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Preparing a Mice Model of Severe Acute Pancreatitis via a Combination of Caerulein and Lipopolysaccharide Intraperitoneal Injection
Published on: May 10, 2024
Lower Nr5a2 Level Downregulates the β-Catenin and TCF-4 Expression in Caerulein-Induced Pancreatic Inflammation
Ya Mei Sun1,2, Shuai Zheng1,2, Xue Chen1,2
1Department of Gastroenterology, Beijing Anzhen Hospital, Capital Medical University, Beijing, China.
Abstract:
Nuclear receptor subfamily 5 group A member 2 (Nr5a2) is widely involved in the physiological and pathological processes of the pancreas. However, the cytological and molecular evidence regarding how Nr5a2 implicated in acute pancreatitis (AP) remains insufficient. Here, we explored this problem by using cellular AP model in both normal and Nr5a2 silenced AR42J pancreatic acinar cells. An in vitro cellular model of AP was established by stimulating AR42J cells with caerulein (CAE) for 24 h. Reduced Nr5a2 expression was observed in the CAE-treated cells. Nr5a2 silencing led to AP-like inflammation, with increased interleukin (IL)-1β, IL-6, and tumor necrosis factor (TNF)-α mRNA levels. In the cellular AP model, Nr5a2 silencing further increased IL-1β, IL-6, and TNF-α mRNA levels, as well as amylase activity. In addition, we found that Nr5a2 silencing did not affect IL-10 level under physiological conditions but inhibited the anti-inflammatory response of IL-10 in AP model. Moreover, in CAE-induced pancreatic inflammation, Nr5a2 silencing increased the apoptosis and necrosis of acinar cells and inhibited the proliferation of acinar cells, which has not been shown previously. Further experiments showed, for the first time, that Nr5a2 silencing downregulated the expression of β-catenin and its downstream target gene T-cell factor (TCF)-4 in the cellular AP model but increased the expression of nuclear factor (NF)-κB. In conclusion, in CAE-induced pancreatic inflammation, lower Nr5a2 level leads to downregulation of β-catenin and its downstream target gene TCF-4 and upregulation of NF-κB, which exacerbates the inflammatory response and cell damage and inhibits the proliferation and regeneration of acinar cells.
Insights
Nuclear receptor subfamily 5 group A member 2 (Nr5a2) reduction worsens acute pancreatitis (AP) by increasing inflammation and cell damage. Lower Nr5a2 impairs pancreatic acinar cell regeneration and promotes AP progression.
Area of Science:
- Gastroenterology and Hepatology
- Molecular Biology
- Cell Biology
Background:
- Nuclear receptor subfamily 5 group A member 2 (Nr5a2) plays a role in pancreatic function.
- Evidence linking Nr5a2 to acute pancreatitis (AP) pathogenesis is limited.
Purpose of the Study:
- To investigate the role of Nr5a2 in the development of acute pancreatitis (AP).
- To explore the molecular mechanisms by which Nr5a2 influences pancreatic acinar cell response to injury.
Main Methods:
- An in vitro cellular model of AP was established using AR42J pancreatic acinar cells stimulated with caerulein (CAE).
- Nr5a2 expression was silenced in AR42J cells.
- Levels of inflammatory cytokines (IL-1β, IL-6, TNF-α, IL-10), amylase activity, cell apoptosis, necrosis, and proliferation were assessed.
- Expression of β-catenin, TCF-4, and NF-κB was analyzed.
Main Results:
- Reduced Nr5a2 expression was observed in CAE-treated cells and exacerbated AP-like inflammation.
- Nr5a2 silencing increased pro-inflammatory cytokine mRNA levels (IL-1β, IL-6, TNF-α) and amylase activity.
- Nr5a2 silencing inhibited the anti-inflammatory IL-10 response in the AP model.
- Nr5a2 silencing increased acinar cell apoptosis and necrosis while inhibiting proliferation.
- Nr5a2 silencing downregulated β-catenin and TCF-4 but upregulated NF-κB expression.
Conclusions:
- Lower Nr5a2 levels exacerbate caerulein-induced pancreatic inflammation and cell damage.
- Nr5a2 downregulation impairs pancreatic acinar cell regeneration by affecting β-catenin/TCF-4 and NF-κB pathways.
- Nr5a2 is a critical factor in maintaining pancreatic homeostasis and its reduction contributes to AP pathogenesis.
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