Exogenous progesterone-dependent modulation in the follicular dynamics of Bos indicus cattle undergoing repeated ovum pick-up sessions.


Journal

Reproduction in domestic animals = Zuchthygiene
ISSN: 1439-0531
Titre abrégé: Reprod Domest Anim
Pays: Germany
ID NLM: 9015668

Informations de publication

Date de publication:
Jan 2022
Historique:
received: 14 08 2021
accepted: 11 10 2021
pubmed: 21 10 2021
medline: 18 1 2022
entrez: 20 10 2021
Statut: ppublish

Résumé

The objective of the present study was to evaluate the role of serum progesterone (P4) in follicular dynamics, oocytes' recovery and quality and their in vitro developmental competence during consecutive ovum pick-up (OPU) sessions in Bos indicus dairy cows. Wave-synchronized Sahiwal cattle (n = 20) were randomly divided into treatment (n = 10) and control (n = 10) groups. CIDR was used as a source of external progesterone in the treatment group. Four consecutive OPU sessions at 96-hr intervals were conducted and repeated ultrasonography at 12-hr intervals was done to monitor follicular dynamics. The viable oocytes were processed for IVC following IVM and IVF until day 7. The serum P4 concentrations in the P4 and control groups were recorded as 2.31 ± 0.059 versus.0.32 ± 0.065 ng/ml, respectively (p < .05). In the treatment group, the total number of recorded follicles was higher (p < .05; 12.05 ± 0.37 versus. 10.87 ± 0.40), whilst the growth rate (mm/day) of follicles was lower (p > .05). Per session recovered oocytes (5.31 ± 0.19 versus. 3.58 ± 0.21; p < .0001) and recovery rate (54.23 versus. 42.53%; p < .05) were also higher in the treatment group compared to control. Similarly, the viable oocytes (4.54 ± 0.187 versus. 3.06 ± 0.199) and the number of grade I and II oocytes per session (3.37 ± 0.196 versus. 2.06 ± 0.21) were higher (p < .05) in the treatment group compared with the control group. However, the nuclear maturation, cleavage, and blastocyst rate did not differ (p > .05) between the groups. Taken together, during OPU sessions, serum P4 improves oocytes' recovery and quality, whilst does not affect the in vitro developmental competence of recovered oocytes.

Identifiants

pubmed: 34670003
doi: 10.1111/rda.14028
doi:

Substances chimiques

Progesterone 4G7DS2Q64Y

Types de publication

Journal Article Randomized Controlled Trial, Veterinary

Langues

eng

Sous-ensembles de citation

IM

Pagination

55-63

Subventions

Organisme : Technology Development Fund (Higher Education Commission, Pakistan)
ID : Project no. TDF-02-059

Informations de copyright

© 2021 Wiley-VCH GmbH.

