Glycyrrhizin ameliorates impaired glucose metabolism and ovarian dysfunction in a polycystic ovary syndrome mouse model

Author:

Yang Jun-Pu1,Ullah Amin1,Su Ya-Nan1,Otoo Antonia1,Adu-Gyamfi Enoch Appiah23,Feng Qian4,Wang Ying-Xiong156,Wang Mei-Jiao156,Ding Yu-Bin178910

Affiliation:

1. Department of Obstetrics and Gynecology, Women and Children’s Hospital of Chongqing Medical University , Chongqing , China

2. Department of Genetics , Development and Cell Biology, , Ames, IA , USA

3. Iowa State University , Development and Cell Biology, , Ames, IA , USA

4. Department of Obstetrics and Gynecology, Chongqing Hospital of Traditional Chinese Medicine , Chongqing , China

5. Department of Physiology , School of Basic Medical Science, , Chongqing , China

6. Chongqing Medical University , School of Basic Medical Science, , Chongqing , China

7. Department of Toxicology , School of Public Health, , Chongqing , China

8. Chongqing Medical University , School of Public Health, , Chongqing , China

9. Department of Pharmacology , Academician Workstation, , Changsha , China

10. Changsha Medical University , Academician Workstation, , Changsha , China

Abstract

Abstract The aim of this study was to determine the impact of glycyrrhizin, an inhibitor of high mobility group box 1, on glucose metabolic disorders and ovarian dysfunction in mice with polycystic ovary syndrome. We generated a polycystic ovary syndrome mouse model by using dehydroepiandrosterone plus high-fat diet. Glycyrrhizin (100 mg/kg) was intraperitoneally injected into the polycystic ovary syndrome mice and the effects on body weight, glucose tolerance, insulin sensitivity, estrous cycle, hormone profiles, ovarian pathology, glucolipid metabolism, and some molecular mechanisms were investigated. Increased number of cystic follicles, hormonal disorders, impaired glucose tolerance, and decreased insulin sensitivity in the polycystic ovary syndrome mice were reverted by glycyrrhizin. The increased high mobility group box 1 levels in the serum and ovarian tissues of the polycystic ovary syndrome mice were also reduced by glycyrrhizin. Furthermore, increased expressions of toll-like receptor 9, myeloid differentiation factor 88, and nuclear factor kappa B as well as reduced expressions of insulin receptor, phosphorylated protein kinase B, and glucose transporter type 4 were restored by glycyrrhizin in the polycystic ovary syndrome mice. Glycyrrhizin could suppress the polycystic ovary syndrome-induced upregulation of high mobility group box 1, several inflammatory marker genes, and the toll-like receptor 9/myeloid differentiation factor 88/nuclear factor kappa B pathways, while inhibiting the insulin receptor/phosphorylated protein kinase B/glucose transporter type 4 pathways. Hence, glycyrrhizin is a promising therapeutic agent against polycystic ovary syndrome.

Funder

National Natural Science of Foundation of China

Natural Science of Foundation of Chongqing

Chongqing Health Commission and Science and Technology

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

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