137
Views
0
CrossRef citations to date
0
Altmetric
Research articles

Comparison of the efficiency of progesterone, ketoprofen, or GnRH administration on the day of fixed-time transfer (FTET) of in vitro produced (IVP) embryos in suckled crossbred beef cows

, , , , , , , , & show all
Pages 240-250 | Received 19 Apr 2022, Accepted 02 Oct 2022, Published online: 16 Oct 2022

References

  • Aké-López R, Segura-Correa JC, Quintal-Franco J. 2005. Effect of flunixin meglumine on the corpus luteum and possible prevention of embryonic loss in Pelibuey ewes. Small Rumin Res. 59:83–87. doi:10.1016/j.smallrumres.2004.11.008.
  • Araújo MCC, Costa EP, Torres CAA, Ferreira AM, Sá WF, Guimarães JD, Fonseca FA, Costa DS, Galimberti AM, Freitas C. 2001. Efeito da aplicação de um análogo de GnRH (Buserelina) na concentração sérica de progesterona e na taxa de gestação em receptoras de embriões bovinos. Rev Bras Ciênc Vet. 8:19–23. doi:10.4322/rbcv.2015.327.
  • Armengol-Gelonch R, Mallo JM, Ponté D, Jimenez A, Valenza A, Souza AH. 2017. Impact of phase of the estrous cycle and season on LH surge profile and fertility in dairy cows treated with different GnRH analogs (gonadorelin vs. buserelin). Theriogenology. 91:121–126.
  • Barnes FL. 2000. The effects of the early uterine environment on the subsequent development of embryo and fetus. Theriogenology. 53:649–658. doi:10.1016/S0093-691X(99)00264-2.
  • Baruselli PS, Ferreira RM, Sá Filho MFS, Nasser LFT, Rodrigues CA, Bó GA. 2010. Bovine embryo transfer recipient synchronisation and management in tropical environments. Reprod Fertil Dev. 22:67–74. doi:10.1071/RD09214.
  • Bavister BD, Liebfried ML, Lieberman G. 1983. Development of preimplantation embryos of the golden hamster in defined culture medium. Biol Reprod. 28(1):235–247.
  • Bols PEJ, Stout TAE. 2018. Transvaginal ultrasound-guided oocyte retrieval (OPU: ovum pick-up) in cows and mares. In: Niemann H, Wrenzycki C, editor. Animal biotechnology. Cham: Springer; p. 209–233.
  • Bó GA, Baruselli PS, Moreno D, Cutaia L, Caccia M, Tríbulo R, Tríbulo H, Mapletoft RJ. 2002. The control of follicular wave development for self-appointed embryo transfer programs in cattle. Theriogenology. 57:53–72. doi:10.1016/S0093-691X(01)00657-4.
  • Caixeta SC, Dode MAN. 2010. Avaliações da competência ovocitária em bovinos. Vet Zootec. 17:8–18.
  • Elli M, Gaffuri B, Frigerio A, Zanardelli M, Covini D, Candiani M, Vignali M. 2001. Effect of a single dose of ibuprofen lysinate before embryo transfer on pregnancy rates in cows. Reproduction. 121:151–154.
  • Fantini Filho JC, Kozicki LE, Souza FP. 2003. Gonadotrofina coriônica humana (hCG) na indução de corpo lúteo acessório em vacas da raça caracu. Arch Vet Sci. 8:63–67. doi:10.5380/avs.v8i2.4037.
  • Ferreira RM, Conti TL, Gonçalves RL, Souto LA, Sales JNS, Sá Filho MF, Elliff FM, Baruselli PS. 2018. Synchronization treatments previous to natural breeding anticipate and improve the pregnancy rate of postpartum primiparous beef cows. Theriogenology. 114:206–211.
  • Galimberti AM, Fonseca FA, Araujo MCC, Costa EP, Freitas C, Guimarães JD, Ferreira AM. 2001. Taxa de Gestação e Níveis Plasmáticos de Progesterona, em Receptoras de Embrião Bovino, tratadas com Buserelina após a Inovulação. Rev Bras Zootec. 30:353–359. doi:10.1590/S1516-35982001000200009.
  • Gonçalves RLR, Viana JHM. 2019. Situação atual da produção de embriões bovinos no Brasil e no Mundo. Rev Bras Reprod Anim. 43:156–159.
