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Updated: Jan 25, 2026

Generation of Murine Primary Colon Epithelial Monolayers from Intestinal Crypts
Published on: February 6, 2021
Serotonin synthesis protects the mouse colonic crypt from DNA damage and colorectal tumorigenesis
Juliana Y Sakita1, Michael Bader2,3,4, Emerson S Santos1
1Department of Toxicology, Bromatology, and Clinical Analysis, University of Sao Paulo, Ribeirao Preto, Brazil.
Abstract:
Serotonin (5-HT) signaling pathways are thought to be involved in colorectal tumorigenesis (CRT), but the role of 5-HT synthesis in the early steps of this process is presently unknown. In this study, we used carcinogen treatment in the tryptophan hydroxylase 1 knockout (Tph1KO) and transgenic (Tph1fl/fl VillinCre ) mouse models defective in 5-HT synthesis to investigate the early mutagenic events associated with CRT. Our observations of the colonic crypt post-treatment followed a timeline designed to understand how disruption of 5-HT synthesis affects the initial steps leading to CRT. We found Tph1KO mice had decreased development of both allograft tumors and colitis-related CRT. Interestingly, carcinogenic exposure alone induced multiple colon tumors and increased cyclooxygenase-2 (Ptgs2) expression in Tph1KO mice. Deletion of interleukin 6 (Il6) in Tph1KO mice confirmed that inflammation was a part of the process. 5-HT deficiency increased colonic DNA damage but inhibited genetic repair of specific carcinogen-related damage, leading to CRT-related inflammatory reactions and dysplasia. To validate a secondary effect of 5-HT deficiency on another DNA repair pathway, we exposed Tph1KO mice to ionizing radiation and found an increase in DNA damage associated with reduced levels of ataxia telangiectasia and Rad3 related (Atr) gene expression in colonocytes. Restoring 5-HT levels with 5-hydroxytryptophan treatment decreased levels of DNA damage and increased Atr expression. Analysis of Tph1fl/fl VillinCre mice with intestine-specific loss of 5-HT synthesis confirmed that DNA repair was tissue specific. In this study, we report a novel protective role for 5-HT synthesis that promotes DNA repair activity during the early stages of colorectal carcinogenesis. © 2019 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
Insights
Serotonin (5-HT) synthesis protects against colorectal cancer by promoting DNA repair. Its deficiency increases DNA damage and hinders repair, contributing to tumor development.
Area of Science:
- Oncology
- Molecular Biology
- Gastroenterology
Background:
- Serotonin (5-HT) signaling is implicated in colorectal tumorigenesis (CRT).
- The specific role of 5-HT synthesis in early CRT stages remains unclear.
Purpose of the Study:
- Investigate the impact of impaired 5-HT synthesis on early mutagenic events in colorectal carcinogenesis.
- Determine if 5-HT synthesis influences DNA damage and repair mechanisms in the colon.
Main Methods:
- Utilized tryptophan hydroxylase 1 knockout (Tph1KO) and transgenic (Tph1fl/fl VillinCre) mouse models with defective 5-HT synthesis.
- Administered carcinogen treatment and ionizing radiation to assess DNA damage, repair, and inflammatory markers (e.g., Ptgs2, Il6).
- Evaluated the effect of 5-hydroxytryptophan (5-HTP) treatment and intestine-specific 5-HT synthesis loss on DNA repair pathways (e.g., Atr).
Main Results:
- Tph1KO mice exhibited reduced tumor development but increased DNA damage and impaired repair of carcinogen-induced damage.
- 5-HT deficiency led to inflammation, dysplasia, and reduced expression of DNA repair genes like Atr.
- Restoring 5-HT levels or maintaining intestine-specific synthesis improved DNA repair capacity and reduced DNA damage.
Conclusions:
- 5-HT synthesis plays a novel protective role in early colorectal carcinogenesis by enhancing DNA repair.
- Disruption of 5-HT synthesis compromises DNA repair, increasing susceptibility to mutagenic events and promoting CRT.
- Targeting 5-HT synthesis pathways may offer a therapeutic strategy for preventing or treating colorectal cancer.
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