scholarly journals Influence of Dominant Follicle and Corpus luteum on Recovery of Good Quality Oocytes for In vitro Embryo Production in Cattle

2014 ◽  
Vol 4 (12) ◽  
pp. 1305-1312 ◽  
Author(s):  
Jurandy Penitente-Filho ◽  
Erly Carrascal ◽  
Fabrício Oliveira ◽  
Adriana Zolini ◽  
Carlos Oliveira ◽  
...  
2021 ◽  
Vol 42 (3) ◽  
pp. 1147-1158
Author(s):  
Maria Fernanda Zamai ◽  
◽  
Fábio Luiz Bim Cavalieri ◽  
Marcia Aparecida Andreazzi ◽  
Fabio Morotti ◽  
...  

Reproductive biotechnologies are emerging as an important element for livestock; however, some strategies must be modified to adapt to different breeding systems, such as the use of follicular synchronization protocols. This study aimed to evaluate follicular synchronization using estradiol benzoate (EB), in the presence of the corpus luteum (CL) from Wagyu oocyte donors in in vitro embryo production (IVEP). Rounds of IVEP were performed in heifers and cows (n=19) that were classified into three groups: G1/CL - animals with CL, G2/WCL - animals without CL, and G3/CL + EB - animals with CL that were subjected to follicular synchronization with EB at D0. The groups G1/CL and G2/WCL were considered the control and undertook the natural process of follicular dynamics. The results showed that the synchronization of the follicular wave with the application of EB in the presence of CL, presented a smaller number of small (6.05 ± 0.55) and large follicles (0.45 ± 0.15), but increased (P < 0.05) the number of medium-sized follicles (16.20 ± 0.90). However, the results of ovum pick up showed that regardless of whether or not EB was applied, and regardless of the presence or absence of CL in the Wagyu donor, there was no difference among the groups (P > 0.05) concerning the number of viable oocytes and the viability rate. It was concluded that follicular synchronization using EB in Wagyu oocyte donors that presented a CL, increased the number of medium-sized follicles. However, there was no improvement in the efficiency of ovum pick up, in vitro embryo production, and pregnancy rate.


2019 ◽  
Vol 31 (1) ◽  
pp. 192
Author(s):  
R. V. Sala ◽  
L. C. Carrenho-Sala ◽  
M. Fosado ◽  
E. Peralta ◽  
D. C. Pereira ◽  
...  

The benefit of superstimulation with exogenous FSH before ovum pickup for in vitro embryo production has been the subject of significant controversy. In addition, there is limited information on different dose regimens. Thus, the objective of the present study was to evaluate the effect of dose of porcine (p)-FSH during superstimulation before ovum pickup (OPU) on in vitro embryo production in pregnant heifers. Pregnant Holstein heifers (n=36) were assigned to a complete 3×3 crossover design. Three treatment groups were evaluated as follows: p-FSH 0mg (FSH0), p-FSH 160mg (FSH160) and p-FSH 300mg (FSH300). Three sessions of OPU were performed on each animal at 48, 62 and 76 days of gestation, with a washout interval between sessions of 14 days. Follicular wave emergence was synchronized by dominant follicle removal. Heifers in the FSH0 group received no further treatment, whereas the remaining groups received a total of 4 injections 12h apart as follows: FSH160 (48.0, 42.7, 37.3 and 32.0mg) or FSH300 (90.0, 80.0, 70.0 and 60.0mg), beginning 36h after dominant follicle removal. Ovum pickup was performed in all heifers 40h after the last p-FSH injection. Heifers were subjected to OPU for oocyte recovery, and number of follicles was determined. Recovered oocytes were processed and in vitro embryo production performed. Differences between treatment groups were evaluated by generalized linear mixed models. Data are presented (Table 1) as mean±standard error of the mean. There was no effect of days in gestation for any of the outcomes evaluated (P&gt;0.05). Follicle numbers at the time of oocyte recovery were different (P&lt;0.01) between groups. Heifers in the FSH300 group had a greater (P&lt;0.05) number of medium, large and total follicles than heifers in the FSH0 group, whereas heifers in the FSH160 were intermediate. Total number of recovered, viable and cleaved oocytes were greater (P&lt;0.01) in FSH300- than in FSH160- and FSH0-treated heifers. Cleavage rate and blastocyst development rate were not different (P&gt;0.10) between groups. The number of grade 1 and 2 blastocysts was greater in FSH300- than in FSH160- and FSH0-treated heifers (P&lt;0.03). In summary, the use of 300mg of p-FSH before OPU in pregnant heifers increases the number of follicles, oocytes and blastocysts produced per heifer with no detrimental effect on oocyte competence. Table 1.Ovum pickup and in vitro embryo production in pregnant heifers treated with different doses of porcine FSH


