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Study 22 of 22KPV literatureCellular and molecular gastroenterology and hepatology · ObservationalHigh-impact journal2016

Critical role of PepT1 in promoting colitis-associated cancer and therapeutic benefits of the anti-inflammatory PepT1-mediated tripeptide KPV in a murine model.

The study highlights the potential role of hPepT1 in colitis-associated cancer, suggesting it may be a target for future therapeutic strategies, though findings are based on animal models.

Read at Cellular and molecular gastroenterology and hepatologyAdd to compare

Where it sits

this study against the rest of the kpv corpus
2
Preclinical
14
Observational · this one
0
Open-label
3
Randomised
3
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Summary and findings

The study evaluated the role of the human intestinal peptide transporter 1 (hPepT1) in colitis-associated cancer (CAC) using murine models. Mice with hPepT1 overexpression exhibited larger tumor sizes and increased inflammation, while PepT1 knockout (KO) mice showed decreased tumor size and inflammation. The anti-inflammatory tripeptide KPV was tested for its effects on tumorigenesis.

How much of this paper we could read: full text read (0.80). We had a clear abstract, so the summary below closely tracks the paper. What this means →
Not reported in abstract.2016

Abstract

The authors’ words, as Cellular and molecular gastroenterology and hepatology supplied them

<h4>Background and aims</h4>The human intestinal peptide transporter 1, hPepT1, is expressed in the small intestine at low levels in the healthy colon and upregulated during inflammatory bowel disease. hPepT1 plays a role in mouse colitis and human studies have demonstrated that chronic intestinal inflammation leads to colorectal cancer (colitis-associated cancer; CAC). Hence, we assessed here the role of PepT1 in CAC.<h4>Methods</h4>Mice with hPepT1 overexpression in intestinal epithelial cells (TG) or PepT1 (PepT1-KO) deletion were used and CAC was induced by AOM/DSS.<h4>Results</h4>TG mice had larger tumor sizes, increased tumor burdens, and increased intestinal inflammation compared to WT mice. Conversely, tumor number and size and intestinal inflammation were significantly decreased in PepT1-KO mice. Proliferating crypt cells were increased in TG mice and decreased in PepT1-KO mice. Analysis of human colonic biopsies revealed an increased expression of PepT1 in patients with colorectal cancer, suggesting that PepT1 might be targeted for the treatment of CAC. The use of an anti-inflammatory tripeptide KPV (Lys-Pro-Val) transported by PepT1 was able to prevent carcinogenesis in WT mice. When administered to PepT1-KO mice, KPV did not trigger any of the inhibitory effect on tumorigenesis observed in WT mice.<h4>Conclusions</h4>The observations that pepT1 was highly expressed in human colorectal tumor and that its overexpression and deletion in mice increased and decreased colitis associated tumorigenesis, respectively, suggest that PepT1 is a potential therapeutic target for the treatment of colitis associated tumorigenesis.

Background

Not reported in abstract.

Methods

Not reported in abstract.

Results

Not reported in abstract.

Interpretation

Not reported in abstract.

Key findings

  • Not reported in abstract.
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Limitations

  • Not reported in abstract.
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