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Updated: Nov 22, 2025

Preparing a Mice Model of Severe Acute Pancreatitis via a Combination of Caerulein and Lipopolysaccharide Intraperitoneal Injection
Published on: May 10, 2024
Long Non-coding RNA FENDRR Modulates Autophagy Through Epigenetic Suppression of ATG7 via Binding PRC2 in Acute
Shang-Ping Zhao1, Can Yu1, Ming-Shi Yang1
1The Third Xiangya Hospital of Central South University, No. 138, Tongzipo Road, Yuelu District, Changsha, 410013, Hunan Province, People's Republic of China.
Abstract:
Acute pancreatitis (AP) is an inflammatory, complicated pancreatic disease, carrying significant morbidity and mortality. However, the molecular and cellular mechanisms involved in AP pathogenesis remain to be elucidated. Here, we explore the role of FOXF1 adjacent non-coding developmental regulatory RNA (FENDRR) in AP progression. Caerulein with or without LPS- induced or taurolithocholic acid 3-sulfate (TLC-S)-induced AP mouse models and cell models were performed for the validation of FENDRR expression in vivo and in vitro, respectively. Histopathological examinations of pancreatic tissues were performed to evaluate the severity of AP. Transmission electron microscopy was utilized to visualize the autophagic vacuoles. siRNA specifically targeting FENDRR was further applied. Flow cytometry was employed to assess cell apoptosis. ELISA, immunoflureoscence, and western blotting analysis were also performed to determine the levels of inflammatory cytokines and autophagy activity. RNA immunoprecipitation (RIP) and chromatin immunoprecipitation (ChIP) assays were carried out to reveal the epigenetic regulation of FENDRR on ATG7. Additionally, silencing FENDRR was also verified in AP mouse models. Higher FENDRR and impaired autophagy were displayed in both AP mouse models and cell models. FENDRR knockdown dramatically attenuated caerulein- or TLC-S-induced AR42J cells apoptosis and autophagy suppression. Further mechanistic experiments implied that the action of FENDRR is moderately attributable to its repression of ATG7 via direct interaction with the epigenetic repressor PRC2. Moreover, the silencing of FENDRR significantly induced the promotion of ATG7, thus alleviating the development of AP in vivo. Our study highlights FENDRR as a novel target that may contribute to AP progression, suggesting a therapeutic target for AP treatment.
Insights
FENDRR, a non-coding RNA, promotes acute pancreatitis (AP) by suppressing autophagy and ATG7. Silencing FENDRR alleviates AP progression, identifying it as a potential therapeutic target for this inflammatory pancreatic disease.
Area of Science:
- Molecular Biology
- Genetics
- Pathology
Background:
- Acute pancreatitis (AP) is a severe inflammatory pancreatic condition with high morbidity and mortality.
- The underlying molecular mechanisms driving AP pathogenesis require further elucidation.
Purpose of the Study:
- To investigate the role of FOXF1 adjacent non-coding developmental regulatory RNA (FENDRR) in the progression of acute pancreatitis.
- To explore FENDRR's regulatory mechanism involving autophagy and ATG7 in AP.
Main Methods:
- AP mouse and cell models were induced using caerulein, LPS, or TLC-S.
- FENDRR expression, autophagy activity, and apoptosis were assessed using techniques including qPCR, Western blotting, ELISA, and flow cytometry.
- RNA immunoprecipitation (RIP) and chromatin immunoprecipitation (ChIP) assays were used to investigate FENDRR's epigenetic regulation of ATG7.
Main Results:
- FENDRR expression was elevated, and autophagy was impaired in AP models.
- FENDRR knockdown reduced apoptosis and restored autophagy in AP cells.
- FENDRR represses ATG7 expression via interaction with PRC2, and FENDRR silencing promoted ATG7, alleviating AP in vivo.
Conclusions:
- FENDRR plays a significant role in AP progression by inhibiting autophagy.
- FENDRR's repression of ATG7 is a key mechanism in AP pathogenesis.
- FENDRR represents a novel therapeutic target for managing acute pancreatitis.
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