An experiment was conducted to evaluate the efficacy of porcine follicle stimulating hormone (pFSH) dosage based on body weight (BW) on ovarian responses of crossbred does. Thirty donor does were divided into 3 groups getting pFSH dosages of 3, 5, and 8 mg pFSH per kg BW, respectively, and were named as pFSH-3, pFSH-5 and pFSH-8, respectively. Estrus was synchronized by inserting a controlled internal drug release (CIDR) device and a single injection of prostaglandin $F2{\alpha}$ ($PGF2{\alpha}$). The pFSH treatments were administered twice a day through 6 decreasing dosages (25, 25, 15, 15, 10, and 10% of total pFSH amount; decreasing daily). Ovarian responses were evaluated on Day 7 after CIDR removal. After CIDR removal, estrus was observed 3 times in a day and pFSH treatments were initiated at 2 days before the CIDR removal. All does in pFSH-5 and pFSH-8 showed estrus signs while half of the does in pFSH-3 showed estrus signs. No differences (p>0.05) were observed on the corpus luteum and total ovarian stimulation among the treatment groups, while total and transferable embryos were higher (p<0.05) in pFSH-5 (7.00 and 6.71) than pFSH-3 (3.00 and 2.80) and pFSH-8 (2.00 and 1.50), respectively. In conclusion, 5 mg pFSH per kg BW dosage gave a higher number of embryos than 3 and 8 mg pFSH per kg BW dosages. The results indicated that the dosage of pFSH based on BW is an important consideration for superovulation in goats.
In this study, we analyzed signal transduction by equine follicle-stimulating hormone receptor (eFSHR) on sti- mulation with recombinant $eelFSH{\beta}/{\alpha}$ ($rec-eelFSH{\beta}/{\alpha}$), natural porcine FSH (pFSH), and natural human FSH (hFSH). cAMP stimulation in CHO-K1 cells expressing eFSHR was determined upon exposure to different doses (0-1450 ng/mL) of these hormones. The $EC_{50}$ value of $rec-eelFSH{\beta}/{\alpha}$ was 53.35 ng/mL. The Rmax values of $rec-eelFSH{\beta}/{\alpha}$ and pFSH were 28.12 and 2.88 ng/mL, respectively. The activity of $rec-eelFSH{\beta}/{\alpha}$ was much higher than that of natural pFSH. However, signal transduction in CHO PathHunter Parental cells expressing eFSHR was not enhanced by stimulation with natural hFSH. Thus, $rec-eelFSH{\beta}/{\alpha}$ was completely active in cells expressing eFSHR. However, natural hFSH did not invoke a signal response in cells expressing eFSHR. Particularly, natural pFSH was weakly active in the same cells. These results showed that $eelFSH{\beta}/{\alpha}$ has potent activity in cells expressing eFSHR. Thus, $rec-eelFSH{\beta}/{\alpha}$ may efficiently bind to eFSHR, where as natural hFSH does not bind to eFSHR.
