Hydrogen alleviated organ injury and dysfunction in sepsis: The role of cross-talk between autophagy and endoplasmic reticulum stress: Experimental research

被引:35
作者
Chen, Hong-guang [1 ,2 ]
Han, Huan-zhi [3 ]
Li, Yuan [4 ]
Yu, Yong-hao [1 ,2 ]
Xie, Ke-liang [1 ,2 ]
机构
[1] Tianjin Med Univ Gen Hosp, Dept Anesthesiol, Tianjin 300052, Peoples R China
[2] Tianjin Res Inst Anesthesiol, Tianjin 300052, Peoples R China
[3] Peoples Hosp Dezhou, Dept Anesthesiol, Dezhou 253017, Peoples R China
[4] Tianjin Med Univ Canc Inst & Hosp, Natl Clin Res Ctr Canc, Dept Anesthesiol, Tianjin 300060, Peoples R China
基金
中国国家自然科学基金;
关键词
Sepsis; Autophagy; Endoplasmic reticulum stress; Hydrogen; ISCHEMIA-REPERFUSION INJURY; RICH WATER PROTECTS; ACUTE KIDNEY INJURY; ER STRESS; POLYMICROBIAL SEPSIS; INCREASES SURVIVAL; INDUCED APOPTOSIS; OXIDATIVE STRESS; CECAL LIGATION; LUNG INJURY;
D O I
10.1016/j.intimp.2019.106049
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Aims: Sepsis is defined as a life-threatening organ dysfunction that is caused by a dysregulated host response to infection. Although much progress has been made in understanding the pathophysiology of sepsis, further discussion and study of the detailed therapeutic mechanisms are needed. Autophagy and endoplasmic reticulum stress are two pathways of the complicated regulatory network of sepsis. Herein, we focus on the cellular mechanism in which autophagy and endoplasmic reticulum stress participate in hydrogen (H-2)-protected sepsis-induced organ injury. Materials and methods: Male C57BL/6 mice were randomly divided into the following groups: control group, cecal ligation puncture (CLP) group, CLP + tunicamycin(TM) group, CLP + 4-phenyl butyric acid (4-PBA) group, CLP + rapamycin (Rap) group, CLP + 3-methyladenine (3-MA) group, CLP + H-2 group, CLP + H-2 + 3-MA group, and CLP + H-2 + TM group. After the experiment was completed, autophagosome was detected by transmission electron microscopy; protein PKR-like ER kinase (PERK), p-PERK, Eukaryotic translation initiation factor-2 alpha (eIF2 alpha), p-eIF2 alpha, inositol-requiring enzyme1 alpha(IRE1 alpha), C/EBP homologous protein(CHOP), activating transcription factor(ATF), XBP-1, microtubule-associated protein 1 light(LC3), Beclin1, PTEN-induced putative kinase 1(PINK1), Parkin, and p65 subunit of Nuclear factor kappa B(NF-kappa B) were measured by Western blot; myeloperoxidase(MPO) activity in lung, bronchoalveolar lavage(BAL) total protein, lung wet-to-dry(W/D) ratio, serum biochemical indicators, 7-day survival rate, and pathological injury scores of lung, liver, and kidney were tested; and cytokines tumor necrosis factor-alpha(TNF-alpha), Interleukin(IL)-1 beta, and IL-6 and high mobility group box protein (HMGB)1 were detected by enzyme-linked immunosorbent assay(ELISA). Results: We demonstrated that sepsis induced endoplasmic reticulum stress. Moreover, it was found that an increase in endoplasmic reticulum impaired autophagy activity in sepsis, and the absence of endoplasmic reticulum stress attenuated tissue histological injury and dysfunction of lung, liver, and kidney in septic mice. Intriguingly, hydrogen alleviated the endoplasmic reticulum stress via the autophagy pathway and also mitigated inflammation and organ injury. Conclusion: Hydrogen provided protection from organ injury induced by sepsis via autophagy activation and endoplasmic reticulum stress pathway inactivation.
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收藏
页数:12
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