1. Arav A. Cryopreservation of immature bovine oocytes: challenges and solutions. Reprod Fertil Devel. 2014; 26(1): 87-93.
2. Arav A, Natan Y. Vitrification: from basic science to commercial application in bovine reproduction. Anim Front. 2023; 13(2): 45-53.
3. Catandi P, B, Dias FCF, Alves BG, Martins L, T, Nishimura TL, Alves KA. Concentration-time interplay in CPA exposure affects mitochondrial activity of GV bovine oocytes. Reprod Fertil Devel. 2024; 36(2): 189-201.
4. Dinnyes A, Dai Y, Jiang S, Yang X. High developmental rates of vitrified bovine oocytes following parthenogenetic activation, in vitro fertilization, and somatic cell nuclear transfer. Biol Reprod. 2000; 63(2): 513-518.
5. Ferré LB, Chitwood JL, Ross PJ. Assisted reproductive technologies in cattle: current status and future perspectives. Animals. 2020; 10(8): 1321.
6. Ho VNA, Braam SC, Pham TD, Mol BW, Vuong LN. The effectiveness and safety of in vitro maturation of oocytes versus in vitro fertilization in women with a high antral follicle count. Hum Reprod. 2019; 34(5), 1–10.
7. Kuwayama M. Highly efficient vitrification for cryopreservation of human oocytes and embryos: the Cryotop method. Theriogenology, 2007; 67(1): 73-80.
8. Luciano AM, Franciosi F, Modina SC, Lodde V. The mitochondrial life cycle during oocyte maturation and developmental competence in cattle. International J Mol Sci. 2021; 22(9): 4567.
9. Lonergan P, Fair T. Lessons from cattle oocytes: implications for in vitro embryo production. Theriogenology. 2016; 86(8): 1874-1882.
10. Magnusson V, Feitosa WB, Goissis MD, Yamada C, Tavares LMT, DAvila Assumpcao MEO, Visintin JA. Bovine oocyte vitrification: Effect of ethylene glycol concentrations and meiotic stages. Anim Reprod Sci, 2008; 106(3–4): 265–273.
11. Morató R, Mogas T. CPA toxicity in bovine oocytes: a review. Anim Reprod Sci. 2022; 241, 106933.
12. Mara, L, Casu S, Carta A, Dattena M. Cryobanking of farm animal gametes and embryos as a means of conserving livestock genetics. Anim Reprod Sci, 2013; 138: 25–38.
13. Papis K, Shimizu M, Izaike Y. Vitrification devices for bovine oocytes: a comparative study. CryoLetters. 2019; 40(2): 123-130.
14. Ribas IC, Silva CP, Figueiredo RA. Advances and challenges in bovine embryo cryopreservation and transfer. Theriogenology. 2021; 165: 100–110.
15. Rocha CC, Bhat MH, Leao BC. Oocyte vitrification in cattle: current status and future perspectives. Animals. 2022; 12(17): 2203.
16. Sirard, MA. Commercial IVF in cattle: where we are and where we go. Animals. 2023; 13(6): 910.
17. Sprícigo JF, Albuquerque LG, Seneda MM. Advances in vitrification devices for bovine oocytes and embryos. Anim Reprod. 2022; 19(1): e20220001.
18. Xu X, Hao T, Yang E, Hao H, Du W, HangZhang H. Zhao X. Improvement of Fertilization Capacity and Developmental Ability of Vitrified Bovine Oocytes by JUNO mRNA Microinjection and Cholesterol-Loaded Methyl-β-Cyclodextrin Treatment. Int J Mol Sci. 2023; 24: 590-609.
19. Yodrug Th, Parnpia R, Hirao Y, Somfai T. Effect of vitrification at different meiotic stages on epigenetic characteristics of bovine oocytes and subsequently developing embryos. Anim Sci J. 2021; 92(1): e13596.
20. Zhao XM, Du WH, Wang D, Hao HS, Liu Y, Qin T, Zhu HB. Recovery of mitochondrial function and endogenous antioxidant systems in vitrified bovine oocytes during extended in vitro culture. Mol Reprod Develop. 2011; 78(12): 942–950
21. Zhou XL, AlNaib A, Sun DW, Lonergan P. Bovine oocyte vitrification using the Cryotop method: effect of cumulus cells and vitrification protocol on survival and subsequent development. Cryobiology. 2010; 61(2): 173-178.