Vitamin C Intake Reduces the Cytotoxicity Associated with Hyperglycemia in Prediabetes and Type 2 Diabetes

Hyperglycemia leads to the formation of free radicals and advanced glycation end-products (AGEs). Antioxidants can reduce the level of protein glycation and DNA damage. In this study, we compared the levels of vitamin C intake, which is among the most abundant antioxidants obtained from diet, with t...

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Veröffentlicht in:BioMed research international 2013-01, Vol.2013 (2013), p.1-6
Hauptverfasser: Maluf, Sharbel Weidner, Prá, Daniel, Horta, Jorge André, Pereira, Camila Schreiner, Molz, Patrícia, Hermes, Liziane, Fishborn, Arcênio, Santos, Maria Carolina, Müller, Luiza Louzada, Franke, Silvia Isabel Rech, Wichmann, Francisca Maria Assmann
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Sprache:eng
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Zusammenfassung:Hyperglycemia leads to the formation of free radicals and advanced glycation end-products (AGEs). Antioxidants can reduce the level of protein glycation and DNA damage. In this study, we compared the levels of vitamin C intake, which is among the most abundant antioxidants obtained from diet, with the levels of fasting plasma glucose (FPG), glycated hemoglobin (A1C), DNA damage, and cytotoxicity in prediabetic subjects and type 2 diabetic subjects. Our results indicated that there was no significant correlation between FPG or A1C and DNA damage parameters (micronuclei, nucleoplasmic bridges, and nuclear buds). FPG and A1C correlated with necrosis (r=0.294; P=0.013 and r=0.401; P=0.001, resp.). Vitamin C intake correlated negatively with necrosis and apoptosis (r=-0.246; P=0.040, and r=-0.276; P=0.021, resp.). The lack of a correlation between the FPG and A1C and DNA damage could be explained, at least in part, by the elimination of cells with DNA damage by either necrosis or apoptosis (cytotoxicity). Vitamin C appeared to improve cell survival by reducing cytotoxicity. Therefore, the present results indicate the need for clinical studies to evaluate the effect of low-dose vitamin C supplementation in type 2 diabetes.
ISSN:2314-6133
2314-6141
DOI:10.1155/2013/896536