Protective Effects of Let-7b on the Expression of Occludin by Targeting P38 MAPK in Preventing Intestinal Barrier Dysfunction

Zhihua Liu, Yinghai Tian, Yanqiong Jiang, Shihua Chen, Ting Liu, Mary Pat Moyer, Huanlong Qin, Xinke Zhou

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

Background/Aims: Let-7b was dramatically reduced after a dicer knockout of mice with intestinal barrier function injuries. This paper aims to investigate the molecular mechanism of let-7b by targeting p38 MAPK in preventing intestinal barrier dysfunction. Methods: A total of 186 patients were enrolled, with 93 in the control group and 93 in the PRO group. Only 158 patients completed the entire study, whereas the others either did not meet the inclusion criteria or refused to participate. To further verify the role of let-7b, intestinal epithelial conditional knockout (IKO) mice of mmu-let-7b model were established. Serum let-7b, zonulin, IL-6, and TNF-α concentrations were measured by ELISA or quantitative RT-PCR. Permeability assay was done by ussing chamber. The apoptotic cells were identified using an In Situ Cell Death Detection Kit. Protein was detected by western blot. Results: Probiotics can lower infection-related complications, as well as increase the serum and tissue let-7b levels. P38 MAPK was identified as the target of let-7b, as verified by NCM460 cells. P38 MAPK expression was increased, whereas tight-junction (TJ) proteins were significantly decreased in let-7b IKO mice (both P<0.05). Negative regulation of p38 MAPK molecular signaling pathways was involved in the protective effects of let-7b on intestinal barrier function. Conclusion: Let-7b was identified as a novel diagnosis biomarker or a potential treatment target for preventing intestinal barrier dysfunction. .

Original languageEnglish (US)
Pages (from-to)343-355
Number of pages13
JournalCellular Physiology and Biochemistry
Volume45
Issue number1
DOIs
StatePublished - Feb 1 2018

Keywords

  • Intestinal barrier
  • Intestinal conditional knockout mice
  • Let-7b
  • MAPK
  • Occludin

ASJC Scopus subject areas

  • General Medicine

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