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Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice

Selenium nanoparticles have attracted extensive attention due to their good bioavailability and activity. In the present study, a new form of selenium nanoparticle (Low molecular weight chitosan selenium nanoparticles (LCS-SeNPs)) were synthesized in a system of sodium selenite and acetic acid. The...

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Autores principales: Peng, Shu-Jiang, Ye, Da-Tian, Zheng, Jie, Xue, Ya-Ru, Lin, Lin, Zhao, Ya-Dong, Miao, Wen-Hua, Song, Yan, Wen, Zheng-Shun, Zheng, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9779469/
https://www.ncbi.nlm.nih.gov/pubmed/36555167
http://dx.doi.org/10.3390/ijms232415527
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author Peng, Shu-Jiang
Ye, Da-Tian
Zheng, Jie
Xue, Ya-Ru
Lin, Lin
Zhao, Ya-Dong
Miao, Wen-Hua
Song, Yan
Wen, Zheng-Shun
Zheng, Bin
author_facet Peng, Shu-Jiang
Ye, Da-Tian
Zheng, Jie
Xue, Ya-Ru
Lin, Lin
Zhao, Ya-Dong
Miao, Wen-Hua
Song, Yan
Wen, Zheng-Shun
Zheng, Bin
author_sort Peng, Shu-Jiang
collection PubMed
description Selenium nanoparticles have attracted extensive attention due to their good bioavailability and activity. In the present study, a new form of selenium nanoparticle (Low molecular weight chitosan selenium nanoparticles (LCS-SeNPs)) were synthesized in a system of sodium selenite and acetic acid. The size, element state, morphology and elementary composition of LCS-SeNPs were characterized by using various spectroscopic and microscopic measurements. The protection of LCS-SeNPs against dextran sulfate sodium (DSS)-induced intestinal barrier dysfunction and the inherent mechanisms of this process were investigated. The results showed that LCS-SeNPs, with an average diameter of 198 nm, zero-valent and orange-red relatively uniform spherical particles were prepared. LCS-SeNPs were mainly composed of C, N, O and Se elements, of which Se accounted for 39.03% of the four elements C, N, O and Se. LCS-SeNPs reduced colon injury and inflammation symptoms and improved intestinal barrier dysfunction. LCS-SeNPs significantly reduced serum and colonic inflammatory cytokines TNF-α and IL-6 levels. Moreover, LCS-SeNPs remarkably increased antioxidant enzyme GSH-Px levels in serum and colonic tissue. Further studies on inflammatory pathways showed that LCS-SeNPs alleviated DSS-induced colitis through the NF-κB signaling pathway, and relieved inflammatory associated oxidative stress through the Nrf2 signaling pathway. Our findings suggested that LCS-SeNPs are a promising selenium species with potential applications in the treatment of oxidative stress related inflammatory intestinal diseases.
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spelling pubmed-97794692022-12-23 Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice Peng, Shu-Jiang Ye, Da-Tian Zheng, Jie Xue, Ya-Ru Lin, Lin Zhao, Ya-Dong Miao, Wen-Hua Song, Yan Wen, Zheng-Shun Zheng, Bin Int J Mol Sci Article Selenium nanoparticles have attracted extensive attention due to their good bioavailability and activity. In the present study, a new form of selenium nanoparticle (Low molecular weight chitosan selenium nanoparticles (LCS-SeNPs)) were synthesized in a system of sodium selenite and acetic acid. The size, element state, morphology and elementary composition of LCS-SeNPs were characterized by using various spectroscopic and microscopic measurements. The protection of LCS-SeNPs against dextran sulfate sodium (DSS)-induced intestinal barrier dysfunction and the inherent mechanisms of this process were investigated. The results showed that LCS-SeNPs, with an average diameter of 198 nm, zero-valent and orange-red relatively uniform spherical particles were prepared. LCS-SeNPs were mainly composed of C, N, O and Se elements, of which Se accounted for 39.03% of the four elements C, N, O and Se. LCS-SeNPs reduced colon injury and inflammation symptoms and improved intestinal barrier dysfunction. LCS-SeNPs significantly reduced serum and colonic inflammatory cytokines TNF-α and IL-6 levels. Moreover, LCS-SeNPs remarkably increased antioxidant enzyme GSH-Px levels in serum and colonic tissue. Further studies on inflammatory pathways showed that LCS-SeNPs alleviated DSS-induced colitis through the NF-κB signaling pathway, and relieved inflammatory associated oxidative stress through the Nrf2 signaling pathway. Our findings suggested that LCS-SeNPs are a promising selenium species with potential applications in the treatment of oxidative stress related inflammatory intestinal diseases. MDPI 2022-12-08 /pmc/articles/PMC9779469/ /pubmed/36555167 http://dx.doi.org/10.3390/ijms232415527 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Peng, Shu-Jiang
Ye, Da-Tian
Zheng, Jie
Xue, Ya-Ru
Lin, Lin
Zhao, Ya-Dong
Miao, Wen-Hua
Song, Yan
Wen, Zheng-Shun
Zheng, Bin
Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice
title Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice
title_full Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice
title_fullStr Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice
title_full_unstemmed Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice
title_short Synthesis, Characterization of Low Molecular Weight Chitosan Selenium Nanoparticles and Its Effect on DSS-Induced Ulcerative Colitis in Mice
title_sort synthesis, characterization of low molecular weight chitosan selenium nanoparticles and its effect on dss-induced ulcerative colitis in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9779469/
https://www.ncbi.nlm.nih.gov/pubmed/36555167
http://dx.doi.org/10.3390/ijms232415527
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