  • Jones AL, Lamb GC. 2008. Nutrition, synchronization, and management of beef embryo transfer recipients. Theriogenology. 69:107–115. doi:10.1016/j.theriogenology.2007.09.004.
  • Kask K, Odensvik K, Kindahl H. 1997. Prostaglandin F2α release associated with an embryo transfer procedure in the mare. Equine Vet J. 29:286–289. doi:10.1111/j.2042-3306.1997.tb03125.x.
  • Leonhardt SA, Edwards DP. 2002. Mechanism of action of progesterone antagonists. Exp Biol Med. 227:969–980. doi:10.1177/153537020222701104.
  • Loiola MVG, Pereira DFC, Vasconcelos LV, Lima MCC, Ferraz PA, Rodrigues AS, Bittencourt RF, Jesus EO, Ribeiro Filho AL. 2014. Taxa de gestação de receptoras de embriões bovinos tratadas com um análogo do GnRH no momento da inovulação. Rev Bras Saúde Prod Anim. 15(3):782–789. http://www.rbspa.ufba.br ISSN 1519 9940 782.
  • Lowman, BG, Scott, N, Somerville, SH, East of Scotland College of Agriculture. 1976. Condition scoring of cattle. Anim Prod Advisory Dev Department Edinburgh Edinburgh School Agric Bull, No. 6.
  • Mann GE, Fray MD, Lamming GE. 2006. Effects of time of progesterone supplementation on embryo development and interferon-τ production in the cow. Vet J. 171:500–503.
  • Mann GE, Lamming GE. 2001. Relationship between maternal endocrine environment, early embryo development and inhibition of the luteolytic mechanism in cows. Reproduction. 121:175–180. doi:10.1530/rep.0.1210175.
  • Marques MO, Nasser LF, Silva RCP, Bó GA, Sales JNS, Sá Filho MF. 2012. Follicular dynamics and pregnancy rates in Bos taurusn x Bos indicus embryo transfer recipients treated to increase plasma progesterone concentrations. Anim Reprod. 9:111–119.
  • Martinez MF, Adams GP, Bergfelt DR, Kastelic JP, Mapletoft RJ. 1999. Effect of LH or GnRH on the dominant follicle of the first follicular wave in beef heifers. Anim Reprod Sci. 57:23–33. doi:10.1016/S0378-4320(99)00057-3.
  • Martins T, Talamoni JP, Sponchiado M, Maio JRG, Nogueira GP, Pugliesi G, Binelli M. 2017. Impact of estradiol cypionate prior to TAI and progesterone supplementation at initial diestrus on ovarian and fertility responses in beef cows. Theriogenology. 104:156–163. doi:10.1016/j.theriogenology.2017.08.017.
  • Merton JS, de Roos APW, Mullaart E, de Ruigh L, Kaal L, Vos PL, Dieleman SJ. 2003. Factors affecting oocyte quality and quantity in commercial application of embryo technologies in the cattle breeding industry. Theriogenology. 59:651–674. doi:10.1016/S0093-691X(02)01246-3.
  • Musilová D, Bartoněk J, Čech S, Páleník T, Doležel R. 2014. Induction of accessory corpus luteum in cows by gonadotropin-releasing hormone administrated after insemination. Acta Vet Brno. 83:107–111.
  • Narváez HJ, Fontes RS, Costa RLD, Quirino CR, Moreira LZ. 2010. Efeito do ibuprofeno administrado uma hora antes da inovulação de embriões bovinos. Arq Bras Med Vet Zootec. 62:504–510. doi:10.1590/S0102-09352010000300002.
  • Niles AM, Fricke HP, Carvalho PD, Wiltbank MC, Hernandez LL, Fricke PM. 2019. Effect of treatment with human chorionic gonadotropin 7 days after artificial insemination or at the time of embryo transfer on reproductive outcomes in nulliparous Holstein heifers. J Dairy Sci. 102:2593–2606. doi:10.3168/jds.2018-15588.
  • Odensvik K, Gustafsson H, Kindahl H. 1998. The effect on luteolysis by intensive oral administration of flunixin granules in heifers. Anim Reprod Sci. 50:35–44. doi:10.1016/S0378-4320(97)00090-0.
