Induction of autophagy protects against extreme hypoxia-induced damage in porcine embryo

Author:

Lee Mun-Hyeong12,Jeong Pil-Soo12,Sim Bo-Woong1,Kang Hyo-Gu13,Kim Min Ju14,Lee Sanghoon1,Yoon Seung-Bin5,Kang Philyong1,Park Young-Ho1,Kim Ji-Su5,Song Bong-Seok1,Koo Deog-Bon2,Kim Sun-Uk16

Affiliation:

1. 1Futuristic Animal Resource & Research Center (FARRC), Korea Research Institute of Bioscience and Biotechnology (KRIBB), Chungcheongbuk-do, Republic of Korea

2. 2Department of Biotechnology, College of Engineering, Daegu University, Jillyang, Gyeongsan, Gyeongsangbuk-do, Republic of Korea

3. 3Department of Animal Science and Biotechnology, College of Agriculture and Life Science, Chungnam National University, Daejeon, Republic of Korea

4. 4Department of Animal Science, College of Natural Resources & Life Science, Pusan National University, Samrangjin-ro, Samrangjin-eup, Miryang, Gyeongsangnam-do, Republic of Korea

5. 5Primate Resource Center, Korea Research Institute of Bioscience and Biotechnology, Jeollabuk-do, Republic of Korea

6. 6Department of Functional Genomics, University of Science and Technology, Daejeon, Republic of Korea

Abstract

In the mammalian female reproductive tract, physiological oxygen tension is lower than that of the atmosphere. Therefore, to mimic in vivo conditions during in vitro culture (IVC) of mammalian early embryos, 5% oxygen has been extensively used instead of 20%. However, the potential effect of hypoxia on the yield of early embryos with high developmental competence remains unknown or controversial, especially in pigs. In the present study, we examined the effects of low oxygen tension under different oxygen tension levels on early developmental competence of parthenogenetically activated (PA) and in vitro-fertilized (IVF) porcine embryos. Unlike the 5% and 20% oxygen groups, exposure of PA embryos to 1% oxygen tension, especially in early-phase IVC (0–2 days), greatly decreased several developmental competence parameters including blastocyst formation rate, blastocyst size, total cell number, inner cell mass (ICM) to trophectoderm (TE) ratio, and cellular survival rate. In contrast, 1% oxygen tension did not affect developmental parameters during the middle (2–4 days) and late phases (4–6 days) of IVC. Interestingly, induction of autophagy by rapamycin treatment markedly restored the developmental parameters of PA and IVF embryos cultured with 1% oxygen tension during early-phase IVC, to meet the levels of the other groups. Together, these results suggest that the early development of porcine embryos depends on crosstalk between oxygen tension and autophagy. Future studies of this relationship should explore the developmental events governing early embryonic development to produce embryos with high developmental competence in vitro.

Publisher

Bioscientifica

Subject

Cell Biology,Obstetrics and Gynecology,Endocrinology,Embryology,Reproductive Medicine

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