Chlorogenic acid improves the development of porcine parthenogenetic embryos by regulating oxidative stress and ameliorating mitochondrial function

Author:

Qu He‐Xuan1,Wang Yan‐Qiu1,Dong Yan‐Wei1,Qi Jia‐Jia1,Wei Hua‐Kai1,Zhang Yan2,Sun Hao1,Sun Bo‐Xing1,Liang Shuang1ORCID

Affiliation:

1. Department of Animals Sciences, College of Animal Sciences Jilin University Changchun China

2. College of Animal Science and Technology Jilin Agricultural Science and Technology University Jilin China

Abstract

AbstractChlorogenic acid (CGA) is an effective phenolic antioxidant that can scavenge hydroxyl radicals and superoxide anions. Herein, the protective effects and mechanisms leading to CGA‐induced porcine parthenogenetic activation (PA) in early‐stage embryos were investigated. Our results showed that 50 μM CGA treatment during the in vitro culture (IVC) period significantly increased the cleavage and blastocyst formation rates and improved the blastocyst quality of porcine early‐stage embryos derived from PAs. Then, genes related to zygotic genome activation (ZGA) were identified and investigated, revealing that CGA can promote ZGA in porcine PA early‐stage embryos. Further analysis revealed that CGA treatment during the IVC period decreased the abundance of reactive oxygen species (ROS), increased the abundance of glutathione and enhanced the activity of catalase and superoxide dismutase in porcine PA early‐stage embryos. Mitochondrial function analysis revealed that CGA increased mitochondrial membrane potential and ATP levels and upregulated the mitochondrial homeostasis‐related gene NRF‐1 in porcine PA early‐stage embryos. In summary, our results suggest that CGA treatment during the IVC period helps porcine PA early‐stage embryos by regulating oxidative stress and improving mitochondrial function.

Funder

Jilin Provincial Scientific and Technological Development Program

Publisher

Wiley

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