• Title/Summary/Keyword: pig follicular oocytes

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Effects of Development and Viability of Pig Oocytes Matured in Defined Medium Containing PVA, PVP and pFF (PVA, PVP 및 pFF를 첨가한 체외성숙 한정배지가 미성숙 돼지 난포란의 성숙과 배발달에 미치는 영향)

  • Kim I. D.;Kim S. N.;Han S. K.;Seok H. B.
    • Journal of Embryo Transfer
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    • v.19 no.3
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    • pp.219-227
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    • 2004
  • This study was conducted to develop a serum-free, defined medium of IVM of pig oocytes. The TCM-199 with supplemented with polyvinylalcohol(PVA), polyvinylpyrrollidone(PVP) and porcine follicular fluid(pFF) were used as basal medium. The effects of the these additives on the rates of maturity and development under in-vitro fertilization and in vitro culture were examined and subsequently considered on the possibilities be sustituted for the bovine serum albumin(BSA). Maturation rate of pig oocytes in IVM media containing PVA(82.4%), pFF(89.4%) and BSA(90.0%) were significantly higher(P<0.05) than that of PVP(78.6%). Cleavage rate after IVF of PVP(64%) was significantly lower(P<0.05) than these of PVA(73%), pFF(77%) and BSA(73%) supplements. in vitro development rates to morulae and blastocyst on PVP(54%) were also significantly lower(P<0.05) than these of the supplements of PVA(63%), pFF(69%) and BSA(65%). In comparison of maturation and fertilization rates of pig oocytes in each supplements, the maturity rates of PVA(82.4%), pFF(89.4%) and BSA(90.0%) were significantly lower(P<0.05) than that of PVP(72.4%) and while, the fertilization rates of pFF(87.1%) and BSA(89.1%) were significantly higher(P<0.05) than these of PVA(78.0%) and PVP(70.6%). It may be concluded that PVA and pFF can be substituted far BSA in medium for culturing pig oocytes; however, it may be considered that PVP were limited to for BSA in the in vitro culture of the embryos.

Studies on the In Vitro Fertilization and In Vitro Development of Porcine Embryos (돼지 난포란의 체외수정 및 체외발달에 관한 연구)

  • 박성원;홍승표;진종인;이지삼;정장용;박회성
    • Journal of Embryo Transfer
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    • v.14 no.3
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    • pp.185-193
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    • 1999
  • To improve the efficiency of in vitro production of embryos with follicular oocytes in pig, the recovery rates, in vitro fertilization and development. The results obtained were as fellows: The number of oocytes recovered 37 ovary was 1,365 by aspiration, 1,884 by slicing and 3,830 aspiration post slicing, per ovary was averaged 103.5 aspiration post slicing than 30.7 by aspiration and 50.8 by slicing (P<0.05). The percentage of grade I and II oocytes recovered was 0.05∼0.2% and 1.7∼2.3% respectively(p<0.05). The fertilization rates of ejaculate and epididymis sperm was 83.0 and 83.1%. And cleavaged rate was 60.8 and 69.0% respectively(P<0.05). However, there were no significant differences between sperm sources. The clevage rates of fertilized oocyte was significantly(P<0.05) higher as B.O(92.8%) than TALP (90.1%) or mTBM (80.1%). And in vitro developed to blastocyst rates of mTBM media used for fertilization was significantly (P<0.05) higher as 12.4%, compared with the results using the media of TALP(1.6%) or B.O (0.0%). The embryos developed 2-cell stage after in vitro fertilization were co-cultured with or without POEC and BOEC in NCSU-23 and TCM-199 media. In vitro developed to blastocyst rates was NCSU-23 with POEC(2.3%) or BOEC(1.2%), but in vitro cultured in TCM-199 medium with POEC or BOEC was not developed to blastocyst. The percentage of embryos that developed to morula stage in 0, 50, 100, 200 and 250uM was 16.6, 22.0, 13.5, 19.0 and 22.0%, respectively.

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Maturation Conditions Affecting on Blastocysts Development and Their Quality in Pig Embryos

  • Kim, Ji-Su;Koo, Deog-Bon;Song, Bong-Suk;Gabbine Wee;Choo, Young-Kug;Lee, Kyung-Kwang;Han, Yong-Mahn
    • Proceedings of the KSAR Conference
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    • 2004.06a
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    • pp.240-240
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    • 2004
  • The modification of in vitro maturation (IVM) conditions should be required to efficient production of matured porcine oocyte in vitro. Estradiol-17β (E₂) as steroid hormone exists in ovarian follicular fluid and plays a major role in ovulation. It has been reported that estradiol as well as other steroids are involved in keeping the oocytes in meiotic arrest. (omitted)

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Recent Development in Embryo Technology in Pigs - Review -

