Role of ferroptosis in lung injury in a rat model of autologous orthotopic liver transplantation
10.3760/cma.j.cn131073.20221009.00322
- VernacularTitle:铁死亡在自体原位肝移植大鼠肺损伤中的作用
- Author:
Wei WU
1
;
Xu BAO
;
Jinzhen WEI
;
Yongwang WANG
;
Gang WANG
;
Yongxing TAN
;
Wenhao BU
Author Information
1. 武汉科技大学附属华润武钢总医院麻醉科,武汉 430080
- Keywords:
Liver transplantation;
Acute lung injury;
Ferroptosis
- From:
Chinese Journal of Anesthesiology
2023;43(3):359-362
- CountryChina
- Language:Chinese
-
Abstract:
Objective:To evaluate the role of ferroptosis in lung injury in a rat model of autologous orthotopic liver transplantation.Methods:Twenty-four healthy adult SPF-grade male rats, aged 8-10 weeks, weighing 230-270 g, were divided into 3 groups ( n=8 each) using the random number table method: sham operation group (S group), autologous in situ liver transplantation group (LT group) and ferroptosis inhibitor Ferrostain-1 group (LT+ Fer-1 group). In LT group and LT+ Fer-1 group, an autologous in situ liver transplantation model was developed in anesthetized animals, and Ferrostain-1 5 mg/kg was intraperitoneally injected at 30 min before surgery in LT+ Fer-1 group. The inferior vena cava blood samples were obtained at 6 h of reperfusion, then animals were sacrificed, and lung tissues were obtained. The morphology of lung tissues was examined, and the lung injury was scored. The serum malondialdehyde (MDA) concentration and contents of MDA, reduced glutathione (GSH), glutathione peroxidase4 (GPX4), and Fe 2+ in lung tissues were measured by enzyme-linked immunosorbent assay. The expression of ferritin heavy chain 1 (FTH1) and solute carrier family 7 member 11 recombinant protein (SLC7A11) was determined by Western blot. Results:Compared with S group, the lung injury, serum MDA concentration, and contents of MDA and Fe 2+ were significantly increased, the contents of GSH and GPX4 were decreased, and the expression of FTH1 and SLC7A11 was down-regulated in LT group ( P<0.05). Compared with LT group, the lung injury, serum MDA concentration, and contents of MDA and Fe 2+ were significantly decreased, the contents of GSH and GPX4 were increased, and the expression of FTH1 and SLC7A11 was up-regulated in LT+ Fer-1 group ( P< 0.05). Conclusions:Ferroptosis is involved in the pathophysiology of lung injury in a rat model of autologous orthotopic liver transplantation.