Enhancing antioxidant levels and mitochondrial function in porcine oocyte maturation and embryonic development through notoginsenoside R1 supplementation

Author:

He Sheng‐Yan1,Liu Wen23,Huang Chu‐Man1,Huang Hui‐Mei1,Cao Qi‐Long4,Li Yun‐Xiao4,Xu Yong‐Nan1,Kim Nam‐Hyung1ORCID,Li Ying‐Hua1ORCID

Affiliation:

1. Guangdong Provincial Key Laboratory of Large Animal Models for Biomedicine, School of Pharmacy and Food Engineering Wuyi University Jiangmen China

2. Laboratory Animal Center Southern Medical University Guangzhou China

3. Department of Animal Science Chungbuk National University Cheongju South Korea

4. Qingdao Haier Biotechnology Co., Ltd. Qingdao China

Abstract

AbstractThis study examines the impact of Notoginsenoside R1 (NGR1), a compound from Panax notoginseng, on the maturation of porcine oocytes and their embryonic development, focusing on its effects on antioxidant levels and mitochondrial function. This study demonstrates that supplementing in vitro maturation (IVM) medium with NGR1 significantly enhances several biochemical parameters. These include elevated levels of glutathione (GSH), nuclear factor erythrocyte 2‐related factor 2 (NRF2) and mRNA expression of catalase (CAT) and GPX. Concurrently, we observed a decrease in reactive oxygen species (ROS) levels and an increase in JC‐1 immunofluorescence, mitochondrial distribution, peroxisome proliferator‐activated receptor‐γ coactivator‐1α (PGC1α) and nuclear NRF2 mRNA levels. Additionally, there was an increase in ATP production and lipid droplets (LDs) immunofluorescence. These biochemical improvements correlate with enhanced embryonic outcomes, including a higher blastocyst rate, increased total cell count, enhanced proliferative capacity and elevated octamer‐binding transcription factor 4 (Oct4) and superoxide dismutase 2 (Sod2) gene expression. Furthermore, NGR1 supplementation resulted in decreased apoptosis, reduced caspase 3 (Cas3) and BCL2‐Associated X (Bax) mRNA levels and decreased glucose‐regulated protein 78 kD (GRP78) immunofluorescence in porcine oocytes undergoing in vitro maturation. These findings suggest that NGR1 plays a crucial role in promoting porcine oocyte maturation and subsequent embryonic development by providing antioxidant levels and mitochondrial protection.

Publisher

Wiley

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