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Updated: Feb 15, 2026

Murine Colitis Modeling using Dextran Sulfate Sodium DSS
Published on: January 19, 2010
SLC26A3 (DRA) prevents TNF-alpha-induced barrier dysfunction and dextran sulfate sodium-induced acute colitis
Xiangming Ding1, Dongxiao Li1, Mengke Li1,2
1Department of Gastroenterology, Tongji Hospital, Huazhong University of Science and Technology, Hubei Sheng, China.
Abstract:
SLC26A3 encodes a Cl-/HCO3- ion transporter that is also known as downregulated in adenoma (DRA) and is involved in HCO3-/mucus formation. The role of DRA in the epithelial barrier has not been previously established. In this study, we investigated the in vivo and in vitro mechanisms of DRA in the colon epithelial barrier. Immunofluorescence (IF) and co-immunoprecipitation (co-IP) studies reveal that DRA binds directly to tight junction (TJ) proteins and affects the expression of TJ proteins in polarized Caco-2BBe cells. Similarly, DRA colocalizes with ZO-1 in the intestinal epithelium. Knockdown or overexpression of DRA leads to alterations in TJ proteins and epithelial permeability. In addition, TNF-α treatment downregulates DRA by activating NF-кB and subsequently affecting intestinal epithelial barrier integrity. Furthermore, overexpression of DRA partly reverses the TNF-α-induced damage by stabilizing TJ proteins. Neutralization of TNF-α in dextran sulfate sodium (DSS)-induced colitis mice demonstrates improved the outcomes, and the therapeutic effect of the TNF-α neutralizing mAb is mediated in part by the preservation of DRA expression. These data suggest that DRA may be one of the therapeutic targets of TNF-α. Moreover, DRA delivered by adenovirus vector significantly prevents the exacerbation of colitis and improves epithelial barrier function by promoting the recovery of TJ proteins in DSS-treated mice. In conclusion, DRA plays a role in protecting the epithelial barrier and may be a therapeutic target in gut homeostasis.
Insights
Downregulated in adenoma (DRA) protects the colon epithelial barrier by interacting with tight junction proteins. Restoring DRA levels can reverse inflammation-induced damage, suggesting DRA as a therapeutic target for gut homeostasis.
Area of Science:
- Cell Biology
- Gastroenterology
- Molecular Biology
Background:
- The role of the SLC26A3 gene, also known as downregulated in adenoma (DRA), in maintaining the epithelial barrier was previously undefined.
- DRA is an ion transporter involved in bicarbonate and mucus secretion, crucial for gut health.
Purpose of the Study:
- To investigate the in vivo and in vitro mechanisms of DRA in the colon epithelial barrier.
- To determine if DRA is a therapeutic target for inflammatory conditions affecting the gut.
Main Methods:
- Immunofluorescence (IF) and co-immunoprecipitation (co-IP) in Caco-2BBe cells.
- DRA knockdown and overexpression studies.
- Tumor Necrosis Factor-alpha (TNF-α) treatment and neutralization in vitro and in vivo.
- Dextran sulfate sodium (DSS)-induced colitis mouse model.
Main Results:
- DRA directly binds to tight junction (TJ) proteins, influencing their expression and affecting epithelial permeability.
- TNF-α downregulates DRA via NF-κB activation, compromising barrier integrity.
- DRA overexpression partially reverses TNF-α-induced damage by stabilizing TJ proteins.
- Adenovirus-mediated DRA delivery in DSS-treated mice improved epithelial barrier function and reduced colitis severity.
Conclusions:
- DRA plays a critical protective role in the colon epithelial barrier.
- DRA is a potential therapeutic target for inflammatory bowel diseases and maintaining gut homeostasis.
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