] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2685&amp;f%5Bsearch%5D=Female [20] https://sciensano.be/en/biblio?f%5Bkeyword%5D=24036&amp;f%5Bsearch%5D=Fructosamine [21] https://sciensano.be/en/biblio?f%5Bkeyword%5D=24039&amp;f%5Bsearch%5D=Glycosylation [22] https://sciensano.be/en/biblio?f%5Bkeyword%5D=648&amp;f%5Bsearch%5D=Humans [23] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2184&amp;f%5Bsearch%5D=im [24] https://sciensano.be/en/biblio?f%5Bkeyword%5D=17772&amp;f%5Bsearch%5D=Immunoassay [25] https://sciensano.be/en/biblio?f%5Bkeyword%5D=3969&amp;f%5Bsearch%5D=in%20vivo [26] https://sciensano.be/en/biblio?f%5Bkeyword%5D=4908&amp;f%5Bsearch%5D=Iron [27] https://sciensano.be/en/biblio?f%5Bkeyword%5D=525&amp;f%5Bsearch%5D=IS [28] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2190&amp;f%5Bsearch%5D=journal [29] https://sciensano.be/en/biblio?f%5Bkeyword%5D=543&amp;f%5Bsearch%5D=Laboratories [30] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2757&amp;f%5Bsearch%5D=Male [31] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1212&amp;f%5Bsearch%5D=measure [32] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1695&amp;f%5Bsearch%5D=measurement [33] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2301&amp;f%5Bsearch%5D=metabolism [34] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1134&amp;f%5Bsearch%5D=method [35] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1359&amp;f%5Bsearch%5D=methods [36] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2760&amp;f%5Bsearch%5D=middle%20aged [37] https://sciensano.be/en/biblio?f%5Bkeyword%5D=24042&amp;f%5Bsearch%5D=Nitroblue%20Tetrazolium [38] https://sciensano.be/en/biblio?f%5Bkeyword%5D=20451&amp;f%5Bsearch%5D=Oxidative%20Stress [39] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1221&amp;f%5Bsearch%5D=parameters [40] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2205&amp;f%5Bsearch%5D=performance [41] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2379&amp;f%5Bsearch%5D=Print [42] https://sciensano.be/en/biblio?f%5Bkeyword%5D=606&amp;f%5Bsearch%5D=Research [43] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2331&amp;f%5Bsearch%5D=Research%20Support [44] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1098&amp;f%5Bsearch%5D=result [45] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1101&amp;f%5Bsearch%5D=results [46] https://sciensano.be/en/biblio?f%5Bkeyword%5D=3531&amp;f%5Bsearch%5D=serum [47] https://sciensano.be/en/biblio?f%5Bkeyword%5D=3978&amp;f%5Bsearch%5D=stress [48] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1191&amp;f%5Bsearch%5D=study [49] https://sciensano.be/en/biblio?f%5Bkeyword%5D=19062&amp;f%5Bsearch%5D=Transferrin [50] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1026&amp;f%5Bsearch%5D=Type [51] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2343&amp;f%5Bsearch%5D=Universities [52] https://sciensano.be/en/biblio?f%5Bkeyword%5D=2346&amp;f%5Bsearch%5D=university [53] https://sciensano.be/en/biblio?f%5Bkeyword%5D=1242&amp;f%5Bsearch%5D=VARIABILITY