Dietary bioactive compounds modulate intestinal stem cells to alleviate colorectal lesions

The incidence of colonic lesions is increasing globally, driven by multiple factors including dietary habits, lifestyle changes, and environmental exposures. Drawing on research from major scientific databases (PubMed, ScienceDirect, ACS, and Web of Science). Evidence suggests that interactions between dietary bioactive compounds and intestinal stem cells (ISCs) play a critical role in maintaining gut homeostasis and may help improve colorectal carcinoma. This review examines the impact of different stimulants on ISCs, focusing on their regulatory mechanisms and potential implications for colorectal lesions. Available findings demonstrate that dietary compounds (e.g., polysaccharides, oligosaccharides, polyphenols, fatty acids, and micronutrients) modulate ISC differentiation and proliferation via key pathways (e.g., Wnt/Notch, JNK, JAK/STAT) that are essential for intestinal epithelial maintenance and repair. In addition, these compounds shape the gut microbiota, which in turn produces microbial structural components (e.g., LPS) and a variety of metabolites (e.g., SCFAs, bile acids, tryptophan derivatives) that further maintain the balance between ISC survival, differentiation, and tissue repair. Collectively, these findings point to the potential of dietary compounds to modulate ISCs as a strategy to alleviate colorectal lesions. However, the lack of direct human interventional data necessitates well‑designed clinical studies to bridge this gap.

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Publication Details

Journal
Critical Reviews in Food Science and Nutrition
Published
2026-09-15
DOI
https://doi.org/10.1080/10408398.2026.2731837
Primary Topic
Cancer Cells and Metastasis
Type
article
Field-Weighted Citation Impact
0.00

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article

Dietary bioactive compounds modulate intestinal stem cells to alleviate colorectal lesions

Zhenyu Wang, Ruili Pan, Xianjun Dai
Critical Reviews in Food Science and Nutrition
Cancer Cells and Metastasis
article

Dietary bioactive compounds modulate intestinal stem cells to alleviate colorectal lesions

Zhenyu Wang, Ruili Pan, Xianjun Dai
article en

Abstract

The incidence of colonic lesions is increasing globally, driven by multiple factors including dietary habits, lifestyle changes, and environmental exposures. Drawing on research from major scientific databases (PubMed, ScienceDirect, ACS, and Web of Science). Evidence suggests that interactions between dietary bioactive compounds and intestinal stem cells (ISCs) play a critical role in maintaining gut homeostasis and may help improve colorectal carcinoma. This review examines the impact of different stimulants on ISCs, focusing on their regulatory mechanisms and potential implications for colorectal lesions. Available findings demonstrate that dietary compounds (e.g., polysaccharides, oligosaccharides, polyphenols, fatty acids, and micronutrients) modulate ISC differentiation and proliferation via key pathways (e.g., Wnt/Notch, JNK, JAK/STAT) that are essential for intestinal epithelial maintenance and repair. In addition, these compounds shape the gut microbiota, which in turn produces microbial structural components (e.g., LPS) and a variety of metabolites (e.g., SCFAs, bile acids, tryptophan derivatives) that further maintain the balance between ISC survival, differentiation, and tissue repair. Collectively, these findings point to the potential of dietary compounds to modulate ISCs as a strategy to alleviate colorectal lesions. However, the lack of direct human interventional data necessitates well‑designed clinical studies to bridge this gap.

Critical Reviews in Food Science and Nutrition
ZheJiang Academy of Agricultural Sciences (CN), China Jiliang University (CN)
National Key Research and Development Program of China, Natural Science Foundation of Zhejiang Province, Fundamental Research Funds for the Provincial Universities of Zhejiang
Zero hunger
Openalex Percentile: Top 14%
Cancer Cells and Metastasis
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Dietary bioactive compounds modulate intestinal stem cells to alleviate colorectal lesions — Zhenyu Wang, Ruili Pan, et al. · Critical Reviews in Food Science and Nutrition (2026) | TGRS Research Map | TGRS