Roles of adenosine deaminase RNA-specific adenosine deaminase 1 and Caveolin-1 in sepsis-related liver injury and the mechanism
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Department of Burns and Plastic Surgery, the Third Xiangya Hospital, Central South University, Changsha 410013, China

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R657.3

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    Abstract:

    Background and Aims The pathogenesis of sepsis-related liver injury (SRLI) remains unclear, and the inflammatory damage of bacterial lipopolysaccharides (LPS) to the hepatic endothelial cells may be an important process. Previous studies have suggested that RNA-specific adenosine deaminase 1 (ADAR1) may be involved in local and systemic inflammatory responses during endothelial stress through regulating the endothelial cell function-related protein Caveolin-1 (Cav-1). Therefore, this study was conducted as a preliminary assessment to analyze the roles of ADAR1 and Cav-1 in SRLI, so as to help find a new approach for early prevention and management of SRLI.Methods Mouse sepsis models were induced in 20 ADARl knockout mice (ADAR1ECKO) and 20 wild-type mice (ADAR1flox/flox) by injection of LPS (20 mg/kg). Ten mice in each group were sacrificed at 6 h after LPS injection, the liver tissues were harvested for histopathological observation by HE staining and the liver sinusoidal endothelial cells (LSECs) were isolated for observation of the expressions of Cav-1 and its downstream protein VE-cadherin by cellular immunofluorescence. The remaining mice in the two groups were used for survival observation. In LSECs from normal wild-type mice after ADARl siRNA transfection, the proliferative ability was determined by endothelial tube formation assay, and the expressions of the relevant downstream proteins of Cav-1 were determined by Western blot analysis.Results The results of survival observation showed that the time of death of ADAR1ECKO mice was earlier than that of ADAR1flox/flox mice, and the survival rate of ADAR1ECKO mice was lower than that of ADAR1flox/flox mice after LPS injection (both P<0.05); the results of histopathological showed that the liver injury in ADAR1ECKO was severe than that in ADAR1flox/flox mice at 6 h after LPS injection; the results of cellular immunofluorescence showed that the expressions of Cav-1 and VE-cadherin in LSECs were lower from ADAR1ECKO mice than those from ADAR1flox/flox mice. In LSECs from normal wild-type mice after ADARl siRNA transfection, the tube formation ability was decreased, and the expression of Cav-1 downstream protein VE-cadherin was down-regulated, while the expression of β-Catenin had no obvious change.Conclusion The down-regulation or functional deficiency ADAR1 can cause the aggravation of SRLI, and the mechanism is probably associated with its regulating the activity of the Cav-1/VE-cadherin pathway. Thus, activation of the ADAR1/Cav-1/VE-cadherin pathway is potentially an effective strategy for prevention and treatment of SRLI.

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YIN Chaoqi, TAO Ruyi, WANG Shaohua, CHEN Jia, TANG Fengjie, LIU Can, LIU Daisong, CHEN Shuyue, ZHOU Jianda, CHEN Fengyuan. Roles of adenosine deaminase RNA-specific adenosine deaminase 1 and Caveolin-1 in sepsis-related liver injury and the mechanism[J]. Chin J Gen Surg,2022,31(7):913-919.
DOI:10.7659/j. issn.1005-6947.2022.07.008

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History
  • Received:March 13,2022
  • Revised:June 10,2022
  • Adopted:
  • Online: July 31,2022
  • Published: