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Published on: May 21, 2018
MEG3 Alleviated LPS-Induced Intestinal Injury in Sepsis by Modulating miR-129-5p and Surfactant Protein D
Xianjin Du1, Dan Tian1, Jie Wei1
1Department of Emergency, Renmin Hospital of Wuhan University, Hubei 430060, China.
Abstract:
Sepsis and intestinal injury triggered by sepsis are common in intensive care units, which can contribute to a high mortality. lncRNAs can modulate gene expression, and they are closely involved in multiple diseases, including sepsis. In our present study, we investigated the biological function of MEG3 in sepsis, especially during the intestinal injury. Currently, we observed that in LPS-induced sepsis mouse models, the intestinal injury was triggered. Meanwhile, we reported that MEG3 was greatly decreased in vivo, with an increase of miR-129-5p and inhibition of SP-D. Then, MEG3 was overexpressed, and we found that its overexpression repressed the intestinal injury via downregulating miR-129-5p in sepsis mice. Moreover, TNF-α and IL-6 expression was elevated in intestinal tissues compared to the control groups. MEG3 restrained the activation of TNF-α and IL-6, in sepsis models. Subsequently, to induce the inflammatory injury of sepsis, human colorectal Caco2 cells were treated with 10 ng/ml LPS. 10 ng/ml LPS significantly inhibited Caco2 cell proliferation and increased the apoptosis. Additionally, MEG3 was decreased whereas miR-129-5p was obviously increased in Caco2 cells incubated with LPS. Interestingly, we showed that MEG3 repressed cell apoptosis partly and enhanced Caco2 cell proliferation. miR-129-5p overexpression could reverse the effect of MEG3 in vitro. Previously, we proved SP-D was reduced in sepsis and it depressed the intestinal injury in vivo. Finally, the correlation among MEG3, miR-129-5p, and SP-D was predicted and confirmed in our investigation. These findings indicated that MEG3 might be a potential target for intestinal damage caused by sepsis via regulating miR-129-5p and SP-D.
Insights
Long non-coding RNA MEG3 protects against sepsis-induced intestinal injury by downregulating miR-129-5p and increasing SP-D. This finding offers a potential therapeutic target for sepsis complications.
Area of Science:
- Molecular Biology
- Immunology
- Gastroenterology
Background:
- Sepsis and associated intestinal injury are critical challenges in intensive care units, leading to high mortality.
- Long non-coding RNAs (lncRNAs) play crucial roles in regulating gene expression and are implicated in various diseases, including sepsis.
Purpose of the Study:
- To investigate the role of MEG3 in sepsis-induced intestinal injury.
- To elucidate the underlying molecular mechanisms involving miR-129-5p and SP-D.
Main Methods:
- Sepsis mouse models induced by lipopolysaccharide (LPS).
- Overexpression of MEG3 in vivo and in vitro (Caco2 cells).
- Assessment of intestinal injury, cell proliferation, apoptosis, and inflammatory markers (TNF-α, IL-6).
- Analysis of MEG3, miR-129-5p, and SP-D expression and their correlations.
Main Results:
- MEG3 expression was decreased, while miR-129-5p and inflammatory markers (TNF-α, IL-6) were increased in sepsis models.
- MEG3 overexpression repressed intestinal injury, reduced apoptosis, and enhanced proliferation in LPS-treated mice and Caco2 cells.
- MEG3's effects were partly mediated by downregulating miR-129-5p, and its correlation with SP-D was confirmed.
Conclusions:
- MEG3 acts as a protective factor against sepsis-induced intestinal damage.
- MEG3 regulates intestinal injury by modulating the miR-129-5p/SP-D axis.
- MEG3 represents a potential therapeutic target for mitigating intestinal damage in sepsis.

