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Toxicologic Pathology|October 31, 2015
Meganucleases Revolutionize the Production of Genetically Engineered Pigs for the Study of Human DiseasesBethany K Redel, Randall S Prather
Biomolecules|May 4, 2026
The Critical Functions of FGF2, LIF and IGF1 in the Improvement of In Vitro Embryo ProductionPaula M Mangiavacchi, Kiho Lee, Bethany K Redel
Methods in Molecular Biology (Clifton, N.J.)|June 24, 2019
In Vitro Maturation, Fertilization, and Culture of Pig Oocytes and EmbryosBethany K Redel, Lee D Spate, Randall S Prather
Animal Reproduction Science|June 1, 2014
Genomic profiling to improve embryogenesis in the pigRandall S Prather, Bethany K Redel, Kristin M Whitworth, et al.
Reproduction in Domestic Animals = Zuchthygiene|October 24, 2023
Oocyte recovery after overnight ovary transport provides an alternative source of cumulus oocyte complexes that are competent to produce live pigletsLee D Spate, Jie Yin, Lauren Sammel, et al.
Molecular Reproduction and Development|March 18, 2015
PS48 can replace bovine serum albumin in pig embryo culture medium, and improve in vitro embryo development by phosphorylating AKTLee D Spate, Alana Brown, Bethany K Redel, et al.
Cells|October 23, 2021
Challenges and Considerations during In Vitro Production of Porcine EmbryosPaula R Chen, Bethany K Redel, Karl C Kerns, et al.
Biology of Reproduction|May 14, 2025
Transcriptional profiling reveals upregulation of p53 signaling in porcine embryos produced in vitro†Rylie S Noland, Bethany K Redel, Marissa G LaMartina, et al.
Molecular Reproduction and Development|January 30, 2016
Glycine supplementation in vitro enhances porcine preimplantation embryo cell number and decreases apoptosis but does not lead to live birthsBethany K Redel, Lee D Spate, Kiho Lee, et al.
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