• Title/Summary/Keyword: Porcine IVF

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Effect of Antioxidants and Buthionine Sulfoximide on the Development of Porcine IVM/IVF Embryos. (돼지 체외수정란의 체외발육에 미치는 항산화제와 BSO의 효과)

  • 최영진;박춘근;김정익;정희태;박동헌;장현용;장원경;박진기;양부근
    • Korean Journal of Animal Reproduction
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    • v.26 no.3
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    • pp.223-228
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    • 2002
  • This study was carried out to examine the effects of antioxidants and buthionine sulfoximide(BSO) on the development of porcine in vitro maturation(IVM) and in vitro fertilization(IVF) oocytes. Cumulus cell free embryos derived from porcine IVM/IVF oocytes were cultured NCSU23 medium with antioxidants or BSO under an atmosphere of 5% $CO_2$ and 5% $O_2$at 38.5$^{\circ}C$ for 5~6 days. The embryos cultured in medium with BSO showed a significanthy(P<0.05) lower rates(8.4~15.7%) of the development to the morulae and blastocyst stage than control group(35.9%). When the embryos were cultured with NAC, ebselen, glutathione and BSO, the proportions of embryos beyond morulae and blastocysts were significantly(P<0.05) higher in medium with NAC(40.5%), ebselen(44.2%) and glutathione(36.0%) than BSO(10.9%). In conclusions, these results indicate that NAC, ebselen and glutathione as a antioxidants can increase the proportion of embryos that develop beyond morulae stage. BSO, intracellular glutathione inhibitors, is suppressed the development of porcine embryos derived from IVM/IVF.

Effect of Gonadotropins added during Maturation of Porcine Oocytes on the In Vitro Maturation, In Vitro Fertilization and Development of Embryos (돼지 난포란의 체외성숙시 성선자극호르몬의 첨가가 체외성숙, 체외수정 및 배발생에 미치는 영향)

  • 이장희;김창근;정영채
    • Journal of Embryo Transfer
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    • v.9 no.1
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    • pp.85-93
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    • 1994
  • This study was carried out to investigate the effects of gonadotropins added during maturation of porcine oocytes on the in vitro maturation(IVM), in vitro fertilization(IVF) and developmental potential of embryos. The follicular oocytes were cultured in TCM-199 medium containing different combination of gonadotropins(5$\mu$g /ml FSR or 1OIU /ml PMSG and 1O$\mu$g /ml LH or 1OIU /ml hCG), 10% FCS and 10% PFF for 36~48h in a incubator with 5% $CO_2$ in Air at 39$^{\circ}C$ and then matured oocytes were again cultured to 120h after IVF for 6~7h with heparin(100$\mu$g /m')-treated sperm. When the oocytes were matured for 42brs in the medium containing FSH+LH, FSH+hCG, PMSG+LH or PMSG+hCG, the JVF rate of each treatment was 50.0%, 52.9%, 66.7% and 70.0%, respectively. The highest CEI (cumulus cell expansion index) was obtained from PMSG+hCG-added medium and the highest polyspermic penetration resulted from FSH+LH-added medium. The cleavage of IVF oocytes derived from hormone added IVM was significantly(P<0.05) promoted by PMSG+hCG and the cleavage rate after 36-h, 42-h and 48-h maturation aws 53.0%, 56.7% and 45.6%, respectively. The highest developmental potential resulted from the oocytes derived from PMSG+LH -added IVM.

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Osteopontin enhances sperm capacitation and in vitro fertilization efficiency in boars

  • Chen, Yun;Wang, Kai;Zhang, Shouquan
    • Journal of Animal Science and Technology
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    • v.64 no.2
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    • pp.235-246
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    • 2022
  • In this study, we used more reliable experimental materials and methods to detect the effects of osteopontin (OPN) on boar sperm in vitro capacitation, acrosome reaction, and fertilization efficiency. We reorganized and obtained the OPN protein of the porcine source. Immunofluorescence and Western blot show the localization and expression of the OPN protein before and after sperm capacitation. To determine whether OPN can affect sperm during sperm capacitation, we examined cyclic adenosine monophosphate (cAMP) concentrations after sperm capacitation, and the results showed that OPN significantly increased the cAMP concentration in sperm (p < 0.05). Flow cytometry showed that 0.1 ㎍/mL OPN-treated sperm had better acrosome reaction ability. In vitro fertilization (IVF) showed that 0.1 ㎍/mL OPN significantly increased the rate of embryo division. In conclusion, this study found that 0.1 ㎍/mL porcine OPN protein can significantly improve porcine capacitated sperm motility, cAMP concentration after capacitation sperm, acrosome reaction ability, and embryo division during IVF and provides new clues to explore the mechanism of OPN's function on sperm.

