Free Radical Research · 2004 · 23 citations · 21 references
BiochemistryMedicineUmbilical Cord BloodBioanalysisGlycobiologyPhysiologyDevelopmental ToxicologyMaternal HealthAdvanced Glycation End-productToxicologyGestation ProgressionAdvanced Glycation End-productsCord BloodClinical ChemistryMetabolismPharmacologyPreeclampsiaEarly Stage
Advanced glycation end-products (AGEs) are formed over several weeks to months by non-enzymatic glycation and oxidation ("glycoxidation") reactions between carbohydrate-derived carbonyl groups and protein amino groups, known as the Maillard reaction. Pentosidine is one of the best-characterized AGEs and is accepted as a satisfactory marker for glycoxidation in vivo. The present study was intended to measure pentosidine concentrations in umbilical cord blood from newborns with various gestational ages using our recently established high-performance liquid chromatography method [Tsukahara, H. et al. (2003) Pediatr. Res. 54, 419-424]. Our study demonstrates, for the first time, that pentosidine is detected in most of the umbilical blood samples. This study also shows that the umbilical blood concentrations of pentosidine are considerably lower than normal adult values, but that they increase with gestation progression and fetal growth. Umbilical pentosidine concentrations were significantly elevated in newborns of mothers with preeclampsia compared to those of mothers without preeclampsia. We conclude that accumulation of AGEs and oxidative stress occurs in fetal tissues and organs in utero at the early stage of human life and that their accumulation is augmented in the maternal preeclampsic condition.
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Accumulation of Maillard reaction products in skin collagen in diabetes and aging.
D G Dyer, John A. Dunn, S R Thorpe et al. · Journal of Clinical Investigation · 1993 · 766 citations · Full text
Reactive glycosylation endproducts in diabetic uraemia and treatment of renal failure
Zenji Makita, Richard Bucala, Emily J. Rayfield et al. · The Lancet · 1994 · 372 citations