  • Niwa, K.;Funahashi, H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.12 no.6
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    • pp.966-975
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    • 1999
  • Technologies on preimplantation porcine embryos have been developed quickly and significantly. Successful development of systems for culture of porcine zygotes to the blastocyst stage has made it possible to utilize follicular oocytes for in vitro production of embryos and thus stimulated research on various embryo technologies. Recent technological development of embryo cryopreservation, separation of X- and Y-bearing spermatozoa and non-surgical embryo transfer has also made it easy to utilize in vivo- and in vitro-produced embryos for artificial manipulation to produce clones and transgenic pigs. Further progress in overcoming various problems associated with each embryo technology will result in acceptable efficiency to utilize porcine embryos with a high or increased quality. Combining these technologies will accelerate further expansion of the swine industry not only for meat production but also for the production of therapeutic recombinant proteins and xonografts.

Effect of Pantothenic Acid, Myo-Inositol, and Folic Acid on In Vitro Development of Parthenogenetic Pig Embryos (Pantothenic Acid, Myo-Inositol 및 Folic Acid가 돼지 단위 발생 배아의 체외발육에 미치는 영향)

  • You, Jin-Young;Lee, Eun-Song
    • Journal of Embryo Transfer
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    • v.25 no.1
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    • pp.1-7
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    • 2010
  • The objective of this study was to examine the effect of vitamin B (pantothenic acid, folic acid, and myo-inositol) that was supplemented to embryo culture medium on in vitro development of parthenogenetically activated (PA) pig embryos. Cumulus-oocyte complexes derived from slaughtered ovaries were matured in TCM-199 supplemented with porcine follicular fluid, cysteine, pyruvate, EGF, insulin, and hormones (hCG and eCG) for the first 22 h and then further cultured in hormone-free medium for an additional 22 h. After maturation culture, metaphase II oocytes that extruded 1st polar body were electrically activated and treated with $5.0\;{\mu}g/ml$ cytochalasin B for 4 h. Then, PA embryos were cultured for 7 days in a modified NCSU-23 that was supplemented with pantothenic acid, myo-inositol, or folic acid at different concentrations ($3{\sim}300\;{\mu}M$) according to the experimental design. Myo-inositol added to culture medium did not show any beneficial or inhibitory effects on embryo cleavage and blastocyst formation. However, $300\;{\mu}M$ pantothenic acid significantly inhibited blastocyst formation compared to control (no addition) (24% vs. 36%, p<0.05). Folic acid ($300\;{\mu}M$) significantly (p<0.05) increased blastocyst formation (56%) compared to control (41%). Our results demonstrated that in vitro development of PA embryos was significantly influenced by vitamin B and addition of $300\;{\mu}M$ folic acid to culture medium improved in vitro development of pig PA embryos.

Effect on In­Vitro Fertilization of Pig Oocytes Matured in Different In­Vitro Maturation Media according to Sperm Concentration of Liquid Boar semen (돼지 액상정액의 정자 주입농도가 서로 다른 체외성숙배지에서 배양된 난포란의 체외수정에 미치는 영향)

  • 박창식;이영주;고현진;양창범;손동수;서길웅;이규승
    • Korean Journal of Animal Reproduction
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    • v.26 no.1
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    • pp.1-7
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    • 2002
  • The present study was carried out to investigate the effects of maturation media on penetrability of pig oocytes by liquid boar sperm coincubated with different sperm concentrations in a modified Tris­buffered medium (mTBM). Follicular oocytes collected from ovaries of prepubertal gilts were matured in a modified TCM-199 (mTCM-199) medium, modified Waymouth MB 752/1 (mWaymouth MB 752/1) medium or NCSU-23 medium. Oocytes (30~40) were transferred into each well of a Nunc 4-well multidish containing 0.5 $m\ell$ maturation medium. The sperm­ich portion of ejaculates with greater than 90% motile sperm were used in the experiment. The semen was cooled 22 to 24$^{\circ}C$ over 2 h period. The semen was diluted with Beltsville Thawing Solution (BTS) extender at room temperature to give 2$\times$10$^{8}$ sperm/$m\ell$ in 100 $m\ell$ plastic bottle. Liquid boar semen of 30 $m\ell$ in 100 $m\ell$ plastic bottle was kept at 17$^{\circ}C$ far 5 days. The sperm with greater than 70% motility after day 5 of storage were used for in-vitro fertilization (IVF). After 44 h maturation of immature oocytes in 5% $CO_2$in air at 38.5$^{\circ}C$, cumulus cells were removed and oocytes (30~40) were coincubated for 6 h in 0.5 $m\ell$ mTBM fertilization medium with five different (1$\times$10$^{6}$ , 2$\times$10$^{6}$ , 4$\times$10$^{6}$ , 6$\times$10$^{6}$, 10$\times$10$^{6}$ $m\ell$) sperm concentrations. At 6 h after IVF, oocytes were transferred into 0.5 $m\ell$ NCSU-23 culture medium fur further culture of 6 h. At 12 h after IVF, sperm penetration, polyspermy and male pronuclear formation of oocytes were evaluated. Oocytes of NCSU-23 maturation medium decreased polyspermy and increased male pronuclear formation compared to those of mTCM­199 and mWaymouth MB 752/1 maturation media. Of oocytes matured in NCSU-23 medium and inseminated in mTBM medium with 2~4$\times$10$^{6}$ $m\ell$ sperm concentrations, 50.8~50.9% showed sperm penetration, 13.3~19.5% polyspermy and 43.9~45.4% male pronuclear formation. In conclusion, we found out that oocytes matured in NCSU­23 medium and inseminated in mTBM medium showed superior in­vitro fertilization compared to those matured in mTCM­199 and mWaymouth MB 752/1 maturation media and inseminated in mTBM medium. The optimum sperm concentrations for in-vitro fertilization of oocytes matured in NCSU-23 medium by liquid boar semen stored at 17$^{\circ}C$ for 5 days were 2~4$\times$10$^{6}$ $m\ell$.

