4.7 Article

Protective effect of C-phycocyanin and apo-phycocyanin subunit on programmed necrosis of GC-1 spg cells induced by H2O2

期刊

ENVIRONMENTAL TOXICOLOGY
卷 37, 期 6, 页码 1275-1287

出版社

WILEY
DOI: 10.1002/tox.23482

关键词

apo-phycocyanin subunit; C-phycocyanin; oxidative stress; programmed necrosis; ROS

资金

  1. National Natural Science Foundation [81871231]
  2. Youth Innovation and Science and Technology Plan of Universities in Shandong Province [2019KJK016]

向作者/读者索取更多资源

C-phycocyanin (C-PC) has been found to possess antioxidant properties and can protect GC-1 spg cells from oxidative stress damage induced by H2O2. This protective effect may be attributed to the antioxidation ability, reduction of ROS production, and regulation of cell necrosis signaling pathways.
C-phycocyanin (C-PC) is an effective antioxidant and has an important value in medical research. Oxidative stress is considered to be one of the main underlying mechanisms of cell death, and reducing oxidative stress is one of the strategies to enhance germ cell viability. Herein, we investigated the protective effect and the mechanism of C-PC and apo-phycocyanin subunit on oxidative stress damage induced by H2O2 in GC-1 spg cells. C-PC genes were cloned into the pGEX-4T-1 vectorand transformed into Escherichia coli BL21 to achieve the efficient expression of C-PC subunit. GC-1 spg cells were treated with 600 mu M H(2)O(2)for 24 h to establish the oxidative stress damage model. Cell viability was detected by CCK-8. The degree of oxidative stress was detected by testing Superoxide dismutase (SOD) and glutathione peroxidase (GPx) activities and glutathione (GSH) and Malondialdehyde (MDA) levels. Reactive oxygen species (ROS) was evaluated utilizingby 2', 7'-dichlorofluorescent-diacetate (DCFH-DA). Mitochondrial membrane potential was determined by JC-1. Cell necrosis rate was detected by Annexin V-FITC/PI. Expression of protein was detected by western blot. We found that C-PC and GST-CPC beta significantly inhibited H2O2-induced oxidative damage of GC-1 spg cells, improved the ability of antioxidation, reduced ROS overproduction, and mitochondrial membrane potential loss, and inhibited the RIP-1/RIP-3/ p-MLKL signaling pathway to reduce the necrosis rate. The results demonstrated that C-PC played a protective role against H2O2-induced cell damage, especially its beta subunit. This study provides a theoretical basis for C-PC as a potential protective agent of reproductive system.

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