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March 27, 2026Shock0 citations

The role of KLF4 in LPS-induced intestinal epithelial cell injury through the miR-1306-5p/HIPK2 signaling axis

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ZJZong-Qi JiangBHBin HanLHLibo He

Key Result

KLF4 overexpression protects against LPS-induced intestinal epithelial cell injury, increasing viability and reducing apoptosis, by suppressing miR-1306-5p to promote HIPK2 expression.

Key Points

  • The research aims to explore how KLF4 affects intestinal cell injury caused by LPS and its underlying mechanisms.
  • Used human colonic mucosal epithelial cell line to model intestinal injury with LPS.
  • Conducted real-time quantitative PCR and Western blot to assess expression levels of KLF4, miR-1306-5p, and HIPK2.
  • Measured cell injury, apoptosis, and the levels of Occludin and ZO-1 for integrity evaluation.
  • Analyzed KLF4 binding to the miR-1306-5p promoter and its interaction with HIPK2.
  • KLF4 and HIPK2 were downregulated while miR-1306-5p was upregulated in LPS-treated cells.
  • Overexpression of KLF4 improved cell viability and lessened apoptosis in LPS-treated cells.
  • KLF4 binds to the miR-1306-5p promoter, reducing its expression and enhancing HIPK2 expression.
  • Suppressing HIPK2 or overexpressing miR-1306-5p counteracted KLF4's protective effects on cell injury.

Structured PICO

Does KLF4 overexpression reduce LPS-induced intestinal epithelial cell injury?

P
Population
Human colonic mucosal epithelial cell line treated with lipopolysaccharide (LPS) to establish a model of intestinal epithelial injury
I
Intervention
Overexpression of KLF4
C
Comparator
LPS-treated cells without KLF4 overexpression
O
Outcome
Cell injury, apoptosis, and cell viabilitysurrogate

KLF4 protects against LPS-induced intestinal epithelial cell injury by regulating the miR-1306-5p/HIPK2 signaling axis.

Abstract

Sepsis-induced acute intestinal cell injury disrupts the normal barrier function of the intestine and leads to systemic inflammation and organ dysfunction. This study aims to investigate the molecular mechanism of Kruppel-like factor 4 (KLF4) in lipopolysaccharide (LPS)-induced intestinal epithelial cell injury. Human colonic mucosal epithelial cell line was treated with LPS to establish a model of intestinal epithelial injury. Real-time quantitative polymerase chain reaction and Western blot assay were performed to detect the expression of KLF4/microRNA (miR)-1306-5p/homeodomain interacting protein kinase 2 (HIPK2). Cell injury and apoptosis were detected. The levels of Occludin and ZO-1 were measured. The permeability was evaluated. The binding between KLF4 and the miR-1306-5p promoter, and between miR-1306-5p and HIPK2 was analyzed. The role of the miR-1306-5p/HIPK2 axis in cells was demonstrated by co-experiments. KLF4 and HIPK2 were downregulated, while miR-1306-5p was upregulated in LPS-treated cells. Overexpression of KLF4 increased cell viability and reduced apoptosis. Mechanistically, KLF4 could bind to the miR-1306-5p promoter, suppressing miR-1306-5p expression and thereby promoting HIPK2 expression. Overexpression of miR-1306-5p or downregulation of HIPK2 attenuated the protective effect of KLF4 overexpression on LPS-induced intestinal epithelial cell injury. In conclusion, KLF4 inhibits LPS-induced intestinal epithelial cell injury through the miR-1306-5p/HIPK2 axis.

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Cite This Study

Jiang et al. (2026) studied this question. KLF4 overexpression protects against LPS-induced intestinal epithelial cell injury, increasing viability and reducing apoptosis, by suppressing miR-1306-5p to promote HIPK2 expression.

synapsesocial.com/papers/69c620ab15a0a509bde193fdhttps://doi.org/10.1097/shk.0000000000002734
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