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  2. Spautin-1 Ameliorates Acute Pancreatitis via Inhibiting Impaired Autophagy and Alleviating Calcium Overload

Spautin-1 Ameliorates Acute Pancreatitis via Inhibiting Impaired Autophagy and Alleviating Calcium Overload

  • Mol Med. 2016 Oct;22:643-652. doi: 10.2119/molmed.2016.00034.
Juan Xiao 1 2 Xueping Feng 1 Xiao-Ying Huang 2 Zhongshi Huang 1 2 Yanqiang Huang 1 2 Chaogan Li 1 Genliang Li 1 Song Nong 1 Ruoshi Wu 3 Yongzhi Huang 3 Xi-Dai Long 3 4
Affiliations

Affiliations

  • 1 Youjiang Medical University for Nationalities, Baise 533000, P.R.China.
  • 2 Western Guangxi Key Laboratory Cultivation Base of Microbial Infection Research.
  • 3 Department of Pathology, the Affiliated Hospital of Youjiang Medical University for Nationalities, Baise 533000, P.R.China.
  • 4 Department of Liver Surgery, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200127, P.R.China.
Abstract

Acute pancreatitis is characterized by zymogen pre-activation. Severe inflammation caused by zymogen activation can eventually lead to multiple organ dysfunctions, which contributes to the high mortality rate of severe acute pancreatitis. However, there is no specific treatment available for acute pancreatitis therapy. Here, we show that spautin-1, which effectively inhibits Autophagy flux, ameliorated the pathogenesis of acute pancreatitis induced by cerulein or L-Arginine. CaMKII phosphorylation due to cytosolic calcium oeverload was revealed in this paper. It was also demonstrated that autophagic protein aggregates degradation blockade accompanying with impaired Autophagy correlated positively to intra acinar cells digestive aymogen activation sitimulated by cerulein or L-Arginine. The role of spautin-1 in ameliorating acute pancreatitis was shown here to be associated with impaired Autophagy inhibition and CA2+ overload alleviation. We provided a promising therapy for acute pancreatitis here through targeting both impaired Autophagy and increased cytosolic calcium.

Keywords

Acute pancreatitis; Calcium overload; Cerulein; L-Arginine; impaired autophagy; spautin-1.

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