Rhaponticin alleviates pancreatic acinar cell necrosis by attenuating oxidative stress via modulation of the HIF-1α signaling pathway

  • Redox Rep. 2026 Dec 31;31(1):2663628. doi: 10.1080/13510002.2026.2663628.
Xinyue Xie  1  2 Pei Yang  2  3 Shuai Wang  4  5 Xingmeng Xu  1  2 Liuhui Wang  1  2 Pin Li  1  2 Guotao Lu  1  2 Weiwei Chen  1  2 Runfeng Sun  6 Jingjing Zhang  1  2 Zhihao Wang  1  2
Affiliations
  • 1. The First Clinical Medical School of Yangzhou University, Faculty of Medicine, Yangzhou University, Yangzhou, China.
  • 2. Yangzhou Key Laboratory of Pancreatic Disease, Institute of Digestive Diseases, The Affiliated Hospital of Yangzhou University, Yangzhou University, Yangzhou, China.
  • 3. Department of Traditional Chinese Medicine, The Affiliated Hospital of Yangzhou University, Yangzhou, China.
  • 4. Department of Gastroenterology, Huai'an Hospital Affiliated to Yangzhou University (The Fifth People's Hospital of Huai'an), Huai'an, China.
  • 5. Yangzhou University Huai'an Medical Collaborative Innovation Center, Huai'an, China.
  • 6. Department of Cardiology, Donghai County People's Hospital, Lianyungang, China.
Abstract

Objectives: This study investigated the protective effects and mechanisms of rhaponticin (Rha) against acinar cell injury in acute pancreatitis (AP).

Methods: Pancreatic acinar cell injury was induced using multiple in vitro and in vivo AP models. The mitochondrial function, necrosis, and oxidative stress were assessed. Network pharmacology and molecular docking were applied to predict potential molecular targets, which were subsequently validated experimentally. The involvement of hypoxia-inducible factor 1-alpha (HIF-1α) signaling and necroptosis-related proteins, including receptor-interacting protein kinase 3 (RIP3) and phosphorylated Mixed Lineage Kinase domain-like protein (p-MLKL), was further explored. Both pharmacological inhibition and siRNA-mediated knockdown were employed to verify the target specificity of Rha.

Results: Rha treatment significantly preserved mitochondrial function, reduced ROS, and alleviated pancreatic injury. Network pharmacology and molecular dockingresults identified HIF -1a as the key target of Rha. Consistently, Rha treatment markedly downregulated HIF-1α expression and inhibited Necroptosis by suppressing the activation of RIP3 and p-MLKL. Notably, neither pharmacological inhibition nor siRNA-mediated knockdown of HIF-1α produced additional protective effects in the presence of Rha, indicating the involvement of HIF-1α in mediating its actions.

Conclusion: Rha effectively attenuates acinar cell necrosis and oxidative via the HIF-1α-mediated Necroptosis pathway, highlighting Rha as a promising therapeutic candidate for AP.

Keywords
HIF-1α; Rhaponticin; acinar cell; acute pancreatitis; mitochondrial dysfunction; necroptosis; oxidative stress; pancreatic necrosis.
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