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Updated: Jun 14, 2025

Modeling Colitis-Associated Cancer with Azoxymethane AOM and Dextran Sulfate Sodium DSS
Published on: September 11, 2012
Glyoxylate supplementation ameliorates colitis associated colon cancer progression
Nabendu Murmu1, Paramita Ghosh1,2, Akhileshwar Namani3
1Department of Signal Transduction & Biogenic Amine, Chittaranjan National Cancer Institute, Kolkata, India.
Abstract:
Colon cancer is on the rise in younger adults. Despite multimodal treatment strategies, clinical outcomes in advanced stage colon cancer patients remain poor. Neoadjuvant/adjuvant chemotherapy efficacy is limited due to chemoresistance, toxicity, and negative side effects. Overwhelming evidence supporting the small-molecule metabolites derived from breakdown of food or microbial sources confer an extensive array of host benefits, including chemo-preventive role in colon cancer. Our previous study indicated that the introduction of glyoxylate (Glx), an intermediate product of microbial or plant metabolism, exerts a cytotoxic effect in colon cancer cells. This study was designed to evaluate the effects of Glx on colon cancer with molecular insights. For this, we established an AOM/DSS-induced colitis associated colon cancer model in mice. Supplementation of Glx in vivo reduced colitis associated tumor growth and altered the metabolic characteristics of tumor tissue in mice without initiating any severe liver or renal toxicity. More specifically, intake of glyoxylate accumulated glycine in the colon tissue by elevation of alanine-glyoxylate transferase (AGXT) activity. Glycine accumulation increased intracellular Ca2+ concentration via glycine receptor activation and dysregulation of Ca2+ homeostasis lead to induction of apoptosis that resulted in arresting tumor growth. Interestingly, elevation of AGXT activity or Glx related specific metabolic pathway provides better survival in colon cancer patients. Collectively, our exclusive findings support the exploration of Glx either as a preventive molecule or its inclusion in the treatment regimens for colon cancer.
Insights
Glyoxylate (Glx), a food metabolite, inhibits colon cancer growth by increasing glycine and calcium, inducing apoptosis. This finding supports Glx as a potential preventive or therapeutic agent for colon cancer.
Area of Science:
- Metabolic pathways
- Cancer research
- Gastroenterology
Background:
- Colon cancer incidence is increasing in young adults, with poor outcomes in advanced stages.
- Chemotherapy for colon cancer faces limitations due to resistance, toxicity, and side effects.
- Dietary metabolites show promise for cancer prevention and treatment.
Purpose of the Study:
- To investigate the anti-cancer effects of glyoxylate (Glx) in colon cancer.
- To elucidate the molecular mechanisms underlying Glx's action on colon cancer.
- To evaluate Glx's therapeutic potential in a mouse model.
Main Methods:
- Established a colitis-associated colon cancer model in mice using AOM/DSS.
- Administered Glx supplementation in vivo.
- Analyzed tumor growth, metabolic profiles, and molecular changes in colon tissue.
- Assessed liver and renal toxicity.
- Correlated AGXT activity and Glx pathways with patient survival data.
Main Results:
- Glx supplementation reduced tumor growth in the mouse model without causing significant toxicity.
- Glx increased glycine levels in colon tissue by enhancing alanine-glyoxylate transferase (AGXT) activity.
- Glycine accumulation led to increased intracellular Ca2+ and apoptosis, inhibiting tumor growth.
- Elevated AGXT activity and Glx-related metabolic pathways correlated with improved survival in colon cancer patients.
Conclusions:
- Glyoxylate demonstrates a therapeutic effect against colon cancer by modulating glycine metabolism and inducing apoptosis.
- The findings suggest glyoxylate as a potential preventive or therapeutic agent for colon cancer.
- Targeting Glx-related metabolic pathways may offer novel strategies for colon cancer treatment.
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