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Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats

Synthetic 3-hydroxyflavone analogues (JY-1, JY-2, JY-3, JY-4), were tested for antidiabetic activity in high-fructose-diet-fed (66 %, for 6 weeks) insulin-resistant Wistar rats (FD-fed rats). The fasting blood glucose, insulin, creatinine and AGEs were decreased to near normal upon treatment with te...

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Autores principales: Nayak, Yogendra, Venkatachalam, H., Daroji, Vijay Kumar, Mathew, Geetha, Jayashree, B.S., Unnikrishnan, M.K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Leibniz Research Centre for Working Environment and Human Factors 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464333/
https://www.ncbi.nlm.nih.gov/pubmed/26417321
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author Nayak, Yogendra
Venkatachalam, H.
Daroji, Vijay Kumar
Mathew, Geetha
Jayashree, B.S.
Unnikrishnan, M.K.
author_facet Nayak, Yogendra
Venkatachalam, H.
Daroji, Vijay Kumar
Mathew, Geetha
Jayashree, B.S.
Unnikrishnan, M.K.
author_sort Nayak, Yogendra
collection PubMed
description Synthetic 3-hydroxyflavone analogues (JY-1, JY-2, JY-3, JY-4), were tested for antidiabetic activity in high-fructose-diet-fed (66 %, for 6 weeks) insulin-resistant Wistar rats (FD-fed rats). The fasting blood glucose, insulin, creatinine and AGEs were decreased to near normal upon treatment with test compounds. Insulin resistance markers such as HOMA-IR, K-ITT, plasma triglycerides, lipids, endogenous antioxidant defense and glycogen were restored in FD-fed rats after treatment with 3-hydroxyflavones. It is known that insulin resistance is partly because of oxidative stress and hence antioxidant activity was determined. They exhibited significant in vitro DPPH and ABTS radical scavenging activity (IC(50): 10.66-66.63 µM). Test compounds inhibited ROS and NO production in RAW 264.7 cells (IC(50): 10.39–42.63 µM) and they were found as potent as quercetin. Further, the test compounds inhibited lipid peroxidation at low concentrations (IC(50): 99.61-217.47 µM). All test compounds at concentrations 100-200 µM protected calf thymus DNA-damage by Fenton reaction. In addition, test compounds inhibited protein glycation in different in vitro antiglycation assays. JY-2 showed maximum potency in all the stages of glycation which was comparable to the standard quercetin and aminoguanidine. Test compounds also enhanced the glucose uptake by L6 myotubes at an EC(50) much lower than that of quercetin. Thus the synthetic 3-hydroxyflavones were found to have good antidiabetic activity by pleotropic and multimodal suppression of insulin resistance and enhancement of glucose uptake by skeletal muscles. These compounds are non-toxic at the doses tested. Further, the combined antioxidant and antiglycation activities of these molecules have complementary benefits in management of diabetes.
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spelling pubmed-44643332015-09-28 Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats Nayak, Yogendra Venkatachalam, H. Daroji, Vijay Kumar Mathew, Geetha Jayashree, B.S. Unnikrishnan, M.K. EXCLI J Original Article Synthetic 3-hydroxyflavone analogues (JY-1, JY-2, JY-3, JY-4), were tested for antidiabetic activity in high-fructose-diet-fed (66 %, for 6 weeks) insulin-resistant Wistar rats (FD-fed rats). The fasting blood glucose, insulin, creatinine and AGEs were decreased to near normal upon treatment with test compounds. Insulin resistance markers such as HOMA-IR, K-ITT, plasma triglycerides, lipids, endogenous antioxidant defense and glycogen were restored in FD-fed rats after treatment with 3-hydroxyflavones. It is known that insulin resistance is partly because of oxidative stress and hence antioxidant activity was determined. They exhibited significant in vitro DPPH and ABTS radical scavenging activity (IC(50): 10.66-66.63 µM). Test compounds inhibited ROS and NO production in RAW 264.7 cells (IC(50): 10.39–42.63 µM) and they were found as potent as quercetin. Further, the test compounds inhibited lipid peroxidation at low concentrations (IC(50): 99.61-217.47 µM). All test compounds at concentrations 100-200 µM protected calf thymus DNA-damage by Fenton reaction. In addition, test compounds inhibited protein glycation in different in vitro antiglycation assays. JY-2 showed maximum potency in all the stages of glycation which was comparable to the standard quercetin and aminoguanidine. Test compounds also enhanced the glucose uptake by L6 myotubes at an EC(50) much lower than that of quercetin. Thus the synthetic 3-hydroxyflavones were found to have good antidiabetic activity by pleotropic and multimodal suppression of insulin resistance and enhancement of glucose uptake by skeletal muscles. These compounds are non-toxic at the doses tested. Further, the combined antioxidant and antiglycation activities of these molecules have complementary benefits in management of diabetes. Leibniz Research Centre for Working Environment and Human Factors 2014-09-09 /pmc/articles/PMC4464333/ /pubmed/26417321 Text en Copyright © 2014 Nayak et al. http://www.excli.de/documents/assignment_of_rights.pdf This is an Open Access article distributed under the following Assignment of Rights http://www.excli.de/documents/assignment_of_rights.pdf. You are free to copy, distribute and transmit the work, provided the original author and source are credited.
spellingShingle Original Article
Nayak, Yogendra
Venkatachalam, H.
Daroji, Vijay Kumar
Mathew, Geetha
Jayashree, B.S.
Unnikrishnan, M.K.
Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
title Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
title_full Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
title_fullStr Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
title_full_unstemmed Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
title_short Antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
title_sort antidiabetic activity of 3-hydroxyflavone analogues in high fructose fed insulin resistant rats
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464333/
https://www.ncbi.nlm.nih.gov/pubmed/26417321
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