Effects of Pyruvate and Taurine for In Vitro Preservation in Boar Semen and the Developmental Rates of Embryos Fertilized by Semen Treated with Antioxidant

  • Jang H. Y.;Cheong H. T.;Kim C. I.;Park C. K.;Yang B. K.
    • Reproductive and Developmental Biology
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    • v.29 no.2
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    • pp.133-139
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    • 2005
  • Oxidative stress is one of the major causes of failure in in vitro storage of boar semen. Reactive oxygen species (ROS) are known to be important mediators of such stress. The present study examined the effects of pyruvate and taurine on sperm motility and expression of BAD, Cytochrome c, Caspase-3 and Cox-2 protein in in vitro storage of boar semen, and tested the effect of semen treated with antioxidant with or without hydrogen peroxide on the development of IVM/IVF porcine embryos. Semen samples were transported to the laboratory at $17^{\circ}C$ within 2 hr after collection and were treated with different concentration of pyruvate $(1\~10mM)$ and taurine $(25\~100mM)$ with or without 250uM $H_2O_2$ respectively. The supplementation of pyruvate and taurine increased sperm motility in boar semen during in vitro incubation at $37^{\circ}C$. Expression of apoptosis protein (BAD, cytochrome c, caspase-3 and cox-2) were reduced in the group of boar semen treated with pyruvate and taurine when compared to the other groups. The developmental rates of IVM/IVF porcine embryos fertilized by semen treated with pyruvate and taurine were significantly increased when compared to control (P<0.005). These results indicate that supplementation of pyruvate and taurine as antioxidants in boar semen extender can improve the semen quality and increase in vitro development of porcine IVM/IVF embryos when boar semen treated with antioxidants was used for in vitro fertilization.

Effects of Melatonin on Gene Expression of IVM/IVF Porcine Embryos

  • Jang, H.Y.;Kong, H.S.;Choi, K.D.;Jeon, G.J.;Yang, B.K.;Lee, C.K.;Lee, H.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.1
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    • pp.17-21
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    • 2005
  • The effect of melatonin on in vitro embryo development and the expression of antioxidant enzyme gene in preimplantation porcine embryos was determined by modified semi-quantitative single cell RT-PCR. Porcine embryos derived from in vitro maturation /in vitro fertilization were cultured in 5% $CO_2$ and 20% $O_2$ at $37^{\circ}C$ in NCSU23 medium. Melatonin was added to medium at concentration of 1nM, 5 nM, and 10 nM. When treated with 1nM (39.0%) of melatonin, the developmental rate of embryos beyond the morula stage were higher than that of control group (31.0%) (p<0.05). Number of inner cell mass and tropectoderm cell in control (23.0${\pm}$0.5 and 17.3${\pm}$0.8), 1 nM (23.6${\pm}$0.6 and 19.0${\pm}$0.5), and 5 nM (23.3${\pm}$1.1 and 16.3${\pm}$0.8) treated with melatonin were higher than in 10 nM (20.0${\pm}$0.5 and 13.3${\pm}$0.8) treated with melatonin (p<0.05). To develop an mRNA phenotypic map for the expression of catalase, bax and caspase-3, single cell RT-PCR analysis were carried out in porcine IVM/IVF embryo. Catalase was detected in 0, 1 and 5 nM supplemented with melatonin, but bax and caspase-3 were detected in 10 nM treated with melatonin.