  • Oyuela LA, Jimenez C. 2010. Factores que afectan la tasa de preñez em programas de transferência de embriones. Rev Vet Zootec. 57:159–167. doi:10.15446/rfmvz.
  • Paksoy Z, Das H. 2013. Nonsteroid anti-inflammatory drugs to improve fertility in cow. In: Lemma A, editor. Success in artificial insemination - quality of semen and diagnostics employed. London: IntechOpen.
  • Perry GA. 2016. Effects of peri-AI nutritional management on embryo development and pregnancy success. Appl Reprod Strateg. Beef Cattle Moines Iowa September 7-8. 158–168.
  • Pinto A, Lucca FM, Mota JAMF, Lucacin E, Borges AM, Acco A. 2008. Avaliação dos efeitos do flunixim meglumine sobre a concentração sérica de progesterona e ciclo estral em novilhas e vacas mestiças. Rev Bras Cienc Vet. 15:10–14. doi:10.4322/rbcv.2014.198.
  • Pugliesi G, Oliveria ML, Scolari SC, Lopes E, Pinaffi FV, Miagawa BT, Paiva YN, Maio JR, Nogueira GP, Binelli M. 2014. Corpus luteum development and function after supplementation of long-acting progesterone during the early luteal phase in beef cattle. Reprod Domest Anim. 49:85–91. doi:10.1111/rda.12231.
  • Pugliesi G, Santos FB, Lopes E, Nogueira É, Maio JR, Binelli M. 2016. Improved fertility in suckled beef cows ovulating large follicles or supplemented with long-acting progesterone after timed-AI. Theriogenology. 85:1239–1248. doi:10.1016/j.theriogenology.2015.12.006.
  • Purcell SH, Beal WE, Gray KR. 2005. Effect of a CIDR insert and flunixin meglumine, administered at the time of embryo transfer, on pregnancy rate and resynchronization of estrus in beef cattle. Theriogenology. 64:867–878. doi:10.1016/j.theriogenology.2004.12.015.
  • Reichenbach HD, Oliveira MA, Lima PF, Santos Filho AS, Andrade JXO. 2001. Transferência e criopreservação de embriões bovinos. In: Gonçalves P., Figueiredo J., Freitas V, editor. Biotécnicas Aplicadas à Reprodução Animal. São Paulo: Varela; p. 127–177.
  • Rossetti RC, Perdigão A, Mesquita FS, Sá Filho M, Nogueira GP, Machado R, Membrive CM, Binelli M. 2011. Effects of flunixin meglumine, recombinant bovine somatotropin and/or human chorionic gonadotropin on pregnancy rates in Nelore cows. Theriogenology. 76:751–758. doi:10.1016/j.theriogenology.2011.04.008.
  • Scenna FN, Hockett ME, Towns TM, Saxton AM, Rohrbach NR, Wehrman ME, Schrick FN. 2005. Influence of a prostaglandin synthesis inhibitor administered at embryo transfer on pregnancy rates of recipient cows. Prostaglandins Other Lipid Mediat. 78:38–45. doi:10.1016/j.prostaglandins.2005.02.003.
  • Schmitt EJ, Diaz T, Drost M, Thatcher WW. 1996. Use of a gonadotropin-releasing hormone agonist or human chorionic gonadotropin for timed insemination in cattle. J Anim Sci. 74:1084–1091. doi:10.2527/1996.7451084x.
  • Sirard MA, Blondin P. 1996. Oocyte maturation and IVF in cattle. Anim Reprod Sci. 42:417–426. doi:10.1016/0378-4320(96)01518-7.
  • Torres-Júnior JRS, Ribeiro DLS, Pereira HG, França IG. 2016. Mitos e verdades em protocolos de IATF. Rev Bras Reprod Anim. 40:129–141.
  • Varago FC, Mendonça LF, Lagares MA. 2008. Produção in vitro de embriões bovinos: Estado da arte e perspectiva de uma técnica em constante evolução. Rev Bras Reprod Anim. 32:100–109.
  • Yan, L, Robinson, R, Shi, Z, Mann, G. (2016). Efficacy of progesterone supplementation during early pregnancy in cows: a meta-analysis. Theriogenology. 85:1390-1398.e1. doi:10.1016/j.theriogenology.2015.12.027.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.