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The Dimethylnitrosamine Induced Liver Fibrosis Model in the Rat
Published on: June 17, 2016
PM2.5 induces liver fibrosis via triggering ROS-mediated mitophagy
Yi-Ning Qiu1, Guo-Hui Wang2, Fen Zhou1
1Department of Pediatrics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, PR China.
Background:
The increasing epidemic of fine particulate matter (PM2.5) is a serious threat to human health. It induces the occurrence of liver fibrosis, but its molecular mechanism is not yet clear. The molecular mechanisms of PM2.5 inducing liver fibrosis were investigated in this study.
Methods:
The cell viability of LX-2 cells and primary hepatic stellate cells (HSCs) was detected using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay. In vitro enzyme-linked immune sorbent assay (ELISA) kits were used to detect the concentrations of antioxidant enzymes and reactive oxygen species (ROS). The mitochondrial transmembrane potential (MTP) was determined by JC-1 dye. Knockdown of Parkin was carried out by Parkin-specific siRNA transfection. Relative mRNA and protein expressions were evaluated by qRT-PCR, Western blotting, and immunofluorescence analysis.
Results:
PM2.5 activated LX-2 cells and primary HSCs, inducing the liver fibrosis along with down-regulation of the gelatinases MMP-2, and up-regulation of myofibroblast markers collagen type I and α-SMA. The levels of ROS and reactive nitrogen species (RNS), as well as the lipid peroxidation marker malondialdehyde (MDA) were significantly up-regulated in LX-2 cells and primary HSCs treated with PM2.5. Also, the enzymatic antioxidants levels were disturbed by PM2.5. Furthermore, PM2.5 decreased the MTP, releasing cytochrome c from the mitochondria to the cytosol. The dynamics of mitochondria were regulated by PM2.5 via facilitating mitochondrial fission. The excess ROS induced by PM2.5 triggered the mitophagy by activating PINK1/Parkin pathway, and inhibition of mitophagy induced by PM2.5 diminished the liver fibrosis.
Conclusion:
PM2.5 may induce mitophagy via activating PINK1/Parking signal pathway by increasing ROS, thereby activating HSCs and causing liver fibrosis.
Insights
Fine particulate matter (PM2.5) exposure triggers liver fibrosis by activating hepatic stellate cells through increased reactive oxygen species (ROS) and mitophagy via the PINK1/Parkin pathway. Inhibiting mitophagy reduces PM2.5-induced liver fibrosis.
Area of Science:
- Environmental Health
- Toxicology
- Cell Biology
Background:
- Fine particulate matter (PM2.5) is a growing environmental hazard linked to human health issues.
- PM2.5 exposure is associated with liver fibrosis, but the underlying molecular mechanisms remain unclear.
- This study investigates the molecular pathways through which PM2.5 induces liver fibrosis.
Purpose of the Study:
- To elucidate the molecular mechanisms by which PM2.5 induces liver fibrosis.
- To investigate the role of reactive oxygen species (ROS) and mitochondrial dysfunction in PM2.5-induced liver fibrosis.
- To explore the involvement of the PINK1/Parkin pathway and mitophagy in the pathogenesis of PM2.5-induced liver fibrosis.
Main Methods:
- Cell viability assays (MTT) were performed on LX-2 cells and primary hepatic stellate cells (HSCs).
- Enzyme-linked immune sorbent assay (ELISA) measured ROS and antioxidant enzyme levels.
- Mitochondrial transmembrane potential (MTP), gene and protein expression (qRT-PCR, Western blotting, immunofluorescence), and Parkin knockdown were analyzed.
Main Results:
- PM2.5 activated LX-2 cells and HSCs, promoting liver fibrosis markers (collagen type I, α-SMA) and reducing gelatinases (MMP-2).
- PM2.5 significantly increased ROS, reactive nitrogen species (RNS), and malondialdehyde (MDA), while disrupting antioxidant enzyme levels.
- PM2.5 decreased MTP, induced mitochondrial fission, and triggered mitophagy via the PINK1/Parkin pathway, which was found to diminish liver fibrosis upon inhibition.
Conclusions:
- PM2.5 induces liver fibrosis by increasing ROS, which activates the PINK1/Parkin pathway and promotes mitophagy.
- Mitophagy, triggered by PM2.5-induced ROS, plays a crucial role in activating HSCs and driving liver fibrosis.
- Targeting mitophagy may offer a therapeutic strategy for mitigating PM2.5-induced liver fibrosis.
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