2019 ◽  
Vol 31 (1) ◽  
pp. 196
Author(s):  
M. Saad ◽  
Z. Sarwar ◽  
M. Saleem ◽  
U. Arshad ◽  
M. Shahzad ◽  
...  

Assisted reproductive technologies have modernized the dairy industry for the rapid multiplication of superior genetic traits. However, the exploitation of genetics through in vitro embryo production in farm animals has been struggling during the last 3 decades. The presence or absence of a corpus luteum (CL) on ovaries from which cumulus-oocyte complexes were recovered has been shown to affect the quality of oocytes and in vitro embryo production outcome in Bos taurus cows. Similar information is lacking in Bos indicus cows. Therefore, the objectives of the present study were to determine the effect of presence or absence of a CL on recovery rate, quality, and in vitro developmental competence of oocytes in Bos indicus dairy cows. This study was conducted from December 2017 to April 2018. The ovaries were harvested from a local abattoir (Bos indicus; 5- to 8-year-old cows having mixed parity with clinically normal reproductive tracts). These ovaries (n=750) were divided into 2 groups [(1) CYCLIC (n=318) and (2) ACYCLIC (n=432)] based on the presence or absence of mature CL having follicles on either left or right ovaries of slaughtered cows. Blood samples from the jugular vein were collected at slaughter. Serum concentrations of progesterone of CYCLIC and ACYCLIC cows were measured using radioimmunoassay. Mean number of recovered oocytes per ovary and serum concentration of progesterone were compared using PROC TTEST model. However, quality, maturation, cleavage, 8-cell, 16-cell, and morula rates were analysed by PROC FREQ model of Chi-squared. All the data was analysed using SAS (SAS Institute Inc., Cary, NC, USA). Results revealed that the mean serum concentrations of progesterone (4.21±0.4v. 0.5±0.2ng mL−1; P&lt;0.05) were higher in CYCLIC as compared with ACYCLIC cows, respectively. The mean number of oocytes recovered per ovary (6.5±4.5v. 4.0±4.4; P&lt;0.05) was higher in CYCLIC than in ACYCLIC cows. The oocytes with grade I+II quality (55.3v. 47.6%; P&lt;0.05) were higher, whereas oocytes with grade III+IV quality (44.5v. 52.4%; P&lt;0.05) were lower, in CYCLIC as compared with ACYCLIC cows, respectively. Furthermore, cleavage rate (70.9v. 52.8%; P&lt;0.05) was higher in CYCLIC than in ACYCLIC cows, respectively. Similarly, the 8-cell (38.5v. 20.8%; P&lt;0.05) and 16-cell (20.0v. 10.9%; P&lt;0.05) stage embryos were greater in CYCLIC as compared with ACYCLIC cows, respectively. In conclusion, the presence of CL has a beneficial effect on recovery rate, quality, and in vitro embryo production outcomes in Bos indicus dairy cows. It is implied that for ovum pickup, cyclic cows should be preferred.


2017 ◽  
Vol 45 (3) ◽  
pp. 10-16
Author(s):  
Khandoker MAMY ◽  
NF Atiqah ◽  
N Ariani