This study was carried out to establish an effective and practical system for commercialization of embryo production techniques by analyzing several factors influencing in vivo embryo production on days and seasons of flushing in Korean native cattle. In vivo embryos were flushed 226 times from 128 donors. The results obtained for the factors influencing in vivo embryo production on days and seasons of flushing were as follows :1.The percentages of fertilized, transferable and freezable embryos by seasons were significantly different in both FSR-P and SUPER-OV(P<0.01). The percentages of them were highest in sunrrner with FS H-P and highest in autumn with SUPER -OV.2. The production of transferable and freezable embryos by flushing days was highest in 8 days with FSH-P, and there was no difference between 7 and 8 days for SUP ER-OV. 3. The failure rates of recovery were 17.0% in SUPER-OV and 21.2% in FSH-P, respectively. The donors superovulated but failed recovery were 8.5% in SUPER-OV and 12.9% in FSH-P, respectively. Nonsuperovulated donors was 8.4% and donors giving less than 2 eggs at recovery was 8.4% in both FSH -P and SUPER-OV 4. The donors returned to normal estrus after superovulation were 34.1% after 1 cycle,39.4% after 2 cycles, and 16.7% after 3 cycles by FSH-P, respectively. For SUPER-OV, they were 55.3, 33.0 and 9.6%, respectively. Generally, normal estrus after the treatment of superovulation was earlier and the occurrence of ovarian cyst was also lower in SUP ER-OV than in FSH-P.5.The percentages of blastocyst in embryos flushed at 7~8 days after estrus were 21. 9% and 54.3% in FSH -P and SUPER-OV, respectively. The development of embryos was faster in SUPER-OV than in FSH-P.(Key words : in vivo embryo, flushing days, superovulation, FSH-P, SUPER-OV)
I. The Factors Influencing In Vivo Embryo Production by Condition of Superovulation Treatment These studies were carried out to establish an effective and practical system for comrnercialization of embryo production techniques by analyzing several factors influencing in vivo embryo production on superovulation treatment in Korean native cattle. In vivo embryos were flushed 226 times from 128 donors.The results obtained from the studies on the factors influencing in vivo embryo production by superovulation treatment were as follows : FSH-P had a significiant advantage(83.0%) over SUPER-OV in the percentage of fertilized embryos(P<0.01). No difference was found loetween FSH-P and SUPER-OV in the percentage of transferable and freezable embryos.2. The response of superovulation by SUPER-OV was greater than that of FSH-P The donors having 8~9 and more than 10 of corpora lutea(CL) derived by FSH-P were 40.0%(most frequent) and 33%, respectively. The donors having more than 12 and 10 CL derived by SUPER -OV were 33.3% (most frequent) and 56.6%, respectively.3. Embryo production after treatment of repeated superovulation was remarkablely decreased at 3rd time by FSH-P but did not differ among 1, 2 and 3rd times by SUPER-OV. Embryo production on intervals of repeated superovulation was significantly different for the number and percentage of fertilized, transferable and free-zable' embryos in FSH-P (P<0.01) and rernarkablely decreased in repeated superovulation of 81~120 interval days. The SUPER-OV showed no differences in interval days of repeated superovulation and was found better than FSH-P in the response of repeated superovulation. (Key words : in Vivo embryo, superovulation, FSH -P, SUPER-OV)
This study was carried out to establish an effective and practical system for commercialization of embryo production techniques by analyzing several factors influencing in vivo embryo production on condition of donors treated FSH-P and SUPER-OV in Korean native cattle. In vivo embryos were flushed 226 times from 128 donors. The results obtained for the factors influencing in vivo embryo production by conditionof donors treated FSH-P and SUPER-OV were as follows :1. Age and parity of donors did not affect the transferable and freezable embryos among the treatments in FSH-P but the transferable and freezable embryos were decreased after 6 years old and 4th parity in SUPER-OV(P<0.01). 2. The production of embryos on the weight of donors was higher in over 400kg of body weight in FSH-P(P<0.01) and was higher in over 450kg than 400~450kg of body weight in SUPER-OV(P<0.05). For FSH-P embryo production was better responded in 350~450kg of body weight with 30~32mg doses, and showed a better result in over 450kg body weight with 32~34mg doses.(Key Words : in vivo embryo, donors, FSH-P SUPER-OV)
The present study was carried out to evaluate the effect of superovulation treatments on ovarian responses, oocyte recovery rates and grades of collected oocytes using an ultrasound-guided transvaginal approach in Korean native cows. Superovulation in cows was induced with two different regimenes: 1) FSH-decreasing dose(n=8): the cows were received twice per day for three days of the total dose of 400 mg of FSH-p, 2) FSH-single dose(n=9): the cows were administrated a single dose of 400 mg of FSH-p in 25% PVP. The Observation of visible follicles and collection of oocytes were performed 12 hours following the last FSH in FSH-decreasing dose group and 48 hours after the FSH-single dose injection. All visible follicles larger than 6 mm were punctured and aspirated with a 6.5 MHz convex-array ultrasound transducer designed for intravaginal use. The mean number of visible follicles(> 6 mm) was significantly(P<0.05) higher in the FSH-decreasing dose treatment (22.811.9) and FSH-single dose treatment (20.612.0) groups than the non-treatment group(7.0$\pm$8). The mean recovery rate of oocytes was not significantly(P<0.05) different between the treatment and control groups, but the mean number of collected oocytes was significantly(P<0.05) higher in the FSH-decreasing dose treatment( 12.611.5) and FSH-single dose treatment (11.813.6) groups than the non-treatment group(3.7$\pm$0.5). In conclusion, the FSH-single dose treatment at superovulation in cows for ultrasound-guided aspiration might increase the number of aspiratable follicles and the recovery rate of follicular oocytes as the FSH-decreasing dose treatment.