Références

Abreu, F. M., Coutinho da Silva, M. A., Cruppe, L. H., Mussard, M. L., Bridges, G. A., Harstine, B. R., Smith, G. W., Geary, T. W., & Day, M. L. (2018). Role of progesterone concentrations during early follicular development in beef cattle: I. Characteristics of LH secretion and oocyte quality. Animal Reproduction Science, 196, 59-68. https://doi.org/10.1016/j.anireprosci.2018.06.020
Bacelar, D., Max, M. C., Padilha, L. C., Barreiros, T. R. R., & Seneda, M. M. (2010). Enhancement of oocytes obtainment in Nelore heifers (Bos taurus indicus) treated with progesterone injection and benzoate of estradiol. Semina: Ciências Agrárias, 31(1), 163-172.
Batista, E., Macedo, G., Sala, R., Ortolan, M., Sá Filho, M. D., Del Valle, T., Jesus, E. F., Lopes, R. N. V. R, Rennó, F. P., & Baruselli, P. S. (2014). Plasma antimullerian hormone as a predictor of ovarian antral follicular population in Bos indicus (Nelore) and Bos taurus (Holstein) heifers. Reproduction in Domestic Animals, 49(3), 448-452.
Bó, G., Baruselli, P., & Martı́nez, M. F. (2003). Pattern and manipulation of follicular development in Bos indicus cattle. Animal Reproduction Science, 78(3-4), 307-326. https://doi.org/10.1016/S0378-4320(03)00097-6
Bragança, G. M., Souza-Fabjan, J., Ribeiro, L. S., Brair, V. L., Côrtes, L. R., Souza, C. V., Batista, R., Fonseca, J. F., Menchaca, A., & Brandão, F. Z. (2020). Exogenous progestogen does not affect first-wave follicle populations and oocyte quality during ovarian stimulation with FSH in sheep. Domestic Animal Endocrinology, 72, 106369. https://doi.org/10.1016/j.domaniend.2019.06.001
Callejas, S. S., Alberio, R., Cabodevila, J., Dulout, F., Aller, J., Catalano, R., & Teruel, M. (2006). Influence of different doses of progesterone treatments on ovarian follicle status in beef cows. Animal Reproduction Science, 91(3-4), 191-200. https://doi.org/10.1016/j.anireprosci.2005.03.011
Chabbert-Buffeta, N., Skinner, D. C., Caraty, A., & Bouchard, P. (2000). Neuroendocrine effects of progesterone. Steroids, 65(10-11), 613-620. https://doi.org/10.1016/S0039-128X(00)00187-2
da Silva, J. C. B., Ferreira, R. M., Filho, M. M., de Rezende Naves, J., Santin, T., Pugliesi, G., & Madureira, E. H. (2017). Use of FSH in two different regimens for ovarian superstimulation prior to ovum pick up and in vitro embryo production in Holstein cows. Theriogenology, 90, 65-73.
Ferguson, C., Kesler, D., & Godke, R. (2012). Progesterone enhances in vitro development of bovine embryos. Theriogenology, 77(1), 108-114. https://doi.org/10.1016/j.theriogenology.2011.07.022
Hajarian, H., Shahsavari, M. H., Karami-Shabankareh, H., & Dashtizad, M. (2016). The presence of corpus luteum may have a negative impact on in vitro developmental competency of bovine oocytes. Reproductive Biology, 16(1), 47-52. https://doi.org/10.1016/j.repbio.2015.12.007
Kojima, F. N., Bergfeld, E., Wehrman, M. E., Cupp, A. S., Fike, K. E., Mariscal-Aguayo, D. V., Sanchez-Torres, T., Garcia-Winder, M., Clopton, D. T., Roberts, A. J., & Kinder, J. E. (2003). Frequency of luteinizing hormone pulses in cattle influences duration of persistence of dominant ovarian follicles, follicular fluid concentrations of steroids, and activity of insulin-like growth factor binding proteins. Animal Reproduction Science, 77(3-4), 187-211. https://doi.org/10.1016/S0378-4320(03)00038-1
Lonergan, P. (2011). Influence of progesterone on oocyte quality and embryo development in cows. Theriogenology, 76(9), 1594-1601. https://doi.org/10.1016/j.theriogenology.2011.06.012
Menchaca, A., Cuadro, F., dos Santos-Neto, P., Bosolasco, D., Barrera, N., de Brun, V., & Crispo, M. (2018). Oocyte developmental competence is improved by relatively greater circulating progesterone concentrations during preovulatory follicular growth. Animal Reproduction Science, 195, 321-328. https://doi.org/10.1016/j.anireprosci.2018.06.010
Merton, J., De Roos, A., Mullaart, E., De Ruigh, L., Kaal, L., Vos, P., & Dieleman, S. (2003). Factors affecting oocyte quality and quantity in commercial application of embryo technologies in the cattle breeding industry. Theriogenology, 59(2), 651-674. https://doi.org/10.1016/S0093-691X(02)01246-3
Moore, S., & Hasler, J. (2017). A 100-Year Review: Reproductive technologies in dairy science. Journal of Dairy Science, 100(12), 10314-10331. https://doi.org/10.3168/jds.2017-13138
Pfeifer, L., Mapletoft, R., Kastelic, J., Small, J., Adams, G., Dionello, N., & Singh, J. (2009). Effects of low versus physiologic plasma progesterone concentrations on ovarian follicular development and fertility in beef cattle. Theriogenology, 72(9), 1237-1250. https://doi.org/10.1016/j.theriogenology.2009.07.019
Pfeifer, L., Sartori, R., Pivato, I., Rumpf, R., Nogueira, G., Xavier, E., & Corrêa, M. (2009). Effect of circulating progesterone on in vitro developmental competence of bovine oocytes. Embrapa Recursos Genéticos e Biotecnologia-Artigo em periódico indexado (ALICE).
