Zearalenone Blocks Autophagy Flow and Induces Cell Apoptosis During Embryo Implantation in Gilts

Author:

Wu Lihang1,Duan Qianni2,Gao Dengying1,Wang Yueying3,Xue Songyi1,Li Wenchao1,Lei Minggang145

Affiliation:

1. Key Laboratory of Agricultural Animal Genetics, Breeding, and Reproduction of the Ministry of Education and Key Laboratory of Swine Genetics and Breeding of the Ministry of Agriculture, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan 430070, P. R. China

2. Department of TCM, Tongji Medical College, Institute of Integrated Traditional Chinese and Western Medicine, Tongji Hospital, Huazhong University of Science and Technology, Wuhan, Hubei 430030, P. R. China

3. Department of Reproductive Medicine, Jining First People’s Hospital, Jining 272000, P. R. China

4. National Engineering Research Center for Livestock

5. Department of Pig Production, The Cooperative Innovation Center for Sustainable Pig Production, Wuhan 430070, P. R. China

Abstract

Abstract Zearalenone (ZEA) has been proved to be toxic, particularly to the reproductive system of gilts. The effect of ZEA on gilts during embryo implantation window period is of particular interests. Here, we observed window stage dysontogenesis of gilts treated with ZEA. In endometrial tissues and cells, autophagosomes increased significantly and mitochondria were damaged with increasing ZEA concentration. Addition of autophagy inhibitor confirmed that ZEA blocks the autophagic flow in the fusion of autophagosomes and lysosomes. In conclusion, ZEA exposure during embryo implantation results in endometrium inflammation by activating autophagy while blocking autophagy flow at the same time, leading to the significant accumulation of autophagosomes. The aforementioned effects of ZEA induce the apoptosis of primary endometrial cells through the caspase3 pathway, which would break the uterus environment balance and finally lead to embryo implantation failure and dysontogenesis in gilts.

Funder

National Basic Research Program of China

National Porcine Industry Technology System

Publisher

Oxford University Press (OUP)

Subject

Toxicology

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