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Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage

Background: The pathogenesis of diabetes mellitus is mediated mainly by oxidative stress produced by damaged pancreatic β-cells. We identified that an ethyl-acetate fraction (EA) from a cinnamon-cortex extract (CCE) is rich in flavonoid, and showed no toxicity to β cells. Objective: In this study, w...

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Autores principales: Li, Weiling, Qiao, Jialu, Lin, Kuan, Sun, Ping, Wang, Yuansong, Peng, Qian, Ye, Xiansheng, Liu, Wei, Sun, Binlian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10025376/
https://www.ncbi.nlm.nih.gov/pubmed/36950010
http://dx.doi.org/10.3389/fphar.2023.1111860
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author Li, Weiling
Qiao, Jialu
Lin, Kuan
Sun, Ping
Wang, Yuansong
Peng, Qian
Ye, Xiansheng
Liu, Wei
Sun, Binlian
author_facet Li, Weiling
Qiao, Jialu
Lin, Kuan
Sun, Ping
Wang, Yuansong
Peng, Qian
Ye, Xiansheng
Liu, Wei
Sun, Binlian
author_sort Li, Weiling
collection PubMed
description Background: The pathogenesis of diabetes mellitus is mediated mainly by oxidative stress produced by damaged pancreatic β-cells. We identified that an ethyl-acetate fraction (EA) from a cinnamon-cortex extract (CCE) is rich in flavonoid, and showed no toxicity to β cells. Objective: In this study, we evaluated the pharmacologic activities of EA on pancreatic β cells using a model of oxidative stress induced by H(2)O(2) or alloxan. Results: The results showed that EA could significantly reduce reactive oxygen (ROS) accumulation to improve the survival of cells. Western blot showed that EA treatment upregulated expression of nuclear factor erythroid 2 related factor 2, heme oxygenase-1, and gamma glutamylcysteine synthetase. The same model study found that EA also can protect β cells against the apoptosis induced by oxidative stress. Furthermore, EA can enhance insulin secretion in rat and mouse β cell lines treated or not with alloxan or H(2)O(2). The expression of the insulin transcription factor PDX-1 increased in an EA concentration-dependent manner. At last, the major functional compounds of EA analysis showed that three compounds, cinnamyl alcohol, coumarin, and cinnamic acid, had similar effects as EA. Conclusions: In sum, our data suggested that EA fraction from CCE can protect β cells from oxidative stress, and increase insulin secretion to improve the function of β cells. This function might be due to these three compounds found in EA. Our findings provide a theoretical basis and functional molecules for the use of CCE against diabetes mellitus.
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spelling pubmed-100253762023-03-21 Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage Li, Weiling Qiao, Jialu Lin, Kuan Sun, Ping Wang, Yuansong Peng, Qian Ye, Xiansheng Liu, Wei Sun, Binlian Front Pharmacol Pharmacology Background: The pathogenesis of diabetes mellitus is mediated mainly by oxidative stress produced by damaged pancreatic β-cells. We identified that an ethyl-acetate fraction (EA) from a cinnamon-cortex extract (CCE) is rich in flavonoid, and showed no toxicity to β cells. Objective: In this study, we evaluated the pharmacologic activities of EA on pancreatic β cells using a model of oxidative stress induced by H(2)O(2) or alloxan. Results: The results showed that EA could significantly reduce reactive oxygen (ROS) accumulation to improve the survival of cells. Western blot showed that EA treatment upregulated expression of nuclear factor erythroid 2 related factor 2, heme oxygenase-1, and gamma glutamylcysteine synthetase. The same model study found that EA also can protect β cells against the apoptosis induced by oxidative stress. Furthermore, EA can enhance insulin secretion in rat and mouse β cell lines treated or not with alloxan or H(2)O(2). The expression of the insulin transcription factor PDX-1 increased in an EA concentration-dependent manner. At last, the major functional compounds of EA analysis showed that three compounds, cinnamyl alcohol, coumarin, and cinnamic acid, had similar effects as EA. Conclusions: In sum, our data suggested that EA fraction from CCE can protect β cells from oxidative stress, and increase insulin secretion to improve the function of β cells. This function might be due to these three compounds found in EA. Our findings provide a theoretical basis and functional molecules for the use of CCE against diabetes mellitus. Frontiers Media S.A. 2023-03-06 /pmc/articles/PMC10025376/ /pubmed/36950010 http://dx.doi.org/10.3389/fphar.2023.1111860 Text en Copyright © 2023 Li, Qiao, Lin, Sun, Wang, Peng, Ye, Liu and Sun. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Li, Weiling
Qiao, Jialu
Lin, Kuan
Sun, Ping
Wang, Yuansong
Peng, Qian
Ye, Xiansheng
Liu, Wei
Sun, Binlian
Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
title Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
title_full Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
title_fullStr Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
title_full_unstemmed Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
title_short Ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
title_sort ethyl-acetate fraction from a cinnamon-cortex extract protects pancreatic β-cells from oxidative stress damage
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10025376/
https://www.ncbi.nlm.nih.gov/pubmed/36950010
http://dx.doi.org/10.3389/fphar.2023.1111860
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