Pirestani, A., Hosseini, S. M., Hajian, M., Forouzanfar, M., Moulavi, F., Abedi, P., & Esfahani, M. H. N. (2011). Effect of ovarian cyclic status on in vitro embryo production in cattle. International Journal of Fertility & Sterility, 4(4), 172.
Pursley, J. R., & Martins, J. P. N. (2011). Impact of circulating concentrations of progesterone and antral age of the ovulatory follicle on fertility of high-producing lactating dairy cows. Reproduction, Fertility and Development, 24(1), 267-271. https://doi.org/10.1071/RD11917
Reggio, B., Lynn, J., & Godke, R. (1997). The effect of progesterone on the development of IVF-derived bovine embryos cultured in a semi-defined culture medium. Theriogenology, 1(47), 284. https://doi.org/10.1016/S0093-691X(97)82411-9
Saad, M., Sarwar, Z., Saleem, M., Arshad, U., Shahzad, M., Hassan Mushtaq, M., Husnain, A., Riaz, A., & Ahmad, N. (2019). Effect of plasma progesterone on oocyte recovery, oocyte quality, and early in-vitro developmental competence of embryos in Bos indicus dairy cows. Animal Reproduction Science, 202, 80-86. https://doi.org/10.1016/j.anireprosci.2019.02.001
Sartori, R., & Barros, C. (2011). Reproductive cycles in Bos indicus cattle. Animal Reproduction Science, 124(3-4), 244-250. https://doi.org/10.1016/j.anireprosci.2011.02.006
Sarwar, Z., Saad, M., Saleem, M., Husnain, A., Riaz, A., & Ahmad, N. (2020). Effect of follicle size on oocytes recovery rate, quality, and in-vitro developmental competence in Bos indicus cows. Animal Reproduction, 17(3), 37-45. https://doi.org/10.1590/1984-3143-ar2020-0011
Scherf, B. D., & Pilling, D. (2015). The second report on the state of the world's animal genetic resources for food and agriculture.
Silva, C., & Knight, P. (2000). Effects of androgens, progesterone and their antagonists on the developmental competence of in vitro matured bovine oocytes. Journal of Reproduction and Fertility, 119(2), 261-270. https://doi.org/10.1530/jrf.0.1190261
Shah, S. I., Bashir, E. L., & Bantel, R. (1994). Animal husbandry. Islamabad, Pakistan: National Book Foundation.
Stevenson, J., & Pulley, S. (2016). Feedback effects of estradiol and progesterone on ovulation and fertility of dairy cows after gonadotropin-releasing hormone-induced release of luteinizing hormone. Journal of Dairy Science, 99(4), 3003-3015. https://doi.org/10.3168/jds.2015-10091
Van Werven, T., Waldeck, F., Souza, A., Floch, S., & Englebienne, M. (2013). Comparison of two intravaginal progesterone releasing devices (PRID-Delta vs CIDR) in dairy cows: Blood progesterone profile and field fertility. Animal Reproduction Science, 138(3-4), 143-149. https://doi.org/10.1016/j.anireprosci.2013.02.010
Viana, J. H. M., de Almeida Camargo, L. S., de Moraes Ferreira, A., de Sa, W. F., de Carvalho Fernandes, C. A., & de Pinho Marques Junior, A. (2004). Short intervals between ultrasonographically guided follicle aspiration improve oocyte quality but do not prevent establishment of dominant follicles in the Gir breed (Bos indicus) of cattle. Animal Reproduction Science, 84(1-2), 1-12. https://doi.org/10.1016/j.anireprosci.2003.12.002
Viana, J., Palhao, M., Siqueira, L. G. B., Fonseca, J. F., & Camargo, L. S. A. (2010). Ovarian follicular dynamics, follicle deviation, and oocyte yield in Gyr breed (Bos indicus) cows undergoing repeated ovum pick-up. Theriogenology, 73(7), 966-972. https://doi.org/10.1016/j.theriogenology.2009.11.025
Vieira, L. M., Rodrigues, C. A., Castro Netto, A., Guerreiro, B. M., Silveira, C., Freitas, B. G., Bragança, L., Marques, K., Sá Filho, M. F., Bó, G. A., Mapletoft, R. J., & Baruselli, P. S. (2016). Efficacy of a single intramuscular injection of porcine FSH in hyaluronan prior to ovum pick-up in Holstein cattle. Theriogenology, 85(5), 877-886. https://doi.org/10.1016/j.theriogenology.2015.10.036

Auteurs

Mudussar Nawaz (M)

Department of Theriogenology, Faculty of Veterinary Science, University of Veterinary and Animal Sciences, Lahore, Pakistan.

Muhammad Saleem (M)

Department of Theriogenology, Faculty of Veterinary Science, University of Veterinary and Animal Sciences, Lahore, Pakistan.

Farid Ullah (F)

Department of Theriogenology, Faculty of Veterinary Science, University of Veterinary and Animal Sciences, Lahore, Pakistan.

Ghulam Shabbir Khan (G)

Department of Theriogenology, Faculty of Veterinary Science, University of Veterinary and Animal Sciences, Lahore, Pakistan.

Imran Zahoor (I)

Department of Livestock Production, Faculty of Animal Production and Technology, University of Veterinary and Animal Sciences, Lahore, Pakistan.

Nasim Ahmad (N)

Department of Theriogenology, Faculty of Veterinary Science, University of Veterinary and Animal Sciences, Lahore, Pakistan.

Amjad Riaz (A)

Department of Theriogenology, Faculty of Veterinary Science, University of Veterinary and Animal Sciences, Lahore, Pakistan.

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