The Effects of Transcription / Translation Inhibitors on Meiotic Maturation of Porcine Oocyte In Vitro

  • Byun, Tae-Ho;Lee, Sung-Ho;Park, Chang-Sik;Lee, Sang-Ho
    • Proceedings of the Korean Society of Embryo Transfer Conference
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    • 2002.11a
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    • pp.117-117
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    • 2002
  • The oocytes from most of animal species accumulate genetic information and other necessary materials during oogenesis for the later use in the early development. Over the years oocyte maturation has been studied extensively both in vitro and in vivo. Particularly, maturation of follicular oocyte in vitro becomes one of the important tools for the studies of basic cell biology, the in vitro technology of animal production, and in particular, the somatic cell cloning by nuclear transfer. We examined meiotic maturation and cumulus expansion in the presence of translation or transcription inhibitors for varying periods of in viかo maturation (IVM) of pig oocyte. In Experiment 1, the results revealed that translation and transcription inhibitors inhibited cumulus expansion and meiotic maturation during 35h of IVM. However, 50 to 60% of the oocytes underwent nuclear maturation without cumulus expansion during 75h of IVM. The rest of the oocytes were arrested at metaphase I (40-50%) in the presence of the inhibitors. In Experiment II, the OCCs were exposed to the drugs only for 15h to examine translation and transcription inhibitors on cumulus expansion and meiotic maturation. Transcription inhibitors for 15h did not arrest meiotic maturation when the oocytes were cultured for subsequent, necessary period of IVM, whereas cumulus expansion was completely inhibited, suggesting that initial 15h is critical transcription activity far cumulus expansion. Translation inhibitors for 15h exposure did not alter cumulus expansion and meiotic maturation during subsequent culture in the absence of the drugs. In Experiment III, the OCCs were exposed to the drugs only for later 30h to examine the influence of transcription and translation inhibitors on oocyte maturation. Interestingly, all meiotic maturation underwent normally with full expansion of cumulus. Similar results were obtained from Experiment IV where 5h of exposure from 15 to 20h of IVM culture to the drugs was performed and subsequently cultured for same period in fresh medium. Taken there results together, both transcription and translation are necessary for nuclear maturation and cumulus expansion, and first 15h IVM for cumulus expansion is critical. The arrested oocytes by the drugs were still capable of undergoing nuclear maturation, although cumulus expansion was affected.

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Exogenous Nitric Oxide Donation During In Vitro Maturation Improves Embryonic Development after Parthenogenesis and Somatic Cell Nuclear Transfer in Pigs

