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Rapamycin Rescues the Poor Developmental Capacity of Aged Porcine Oocytes
Seung Eun Lee, Eun‐Young Kim, Hyun Yong Choi, Jeremiah Jiman Moon, Min Jee Park, Jun Beom Lee, Chang Jin Jeong, Se‐Pill Park
Asian-Australasian Journal of Animal Sciences · 2014 · ▲ 54 citations
Deregulated nutrient-sensing
Mitochondrial dysfunction
Disabled macroautophagy
Rapamycin / mTOR inhibition
Partial reprogramming (OSK)
Cell culture / in vitro
In vitro
Abstract
Unfertilized oocytes age inevitably after ovulation, which limits their fertilizable life span and embryonic development. mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">Rapamycin(definition) affects mammalian target of rapamycin (mTOR) expression and cytoskeleton reorganization during oocyte meiotic maturation. The goal of this study was to examine the effects of rapamycin treatment on aged porcine oocytes and their in vitro development. Rapamycin treatment of aged oocytes for 24 h (68 h in vitro maturation [IVM]; 44 h+10 μM rapamycin/24 h, 47.52±5.68) or control oocytes (44 h IVM; 42.14±4.40) significantly increased the development rate and total cell number compared with untreated aged oocytes (68 h IVM, 22.04±5.68) (p<0.05). Rapamycin treatment of aged IVM oocytes for 24 h also rescued aberrant spindle organization and chromosomal misalignment, blocked the decrease in the level of phosphorylated-p44/42 mitogen-activated protein kinase (MAPK), and increased the mRNA expression of cytoplasmic maturation factor genes (MOS, BMP15, GDF9, and CCNB1) compared with untreated, 24 h-aged IVM oocytes (p<0.05). Furthermore, rapamycin treatment of aged oocytes decreased reactive oxygen species (ROS) activity and DNA fragmentation (p<0.05), and downregulated the mRNA expression of mTOR compared with control or untreated aged oocytes. By contrast, rapamycin treatment of aged oocytes increased mitochondrial localization (p<0.05) and upregulated the mRNA expression of autophagy(definition) (BECN1, ATG7, MAP1LC3B, ATG12, GABARAP, and GABARAPL1), anti-apoptosis (BCL2L1 and BIRC5; p<0.05), and development (NANOG and SOX2; p<0.05) genes, but it did not affect the mRNA expression of pro-apoptosis genes (FAS and CASP3) compared with the control. This study demonstrates that rapamycin treatment can rescue the poor developmental capacity of aged porcine oocytes.
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- 10.5713/ajas.2013.13816
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- 2026-06-13 MST
Cite this
APA
Lee, S.E., Kim, E., Choi, H.Y., Moon, J.J., Park, M.J., Lee, J.B., Jeong, C.J., & Park, S. (2014). Rapamycin Rescues the Poor Developmental Capacity of Aged Porcine Oocytes. <em>Asian-Australasian Journal of Animal Sciences</em>. https://doi.org/10.5713/ajas.2013.13816
Vancouver
Lee SE, Kim E, Choi HY, Moon JJ, Park MJ, Lee JB, et al. Rapamycin Rescues the Poor Developmental Capacity of Aged Porcine Oocytes. Asian-Australasian Journal of Animal Sciences. 2014. doi:10.5713/ajas.2013.13816.
BibTeX
@article{seung2014Rapamy,
title = {Rapamycin Rescues the Poor Developmental Capacity of Aged Porcine Oocytes},
author = {Seung Eun Lee and Eun‐Young Kim and Hyun Yong Choi and Jeremiah Jiman Moon and Min Jee Park and Jun Beom Lee and Chang Jin Jeong and Se‐Pill Park},
journal = {Asian-Australasian Journal of Animal Sciences},
year = {2014},
doi = {10.5713/ajas.2013.13816},
}
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