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Published on: April 1, 2021
CDX2 expression is progressively decreased in human gastric intestinal metaplasia, dysplasia and cancer
Abstract:
Intestinal metaplasia is a key event in multistep gastric carcinogenesis. CDX2, a master regulator of intestinal phenotype, was shown to play a tumor-suppressive role in colon cancer. However, it was reported to be expressed in nearly all gastric intestinal metaplasia and many gastric cancers. As CDX2 is differentially expressed in normal stomach and intestine, we sought to relate the CDX2 expression to gastrointestinal differentiation along gastric carcinogenesis. The expression of CDX2 protein in gastric intestinal metaplasia, dysplasia and cancer was examined and related to their gastrointestinal differentiation. CDX2 expression was significantly decreased in incomplete intestinal metaplasia, which expresses both gastric mucins (MUC5AC and MUC6) and intestinal mucin (MUC2), compared with complete intestinal metaplasia, which expresses intestinal mucin (MUC2) only. Although incomplete intestinal metaplasia morphologically resembles colon, its CDX2 expression was apparently lower than that in the normal colon. Moreover, CDX2 expression was progressively reduced in gastric dysplasia and cancer. The CDX2 expression in gastric cancer was also inversely correlated with the expression of gastric mucins. As incomplete intestinal metaplasia is associated with higher risk of gastric cancer, its lower CDX2 expression compared with that in complete intestinal metaplasia and normal colon epithelium resolved the current contradiction between the tumor-suppressive role of CDX2 in the colon and the high prevalence of CDX2 in intestinal metaplasia. Further decrease of CDX2 expression in gastric dysplasia and cancer suggests that CDX2 plays a similar anticarcinogenic role in intestinal metaplasia as it does in colon. Intestinal metaplasia or dysplasia with low expression of CDX2 may serve as predictive markers for gastric cancer.
Insights
CDX2 expression decreases during gastric carcinogenesis, with lower levels in incomplete intestinal metaplasia and gastric cancer. This suggests CDX2 acts as a tumor suppressor, and low CDX2 may predict gastric cancer risk.
Area of Science:
- Gastroenterology and Oncology
- Molecular Biology and Genetics
Background:
- Intestinal metaplasia is a precursor to gastric cancer.
- CDX2 is crucial for intestinal development and acts as a tumor suppressor in colon cancer.
- CDX2 expression is high in gastric intestinal metaplasia, creating a paradox with its known role.
Purpose of the Study:
- To investigate the role of CDX2 expression in gastric carcinogenesis.
- To correlate CDX2 levels with gastrointestinal differentiation in metaplasia, dysplasia, and cancer.
- To resolve the apparent contradiction of high CDX2 in metaplasia despite its tumor-suppressive function.
Main Methods:
- Examined CDX2 protein expression in gastric intestinal metaplasia, dysplasia, and cancer tissues.
- Related CDX2 expression to mucin profiles (MUC5AC, MUC6, MUC2) and histological differentiation.
- Compared CDX2 levels with normal colon epithelium.
Main Results:
- CDX2 expression was lower in incomplete intestinal metaplasia (gastric and intestinal mucins) than complete intestinal metaplasia (intestinal mucin only).
- Incomplete intestinal metaplasia showed lower CDX2 than normal colon epithelium.
- CDX2 expression progressively decreased in gastric dysplasia and cancer, inversely correlating with gastric mucin expression.
Conclusions:
- Reduced CDX2 in incomplete intestinal metaplasia explains its higher gastric cancer risk and resolves the CDX2 paradox.
- Decreasing CDX2 in dysplasia and cancer suggests an anticarcinogenic role similar to colon cancer.
- Low CDX2 expression in intestinal metaplasia or dysplasia may predict gastric cancer development.
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