Cargando…
A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms
Gastritis or peptic ulcer is believed to affect about half of people worldwide. Traditional medications can lead to adverse effects, therefore, alternative nutritional strategies are needed to prevent the development of gastric mucosal damage. A novel combination of two food-grade ingredients, wheat...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2017
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622738/ https://www.ncbi.nlm.nih.gov/pubmed/28878183 http://dx.doi.org/10.3390/nu9090978 |
_version_ | 1783267975419133952 |
---|---|
author | Kan, Juntao Hood, Molly Burns, Charlie Scholten, Jeff Chuang, Jennifer Tian, Feng Pan, Xingchang Du, Jun Gui, Min |
author_facet | Kan, Juntao Hood, Molly Burns, Charlie Scholten, Jeff Chuang, Jennifer Tian, Feng Pan, Xingchang Du, Jun Gui, Min |
author_sort | Kan, Juntao |
collection | PubMed |
description | Gastritis or peptic ulcer is believed to affect about half of people worldwide. Traditional medications can lead to adverse effects, therefore, alternative nutritional strategies are needed to prevent the development of gastric mucosal damage. A novel combination of two food-grade ingredients, wheat peptides and fucoidan (WPF), was prepared to treat male Sprague Dawley rats for 30 days before gastric mucosal damage was induced by oral administration of ethanol. The serum levels of biomarkers were determined by enzyme-linked immunosorbent assay. Biomarkers in stomach tissue were analyzed using immunohistochemistry. In addition, human gastric epithelial cell line (GES-1) was used to investigate protein expression by Western blot. WPF could attenuate ethanol-induced gastric mucosal damage in an inverse dose-dependent manner, with both ulcer index and pathological index improved. WPF increased superoxide dismutase level and decreased malondialdehyde level. WPF also decreased the levels of interleukin-8, platelet-activating factor, and Caspase 3, while increasing the levels of prostaglandin E-2, epidermal growth factor (EGF), and EGF receptor (EGFR). Furthermore, phosphorylation of EGFR and extracellular signal–regulated kinases was induced by WPF in GES-1 cells. In conclusion, the novel combination of wheat peptides and fucoidan attenuated ethanol-induced gastric mucosal damage in rats through anti-oxidant, anti-inflammatory, and pro-survival mechanisms. |
format | Online Article Text |
id | pubmed-5622738 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-56227382017-10-05 A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms Kan, Juntao Hood, Molly Burns, Charlie Scholten, Jeff Chuang, Jennifer Tian, Feng Pan, Xingchang Du, Jun Gui, Min Nutrients Article Gastritis or peptic ulcer is believed to affect about half of people worldwide. Traditional medications can lead to adverse effects, therefore, alternative nutritional strategies are needed to prevent the development of gastric mucosal damage. A novel combination of two food-grade ingredients, wheat peptides and fucoidan (WPF), was prepared to treat male Sprague Dawley rats for 30 days before gastric mucosal damage was induced by oral administration of ethanol. The serum levels of biomarkers were determined by enzyme-linked immunosorbent assay. Biomarkers in stomach tissue were analyzed using immunohistochemistry. In addition, human gastric epithelial cell line (GES-1) was used to investigate protein expression by Western blot. WPF could attenuate ethanol-induced gastric mucosal damage in an inverse dose-dependent manner, with both ulcer index and pathological index improved. WPF increased superoxide dismutase level and decreased malondialdehyde level. WPF also decreased the levels of interleukin-8, platelet-activating factor, and Caspase 3, while increasing the levels of prostaglandin E-2, epidermal growth factor (EGF), and EGF receptor (EGFR). Furthermore, phosphorylation of EGFR and extracellular signal–regulated kinases was induced by WPF in GES-1 cells. In conclusion, the novel combination of wheat peptides and fucoidan attenuated ethanol-induced gastric mucosal damage in rats through anti-oxidant, anti-inflammatory, and pro-survival mechanisms. MDPI 2017-09-06 /pmc/articles/PMC5622738/ /pubmed/28878183 http://dx.doi.org/10.3390/nu9090978 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Kan, Juntao Hood, Molly Burns, Charlie Scholten, Jeff Chuang, Jennifer Tian, Feng Pan, Xingchang Du, Jun Gui, Min A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms |
title | A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms |
title_full | A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms |
title_fullStr | A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms |
title_full_unstemmed | A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms |
title_short | A Novel Combination of Wheat Peptides and Fucoidan Attenuates Ethanol-Induced Gastric Mucosal Damage through Anti-Oxidant, Anti-Inflammatory, and Pro-Survival Mechanisms |
title_sort | novel combination of wheat peptides and fucoidan attenuates ethanol-induced gastric mucosal damage through anti-oxidant, anti-inflammatory, and pro-survival mechanisms |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5622738/ https://www.ncbi.nlm.nih.gov/pubmed/28878183 http://dx.doi.org/10.3390/nu9090978 |
work_keys_str_mv | AT kanjuntao anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT hoodmolly anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT burnscharlie anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT scholtenjeff anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT chuangjennifer anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT tianfeng anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT panxingchang anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT dujun anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT guimin anovelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT kanjuntao novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT hoodmolly novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT burnscharlie novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT scholtenjeff novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT chuangjennifer novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT tianfeng novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT panxingchang novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT dujun novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms AT guimin novelcombinationofwheatpeptidesandfucoidanattenuatesethanolinducedgastricmucosaldamagethroughantioxidantantiinflammatoryandprosurvivalmechanisms |