This experiment was carried out to investigate the factors affecting superovulation in rabbits and to determine the effect of pFSH and PMSG on ovarian superovulatory responses and embryo production, and the effect of superovulation treatment with a single injection of pFSH dissolved in polyvinylpyrrolidone on the ovarian responses and the embryo quality. The results obtained were suonmerized as follows: Superovulatory response resulted in significantly (P<0.05) higher ovulation rates and more embryos in spring or autumn, compared with summer or winter. Repeated superovulatory treatments with PMSG leaded to a significantly(P<0.05) decreased number of total follicles and recovered ova. Superovulation with pFSH resulted in the higher number of ovulated follicles and recovered ova than with PMSG. A single subcutaneous injection of pFSH dissolved in 25% PVP resulted in the more ovulation points(33.2) and recovered embryos(30.2), which were comparable to the multiple injections of pFSH(44.8 vs 37.7).These results indicated that the treatment with a single injection of FSH dissolved in PVP was an efficient and simple alternative method to the conventional multiple FSH injections for superovulation in rabbits.
Park, Joung-Jun;Yoo, Han-Jun;Kim, Ki-Won;Lee, Seung-Hwan;Park, Choon-Keun;Hong, Seong-Koo
Reproductive and Developmental Biology
/
v.35
no.3
/
pp.233-238
/
2011
This study was performed to investigate the FSH levels for superovulation procedure in Korean Native Cattle (Hanwoo). The effectiveness of 200 mg and 400 mg of FSH to initiate superovulation was examined in Hanwoo. Donors, at random stages of the estrous cycle, received a CIDR 7 days later, 200 mg FSH group was treated with 40, 30, 20, 10 mg FSH levels in declining doses twice daily by intramuscular injection fur 4 days. Also, 400 mg FSH group was treated with 80, 60, 40, 20 mg FSH levels. On the 3rd day administration of FSH, 25 mg $PGF_2$${\alpha}$ was administered and CIDR was withdrawn. Donors were artificially inseminated twice at 12 hr intervals. The donor cattle received 250 ${\mu}g$ GnRH at time of 1st insemination and embryos were recovered 8 days after the 1st insemination. As a results, average number of CL treated with FSH 200 mg was higher as $20.9{\pm}1.20$ than $15.8{\pm}0.63$ for donors treated with FSH 400 mg, respectively(p<0.05). Treated group of 200 mg FSH level increased (p<0.05) the number of embryos recovered per procedure compared to 400 mg FSH level ($18.2{\pm}1.18$ vs. $12.38{\pm}0.52$, respectively). When treatment of 200 mg FSH was performed, average transferable embryos/ova increased (p<0.05) to $14.1{\pm}1.12$ from $6.8{\pm}0.33$ of treated of 400 mg FSH. Group of 200 mg FSH increased (p<0.05) to $8.3{\pm}0.76$ from $2.0{\pm}0.26$ in morula stage compare to 400 mg FSH group. Mean of total early blastocyst and expanded blastocyst stage embryos was similar (p<0.05) between the 200 mg and 400 mg FSH levels group ($4.7{\pm}1.19$ vs. $2.9{\pm}0.18$ and $1.2{\pm}0.40$ vs. $1.9{\pm}0.17$). These results suggest that 200 mg FSH level-based superovulation protocol with CIDR may be effectively used fur production of superior embryos in Hanwoo. In other words, the less level of FSH may be effectively applied for Hanwoo (Korean Native Cattle), because Hanwoo was smaller body size than beef or daily cow.