This experiment was conducted for evaluation of bovine slaughterhouse ovary, follicles, and cumulus-oocyte-complexes (COCs) and to compare the effect of collection techniques on the recovery rate of COCs.  The collected slaughterhouse ovaries was classified as corpus luteum present (CL+) and corpus luteum absent (CL-) groups.  It was found that 62.5% of the ovaries collected were CL- type and 37.5% were CL+ type.  For collection of COCs, blunt dissection and aspiration techniques were performed and number of follicles collected was recorded.  The higher number of follicles were dissected and aspirated from CL - ovaries (11.2±1.8and 37.8±14.9, respectively) compared to CL+ ovaries 10.5±1.5and 28.3±15.6, respectively).  The follicular materials collected from both techniques were observed under microscope to categorize the COCs as A (oocyte surrounded with cumulous cells homogenously), B (oocyte surrounded with cumulous cells partially), C (oocyte not surrounded at all by cumulous cells) and D (degeneration observed both in oocyte and cumulous cells).  Grade A and grade B were classified as normal and grade C and grade D were considered as abnormal COCs.  The result indicated that ovaries having no CL contributing more total number of COCs per ovary (6.8±1.0) and also contributing higher normal COCs (5.7±0.9) than that of ovaries with CL (6.0±2.0 and 4.5±1.5, respectively) in blunt dissection technique.  But same trend of result was not found in aspiration technique.  Similarly, higher percentage of COCs recovery rate was also recorded in blunt dissection (61.6±4.6% vs 16.5±4.9%, on total basis) than aspiration (48.6±2.9% vs 11.7±4.1%, on normal basis) technique.  So, ovaries without CL and blunt dissection technique found more suitable for harvesting the higher number and superior quality of COCs for extending the in vitro embryo production experiment.Bang. J. Anim. Sci. 2016. 45 (3): 10-16


Animals ◽  
2021 ◽  
Vol 11 (1) ◽  
pp. 216
Author(s):  
Hernan Baldassarre

The potential of laparoscopic ovum pick-up (LOPU) followed by in vitro embryo production (IVEP) as a tool for accelerated genetic programs in ruminants is reviewed in this article. In sheep and goats, the LOPU-IVEP platform offers the possibility of producing more offspring from elite females, as the procedure is minimally invasive and can be repeated more times and more frequently in the same animals compared with conventional surgical embryo recovery. On average, ~10 and ~14 viable oocytes are recovered by LOPU from sheep and goats, respectively, which results in 3–5 transferable embryos and >50% pregnancy rate after transfer. LOPU-IVEP has also been applied to prepubertal ruminants of 2–6 months of age, including bovine and buffalo calves. In dairy cattle, the technology has gained momentum in the past few years stemming from the development of genetic marker selection that has allowed predicting the production phenotype of dairy females from shortly after birth. In Holstein calves, we obtained an average of ~22 viable oocytes and ~20% transferable blastocyst rate, followed by >50% pregnancy rate after transfer, declaring the platform ready for commercial application. The present and future of this technology are discussed with a focus on improvements and research needed.


2012 ◽  
Vol 32 (7) ◽  
pp. 409 ◽  
Author(s):  
C. Herrera ◽  
P. Dufourq ◽  
M. Freije ◽  
I. Morikawa ◽  
J.E. Centeno ◽  
...  

1995 ◽  
Vol 43 (6) ◽  
pp. 1129-1139 ◽  
Author(s):  
J.R. Gibbons ◽  
R.L. Krisher ◽  
S.K. Carlin ◽  
R.E. Pearson ◽  
F.C. Gwazdauskas

Author(s):  
M.H. Pitroda ◽  
K.P. Khillare ◽  
M.B. Amle ◽  
M.D. Meshram ◽  
A.B. Mali ◽  
...  

Background: In vitro embryo production in buffaloes has gained much importance in this current scenario due to ever increasing population and high demand of milk and meat. Slaughter house derived bubaline ovaries are a cheap and abundant source of cumulus oocyte complexes.Methods: Oocytes from the buffalo ovarian follicles were recovered by aspiration technique as it facilitates quick recovery. Total 155 ovaries were used in the present study. Surface follicles were measured using vernier calliper and categorized into three groups viz. less than 3 mm, 3-5 mm and greater than 5 mm based on follicular diameter and oocytes were processed for IVM, IVF and IVC using conventional non sorted semen.Result: Overall percentage of small, medium and large follicles in the ovaries were recorded as 16.29 ± 0.94%, 8.14±0.60%, 5.35 ± 0.76%, respectively. Overall recovery rate of COCs was 38%. The percentage of these oocytes were 16.74% (A), 15.25% (B), 25.26% (C), 18.33% (D) and 29.87% (E) respectively. Maturation rate of oocytes were 81.96 ± 2.70%. Fertilization rate was 74.98 ± 3.87%, Cleavage rate % was 40.84±2.51% and Blastocyst percentage was 21.57±1.75% respectively. Application of in vitro embryo production technique using slaughter house ovaries can salvage the genetic potential of bubaline species.


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