Skip to main content
GutCited

Eliminating ROS and Alleviating Inflammation to Restore the Integrity of Intestinal Epithelium in DSS-Induced Ulcerative Colitis by a pH-Responsive Delivery System of Curcumin.

Ruili Li, Ye Xiao, Rui Wu, Zhaoxin Lu, Fanqiang Meng et al.
Other Journal of agricultural and food chemistry 2025 3 次引用
PubMed DOI
<\/script>\n
`; }, get iframeSnippet() { const domain = 'gutcited.com'; const params = 'pmid\u003D40751674'; return ``; }, get activeSnippet() { return this.method === 'script' ? this.scriptSnippet : this.iframeSnippet; }, copySnippet() { navigator.clipboard.writeText(this.activeSnippet).then(() => { this.copied = true; setTimeout(() => { this.copied = false; }, 2000); }); } }" @keydown.escape.window="open = false" @click.outside="open = false">

Embed This Widget

Style



      
      
    

Widget powered by . Free, no account required.

Study Design

研究类型
Other
研究人群
DSS-induced UC mouse model
干预措施
Eliminating ROS and Alleviating Inflammation to Restore the Integrity of Intestinal Epithelium in DSS-Induced Ulcerative Colitis by a pH-Responsive Delivery System of Curcumin. None
对照组
DSS-induced UC mice without CURDNPs
主要结局
UC symptoms, ROS, and intestinal barrier integrity
效应方向
Positive
偏倚风险
High

Abstract

The current consensus is that combating reactive oxygen species (ROS) and implementing site-specific drug delivery are effective strategies for managing ulcerative colitis (UC). Herein, ferulic acid (FA) was used to fabricate curcumin (CUR) derivative polymer nanoparticles (CURDNPs) as a delivery vehicle for CUR, forming CURDNPs@CUR. This system enhances the dispersion, bioavailability, UV protection, and controlled-release performance of CUR while also improving its ROS-eliminating activity. In dextran sulfate sodium salt (DSS)-treated mice, CURDNPs@CUR delivers curcumin specifically to the colon, boosts antioxidant enzyme activity, and significantly ameliorates colon histopathology. It reduces the expression of pro-inflammatory cytokine genes (TNFα, NLRP3, and iNOS) and restores intestinal epithelial integrity by decreasing intestinal permeability and enhancing the expression of tight junction proteins (TJPs), including ZO-1, Occludin-1, and Claudin-1. These findings suggest the successful synthesis of a targeted/antioxidant CUR delivery vehicle for synergistic UC therapy via ROS elimination, barrier repair, and anti-inflammation.

简要概述

These findings suggest the successful synthesis of a targeted/antioxidant CUR delivery vehicle for synergistic UC therapy via ROS elimination, barrier repair, and anti-inflammation.

Used In Evidence Reviews

Similar Papers