Changes in Mitochondria-Related Gene Expression upon Acupuncture at LR3 in the D-Galactosamine-Induced Liver Damage Rat Model

Author:

Lee Yu-Mi1,Choi Dong-Hee2,Cheon Min-Woo3,Kim Jae Gwan1ORCID,Kim Jeong-Sang2,Shin Myung-Geun4,Kim Hye-Ran2ORCID,Youn Daehwan2ORCID

Affiliation:

1. Department of Biomedical Science and Engineering, Institute of Integrated Technology, Gwangju Institute of Science and Technology(GIST), Gwangju, Republic of Korea

2. Department of Korean Medicine, School of Dongshin University, Naju, Jeollanam-do 58245, Republic of Korea

3. Department of Health Administration, Dongshin University, Naju, Jeollanam-do 58245, Republic of Korea

4. Department of Laboratory Medicine, Chonnam National University Medical School and Chonnam National University Hwasun Hospital, Hwasun, Republic of Korea

Abstract

Hepatic diseases, such as hepatonecrosis, hepatitis, and hepatocirrhosis, are associated with mitochondrial dysfunction and increased reactive oxygen species generation and inflammation, ultimately leading to liver failure. In this study, we examined if acupuncture at LR3 can affect mitochondria-related gene expression in a liver damage model of experimentally induced acute liver failure (ALF). ALF was induced by the intraperitoneal injection of D-galactosamine (D-GalN) in experimental rats, who then received either sham (ALF), manual acupuncture (MA), electroacupuncture (EA), or silymarin (PC, positive control) treatment. Liver tissues were extracted from experimental and untreated control rats for histopathological analysis and expression profiling of genes involved in mitochondrial function. Of the 168 mitochondria-related genes profiled, two genes belonging to the solute-carrier transporter family (Slc25a15 and Slc25a25) and Ndufb7 were upregulated. Gamma-glutamylcysteine synthetase was more downregulated in MA than ALF. Furthermore, MA reversed D-GalN-induced inflammatory cell infiltration, destruction of hepatic cell plates, and increase in the levels of the proinflammatory cytokine TNF-α. MA at LR3 can reduce the risk of D-GalN-induced ALF by inducing the expression of metabolic and inflammation-related genes and regulating proinflammatory factor production in hepatic mitochondria.

Funder

National Research Foundation of Korea

Publisher

Hindawi Limited

Subject

Complementary and alternative medicine

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