This study was conducted to investigate the influence of media and hormones on in vitro maturation and development of porcine follicular oocytes. Basic media were used to TCM-199, Waymouth MB751/1 and BMOC-II, and hormones were used to hCG and FSH in each medium. The results obtained were summarized as follows : 1. The maturation rates of oocytes cultured in TCM-199 medium containing hCG, FSH and hCG+FSH were 78.05, 72.50 and 67.50%, respectively. The maturation rates of oocytes with hormones were significantly (P<0.05) higher than those of oocytes cultured without hormone. However, the cleavage rate(hCG 46.88%, FSH 31.04%. hCG+FSH 37.04%) of embryo cultured in TCM-199 containing hormone was significantly(P<0.05) lower than that(89.47%) of oocytes cultured without hormone. 2. The maturation rates of oocytes cultured in Waymouth MB751/1 medium containing hCG. FSH and hCG+FSH were 69.77, 71.43 and 80.00%, respectively. The maturation rates of oocytes with hormones were significantly(P<0.05) higher than those of oocytes cultured without hormone. However. the cleavage rate(hCG 46.67%. FSH 36.00%, hCG+FSH 35.71%) of embryo cultured in Waymouth MB751/1 containing hormone was significantly(P<0.05) lower than that(60.00%) of oocytes cultured without hormone. 3. The maturation rates of oocytes cultured in BMOC-II medium containing hormone were 66.67(control). 66.67(hCG). 91.89(FSH) and 81.82(hCG+FSH)%. respectively. showing the highest rate in FSH treatment. And, the cleavage rates of oocytes cultured in BMOC-II medium containing hormone were 81.82 (control, 79.17(hCG), 50.00(FSH) and 66.67(hCG+FSH)%, respectively.
The objective of this experiment was to test the effect of EG F on nuclear maturation of pig immature oocytes in vitro. Basic medium used TCM-199 supplemented with 0.2 mM pyruvate, 1 ${\mu}\textrm{g}$/ml estradiol-I7$\beta$ and 25 ${\mu}\textrm{g}$/ml gentamycin, this medium treated with EGF, FSH and FBS. Experiment 1 examined to the effect according to the addition of FSH or EGF (0, 1. 10 and 100 ng EGF/ml) in oocytes maturation. Nuclear maturation rates (M ll %) of 1, 10 and 100 ng EGF/ml (83.0. 8fi.7 and H7.5%) treatments were significantly higher than those of non- and FSH-treated groups (27.3 and 60.3%, p < 0. 001). Experiment 2 examined to the interactive effects of EGF. FSH or FBS during oocytes maturation. Nuclear maturation rates (M ll %) of EGF alone, EGF plus FSH, EGF plus FBS, FSH plus FBS, and EGF plus FSH added FBS treatments (86.7, 90.2, 87.1. 89.6% and 92.6%) were significantly higher than those of non, FSH, and FBS alone treatments (22.3, 52.2 and 42.3%, p < 0.001). Also, cumulus cells expansion of oocytes maturation was examined to total treatments. Normal cumulus cells expansion was shown by FSH plus FBS, EGF or EGF with FBS combination treatments, but cumulus cells of oocyte complexes were still clumped together in EGF-treated groups although they had separated from oocytes. However, EGF showed a positive on nuclear maturation. These results conclude that EGF alone can stimulate nuclear maturation in pig immature oocytes.
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