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Updated: May 13, 2026

DNBS/TNBS Colitis Models: Providing Insights Into Inflammatory Bowel Disease and Effects of Dietary Fat
Published on: February 27, 2014
Netrin-1 regulates colon-kidney cross talk through suppression of IL-6 function in a mouse model of DSS-colitis
Punithavathi Ranganathan1, Calpurnia Jayakumar, Manicassamy Santhakumar
1Dept. of Medicine/Vascular Biology Center, CB-3702, Georgia Regents Univ., 1459 Laney-Walker Blvd., Augusta, GA 30912, USA.
Abstract:
Organ cross talk is increasingly appreciated in human disease, and inflammatory mediators are shown to mediate distant organ injury in many disease models. Colitis and intestinal injury are known to be mediated by infiltrating immune cells and their secreted cytokines. However, its effect on other organs, such as the kidney, has never been studied. In the current study, we examined the effect of dextran sulfate sodium (DSS)-colitis on kidney injury and inflammation. In addition, we hypothesized that netrin-1 could modulate colon-kidney cross talk through regulation of inflammation and apoptosis. Consistent with our hypothesis, DSS-colitis induced acute kidney injury in mice. Epithelial-specific overexpression of netrin-1 suppressed both colitis and colitis-induced acute kidney injury, which was associated with reduced weight loss, neutrophil infiltration into colon mucosa, intestinal permeability, epithelial cell apoptosis, and cytokine and chemokine production in netrin-1 transgenic mice colon and kidney. To determine whether netrin-1-protective effects were mediated through suppression of IL-6, IL-6 knockout mice were treated with DSS and acute kidney injury was determined. IL-6 knockout was resistant to colitis and acute kidney injury. Moreover, administration of IL-6 to netrin-1 transgenic mice did not affect the netrin-1-protective effects on the colon and kidney, suggesting that netrin-1 may reduce both IL-6 production and its activity. The present study identifies previously unrecognized cross talk between the colon and kidney, and netrin-1 may limit distant organ injury by suppressing inflammatory mediators and apoptosis.
Insights
Dextran sulfate sodium (DSS)-induced colitis causes acute kidney injury. Netrin-1 overexpression protects against colitis and kidney injury by reducing inflammation and apoptosis.
Area of Science:
- Immunology
- Gastroenterology
- Nephrology
Background:
- Organ cross talk is crucial in disease pathogenesis, with inflammatory mediators causing distant organ damage.
- Colitis-induced intestinal injury is well-documented, but its impact on kidneys remains unexplored.
- Netrin-1's role in modulating inflammation and apoptosis suggests potential involvement in inter-organ communication.
Purpose of the Study:
- To investigate the impact of dextran sulfate sodium (DSS)-induced colitis on kidney injury and inflammation.
- To determine if netrin-1 can modulate colon-kidney cross talk by regulating inflammation and apoptosis.
Main Methods:
- Induction of DSS-colitis in mice to assess kidney injury.
- Generation of epithelial-specific netrin-1 overexpressing transgenic mice.
- Evaluation of inflammatory markers, apoptosis, and intestinal permeability.
- Assessment of IL-6's role using IL-6 knockout mice and IL-6 administration.
Main Results:
- DSS-colitis induced significant acute kidney injury in mice.
- Epithelial-specific netrin-1 overexpression ameliorated colitis and kidney injury.
- Netrin-1 overexpression reduced weight loss, neutrophil infiltration, intestinal permeability, and apoptosis.
- IL-6 knockout mice were resistant to DSS-induced colitis and kidney injury, and IL-6 administration did not abrogate netrin-1's protective effects.
Conclusions:
- This study reveals a previously unrecognized colon-kidney cross talk in disease.
- Netrin-1 plays a protective role against distant organ injury by suppressing inflammatory mediators and apoptosis.
- Netrin-1 may limit kidney damage during colitis by reducing IL-6 production and activity.
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