  • Elahi, Fazle;Shin, Hyeji;Lee, Joohyeong;Lee, Seung Tae;Lee, Geun-Shik;Lee, Eunsong
    • Journal of Embryo Transfer
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    • v.33 no.4
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    • pp.211-220
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    • 2018
  • Nitric oxide (NO) has an important role in oocyte maturation and embryonic development in mammals. This study examined the effect of exogenous NO donor S-nitroso-N-acetylpenicillamine (SNAP) in a maturation medium on meiotic progression and embryonic development after parthenogenesis (PA) and somatic cell nuclear transfer (SCNT) in pigs. When oocytes were exposed to $0.1{\mu}M$ SNAP for first 22 h of in vitro maturation (IVM) in Experiment 1, SNAP significantly improved blastocyst development in both defined and standard follicular fluid-supplemented media compared to untreated control (48.4 vs. 31.7-42.5%). SNAP treatment significantly arrested meiotic progression of oocytes at the germinal vesicle stage at 11 h of IVM (61.2 vs. 38.7%). However, there was no effect on meiotic progression at 22 h of IVM (Experiment 2). In Experiment 3, when oocytes were treated with SNAP at 0.001, 0.1 and $10{\mu}M$ during the first 22 h of IVM to determine a suitable concentration, $0.1{\mu}M$ SNAP (54.2%) exhibited a higher blastocyst formation than 0 and $10{\mu}M$ SNAP (36.6 and 36.6%, respectively). Time-dependent effect of SNAP treatment was evaluated in Experiment 4. It was observed that SNAP treatment for the first 22 h of IVM significantly increased blastocyst formation compared to no treatment (57.1% vs. 46.2%). Antioxidant effect of SNAP was compared with that of cysteine. SNAP treatment significantly improved embryonic development to the blastocyst stage (49.1-51.5% vs. 34.4-37.5%) irrespective of the presence or absence of cysteine (Experiment 5). Moreover, SNAP significantly increased glutathione (GSH) content and inversely decreased the reactive oxygen species (ROS) level and mitochondrial oxidative activity in IVM oocytes. SNAP treatment during IVM showed a stimulating effect on in vitro development of SCNT embryos (Experiment 7). These results demonstrates that SNAP improves developmental competence of PA and SCNT embryos probably by maintaining the redox homeostasis through increasing GSH content and mitochondrial quality and decreasing ROS in IVM oocytes.

High Postnatal Survival and Efficacy of Female-Derived Donor Cells in the Productive of Somatic Cloned Piglets

  • Cho, Seong-Keun;Park, Mi-Ryung;Hwang, Kyu-Chan;Kwon, Deug-Nam;Im, Yeo-Jeoung;Park, Ju-Joung;Son, Woo-Jin;Kim, Jin-Hoi
    • Proceedings of the KSAR Conference
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    • 2003.06a
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    • pp.33-33
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    • 2003
  • This study was conduct to compare the efficacy to produce male and female somatic cloned piglets. Maturation of porcine COCs was accomplished by incubation in NCSU-23 medium supplemented with 0.6 mM cysteine, 10% porcine follicular fluid, 1mM dibutyryl cyclic adenosine monophosphate (dbc-AMP, Sigma, USA), and 0.1 IU/ml human menopausal gonadotrophin (hMG, Teikokuzoki, Japan) for 20h and then cultured without dbcAMP and hMG for another 18 to 24 h. Female and male fetal cells were isolated from each fetus, cultured in ES-DMEM medium containing 10% FCS. Enucleated oocytes were fused with fetal fibroblasts (passage 4 to 15). Reconstructed embryos were cultured in NCSU-23 with 4 mg/ml BSA under mineral oil at 39$^{\circ}C$ in 5% $CO_2$ in air. A total of 12,328 nuclear-transferred embryos (1- to 4-cell stage) were surgically transferred into 69 surrogate gilts. Three recipients aborted during the period of conception. Three gilts delivered eleven female piglets, and five recipients gave rise to birth 22 male piglets. The average birth weigh of the cloned piglets was 1.52 kg (1.38~1.83 kg) in female piglets and 0.84 kg (0.45~1.25 kg) in male piglets. Alive cloned pigs was seven in female piglets (63.6%) and four in male piglets (18.2%). The other two recipients is ongoing. This study suggests that female-derived fetal cell as a nuclear donor has more capability on production of cloned piglets than male.

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Effect of In Vitro Maturation Time of Porcine Immature Oocytes on the Subsequent Development and Hatching after In Vitro Fertilization (돼지 미성숙 난자의 체외 성숙 시간이 배 발생과 부화에 미치는 영향)

  • Kim J.Y.;Park H.;Kim J.M.;Lee J.H.;Park Y.S.;Kwak D.S.;Park H.D.
    • Journal of Embryo Transfer
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    • v.21 no.2
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    • pp.129-135
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    • 2006
  • This study was conducted to investigate the effect of in vitro maturation (IVM) duration of porcine follicular oocytes on maturation rate, polyspermic rate, and subsequent embryo development. The nuclear maturation rates of oocytes matured for 36, 38, 40, 42 and 44 hr were similar between 68.0, 78.0, 79.5, 73.8 and 81.8% respectively. There was no significant difference in the rates of polyspermy after in vitro feritilization (IVF). The cleavage rate in the group of 36 hr was significantly higher in than that of 40, 44 hr (p<0.05) but not to 38 and 42 hr. The development rate to blastocyst stage was significantly higher in the group of 38 hr (23.1%) than that in the group of 44 hr (15.6%) (p<0.05) but not to 36, 40 and 42 hr. These results suggest that the aged oocytes for 44 hr is not required for the production of bias to cysts derived from porcine IVF embryos.