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A Genetically Engineered Mouse Model of Sporadic Colorectal Cancer
Published on: July 6, 2017
Enhanced colonic tumorigenesis in alkaline sphingomyelinase (NPP7) knockout mice
Ying Chen1, Ping Zhang2, Shu-Chang Xu3
1Gastroenterology and Nutrition Laboratory, Department of Clinical Sciences Lund, University of Lund, Lund, Sweden. Gastroenterology, Tongji Hospital, Tongji University School of Medicine, Shanghai, China.
Abstract:
Intestinal alkaline sphingomyelinase (alk-SMase) generates ceramide and inactivates platelet-activating factor (PAF) and was previously suggested to have anticancer properties. The direct evidence is still lacking. We studied colonic tumorigenesis in alk-SMase knockout (KO) mice. Formation of aberrant crypt foci (ACF) was examined after azoxymethane (AOM) injection. Tumor was induced by AOM alone, a conventional AOM/dextran sulfate sodium (DSS) treatment, and an enhanced AOM/DSS method. β-Catenin was determined by immunohistochemistry, PAF levels by ELISA, and sphingomyelin metabolites by mass spectrometry. Without treatment, spontaneous tumorigenesis was not identified but the intestinal mucosa appeared thicker in KO than in wild-type (WT) littermates. AOM alone induced more ACF in KO mice but no tumors 28 weeks after injection. However, combination of AOM/DSS treatments induced colonic tumors and the incidence was significantly higher in KO than in WT mice. By the enhanced AOM/DSS method, tumor number per mouse increased 4.5 times and tumor size 1.8 times in KO compared with WT mice. Although all tumors were adenomas in WT mice, 32% were adenocarcinomas in KO mice. Compared with WT mice, cytosol expression of β-catenin was significantly increased and nuclear translocation in tumors was more pronounced in KO mice. Lipid analysis showed decreased ceramide in small intestine and increased sphingosine-1-phosphate (S1P) in both small intestine and colon in nontreated KO mice. PAF levels in feces were significantly higher in the KO mice after AOM/DSS treatment. In conclusion, lack of alk-SMase markedly increases AOM/DSS-induced colonic tumorigenesis associated with decreased ceramide and increased S1P and PAF levels.
Insights
The absence of intestinal alkaline sphingomyelinase (alk-SMase) significantly promotes colon tumor development in mice. This is linked to altered ceramide, sphingosine-1-phosphate (S1P), and platelet-activating factor (PAF) levels, challenging its proposed anticancer role.
Area of Science:
- Gastroenterology
- Oncology
- Biochemistry
Background:
- Intestinal alkaline sphingomyelinase (alk-SMase) produces ceramide and degrades platelet-activating factor (PAF).
- Previous studies suggested alk-SMase possesses anticancer properties, but direct evidence is limited.
- Understanding alk-SMase's role in colon cancer is crucial for therapeutic strategies.
Purpose of the Study:
- To investigate the role of alk-SMase in colonic tumorigenesis using a mouse model.
- To determine the impact of alk-SMase deficiency on tumor formation and progression.
- To elucidate the molecular mechanisms underlying alk-SMase's influence on colon cancer.
Main Methods:
- Utilized alk-SMase knockout (KO) and wild-type (WT) mice.
- Induced colonic tumors using azoxymethane (AOM) and dextran sulfate sodium (DSS) treatments.
- Analyzed aberrant crypt foci (ACF), tumor incidence, size, and histology.
- Quantified β-catenin expression, PAF levels, and sphingomyelin metabolites (ceramide, S1P).
Main Results:
- Lack of alk-SMase did not cause spontaneous tumors but led to thicker intestinal mucosa.
- AOM/DSS treatment induced significantly higher colonic tumor incidence and size in KO mice compared to WT mice.
- Tumors in KO mice showed increased β-catenin signaling and a higher rate of adenocarcinoma formation.
- KO mice exhibited decreased ceramide, increased sphingosine-1-phosphate (S1P), and elevated fecal PAF levels.
Conclusions:
- Absence of alk-SMase markedly exacerbates AOM/DSS-induced colonic tumorigenesis.
- The pro-tumorigenic effect is associated with reduced ceramide, elevated S1P, and increased PAF.
- These findings challenge the previously suggested anticancer role of alk-SMase in the colon.

