Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice

<p>Abstract</p> <p>Background</p> <p>Diabetic foot ulcers are serious complications for diabetic patients, yet the precise mechanism that underlines the treatment of these diabetic complications remains unclear. We hypothesized that dietary antioxidant supplementation w...

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Main Authors: Park Na-Young, Lim Yunsook
Format: Article
Language:English
Published: BMC 2011-11-01
Series:Nutrition & Metabolism
Subjects:
Online Access:http://www.nutritionandmetabolism.com/content/8/1/80
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spelling doaj-2a089d352fc34e9aa1dbf726aed397982020-11-25T01:01:01ZengBMCNutrition & Metabolism1743-70752011-11-01818010.1186/1743-7075-8-80Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic micePark Na-YoungLim Yunsook<p>Abstract</p> <p>Background</p> <p>Diabetic foot ulcers are serious complications for diabetic patients, yet the precise mechanism that underlines the treatment of these diabetic complications remains unclear. We hypothesized that dietary antioxidant supplementation with vitamin C, combined either with vitamin E or with vitamin E and NAC, improves delayed wound healing through modulation of blood glucose levels, oxidative stress, and inflammatory response.</p> <p>Methods</p> <p>Diabetes was induced by administration of alloxan monohydrate. Mice were divided into 4 groups; CON (non-diabetic control mice fed AIN 93 G purified rodent diet), DM (diabetic mice fed AIN 93 G purified rodent diet), VCE (diabetic mice fed 0.5% vitamin C and 0.5% vitamin E supplemented diet), and Comb (diabetic mice fed 0.5% vitamin C, 0.5% vitamin E, and 2.5% NAC supplemented diet). After 10 days of dietary antioxidant supplementation, cutaneous full-thickness excisional wounds were performed, and the rate of wound closure was examined. TBARS as lipid peroxidation products and vitamin E levels were measured in the liver. Expression levels of oxidative stress and inflammatory response related proteins were measured in the cutaneous wound site.</p> <p>Results</p> <p>Dietary antioxidant supplementation improved blood glucose levels and wound closure rate and increased liver vitamin E, but not liver TBARS levels in the diabetic mice as compared to those of the CON. In addition, dietary antioxidant supplementation modulated the expression levels of pIκBα, HO-1, CuZnSOD, iNOS and COX-2 proteins in the diabetic mice.</p> <p>Conclusions</p> <p>These findings demonstrated that delayed wound healing is associated with an inflammatory response induced by hyperglycaemia, and suggests that dietary antioxidant supplementation may have beneficial effects on wound healing through selective modulation of blood glucose levels, oxidative stress, and inflammatory response.</p> http://www.nutritionandmetabolism.com/content/8/1/80Diabetesantioxidantinflammationoxidative stresswound healing
collection DOAJ
language English
format Article
sources DOAJ
author Park Na-Young
Lim Yunsook
spellingShingle Park Na-Young
Lim Yunsook
Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
Nutrition & Metabolism
Diabetes
antioxidant
inflammation
oxidative stress
wound healing
author_facet Park Na-Young
Lim Yunsook
author_sort Park Na-Young
title Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
title_short Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
title_full Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
title_fullStr Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
title_full_unstemmed Short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
title_sort short term supplementation of dietary antioxidants selectively regulates the inflammatory responses during early cutaneous wound healing in diabetic mice
publisher BMC
series Nutrition & Metabolism
issn 1743-7075
publishDate 2011-11-01
description <p>Abstract</p> <p>Background</p> <p>Diabetic foot ulcers are serious complications for diabetic patients, yet the precise mechanism that underlines the treatment of these diabetic complications remains unclear. We hypothesized that dietary antioxidant supplementation with vitamin C, combined either with vitamin E or with vitamin E and NAC, improves delayed wound healing through modulation of blood glucose levels, oxidative stress, and inflammatory response.</p> <p>Methods</p> <p>Diabetes was induced by administration of alloxan monohydrate. Mice were divided into 4 groups; CON (non-diabetic control mice fed AIN 93 G purified rodent diet), DM (diabetic mice fed AIN 93 G purified rodent diet), VCE (diabetic mice fed 0.5% vitamin C and 0.5% vitamin E supplemented diet), and Comb (diabetic mice fed 0.5% vitamin C, 0.5% vitamin E, and 2.5% NAC supplemented diet). After 10 days of dietary antioxidant supplementation, cutaneous full-thickness excisional wounds were performed, and the rate of wound closure was examined. TBARS as lipid peroxidation products and vitamin E levels were measured in the liver. Expression levels of oxidative stress and inflammatory response related proteins were measured in the cutaneous wound site.</p> <p>Results</p> <p>Dietary antioxidant supplementation improved blood glucose levels and wound closure rate and increased liver vitamin E, but not liver TBARS levels in the diabetic mice as compared to those of the CON. In addition, dietary antioxidant supplementation modulated the expression levels of pIκBα, HO-1, CuZnSOD, iNOS and COX-2 proteins in the diabetic mice.</p> <p>Conclusions</p> <p>These findings demonstrated that delayed wound healing is associated with an inflammatory response induced by hyperglycaemia, and suggests that dietary antioxidant supplementation may have beneficial effects on wound healing through selective modulation of blood glucose levels, oxidative stress, and inflammatory response.</p>
topic Diabetes
antioxidant
inflammation
oxidative stress
wound healing
url http://www.nutritionandmetabolism.com/content/8/1/80
work_keys_str_mv AT parknayoung shorttermsupplementationofdietaryantioxidantsselectivelyregulatestheinflammatoryresponsesduringearlycutaneouswoundhealingindiabeticmice
AT limyunsook shorttermsupplementationofdietaryantioxidantsselectivelyregulatestheinflammatoryresponsesduringearlycutaneouswoundhealingindiabeticmice
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