Efficient Derivation and Long Term Maintenance of Pluripotent Porcine Embryonic Stem-like Cells

  • Son, Hye-Young;Kim, Jung-Eun;Lee, Sang-Goo;Kim, Hye-Sun;Lee, Eugene;Park, Jin-Kyu;Ka, Hakhyun;Kim, Hyun-Jong;Lee, Chang-Kyu
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.1
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    • pp.26-34
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    • 2009
  • Porcine embryonic stem (ES) cells have a great potential as tools for transgenic animal production and studies of regulation of differentiation genes. Although several studies showed successful derivation of porcine ES-like cells, these cells were not maintained long-term in culture. Therefore, this study was conducted to establish porcine pluripotent ES-like cells using in vivo fertilized embryos and to maintain these cells in long term culture. Porcine ES-like cells from in vivo embryos obtained by immunosurgery or whole explant culture were successfully cultured for over 56 passages. Morphology of porcine ES-like cells was flat-shaped with a monolayer type colony. These cells stained for alkaline phosphatase throughout the culture. Furthermore, porcine ES-like cells reacted with antibodies against Oct-4, SSEA-1, SSEA-4, Tra-1-60, and Tra-1-81, which are typical markers of undifferentiated stem cells. To characterize the ability of porcine ES-like cells to differentiate into three germ layers, embryoid body formation was induced. After plating of these cells, porcine ES-like cells were spontaneously differentiated into various cell types of all three germ layers. In addition, porcine ES-like cells were successfully derived from IVF blastocysts in media containing human recombinant basic fibroblast growth factor.

Effect of nitric Oxide Compounds on the Development of Porcine IVM/IVF Embryos (Nitric Oxide 화합물 첨가가 돼지 체외수정란의 체외발육에 미치는 효과)

  • 박기은;박춘근;김정익;정희태;박동헌;양부근
    • Korean Journal of Animal Reproduction
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    • v.25 no.1
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    • pp.63-69
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    • 2001
  • This study was carried out to examine the effects of nitric oxide compounds (hemoglobin and L-NAME) on the development of porcine in vitro maturation (IVM) and in vitro fertilization (IVF) oocytes. Cumulus cell free embryos derived from porcine IVM/IVF oocytes were cultured in NCSU23 medium containing 1~5 $\mu\textrm{g}$/$m\ell$ hemoglobin added to 44 and 96hrs in culture times, and in NCSU23 medium containing 0, 10, 50 or 100mM L-NAME. The developmental rates beyond morulae stage in 0, 1 and 5 $\mu\textrm{g}$/$m\ell$ hemoglobin groups add to 44hrs in vitro culture times were 52.4%, 57.6% and 57.4%, respectively. The addition of hemoglobin groups made it slightly higher than the control group. The proportion of embryos developed to morulae and blastocysts in 1 $\mu\textrm{g}$/$m\ell$ hemoglobin add to 96hrs after in vitro culture (70.8%) was a little higher than those of 0 and 5 $\mu\textrm{g}$/$m\ell$ hemoglobin (66.2% and 62.8%). There was no significant difference in all groups (P〉0.05). The developmental rates beyond morulae stage in 0, 10, 50 and 100mM of L-NAME groups add to 96hrs after in vitro culture were 65.2%, 73.5%, 70.1% and 53.3%, respectively 10mM and 50mM L-NAME groups were significantly higher than in 0 and 100mM of L-NAME groups (P<0.05). In conclusions, these results indicate that L-NAME (10mM, 50mM) can increase the proportion of embryos that develop into morulae and blastocysts but hemoglobin did not affect.

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Comparison of Developmental Competency of Porcine Embryos Cloned with Mesenchymal Stem Cells and Somatic Cells

  • Jin Hai-Feng;Kumar B. Mohana;Cho Sung-Keun;Ock Sun-A;Jeon Byeong-Gyun;Balasubramanian S.;Choe Sang-Yong;Rho Gyu-Jin
    • Reproductive and Developmental Biology
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    • v.30 no.2
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    • pp.119-124
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    • 2006
  • The present study compared the developmental potential of cloned porcine embryos with mesenchymal stem cells (MSCs), fetal fibroblasts (FFs) and cumulus cells (CCs) by assessing the cleavage and blastocyst rate, total cell number, inner cell mass (ICM) ratio and apoptosis. MSCs were isolated by ficoll gradients from femur of -6 month old female pig, and maintained for primary cultures. FFs from a female fetus at ${\sim}30$ day of gestation were established, and CCs were obtained from cumulus oocyte complexes (COCs) aspirated from $3{\sim}6$ mm follicles in diameter. Donor cells at $3{\sim}4$ passage were employed for nuclear transfer (NT). COCs were matured and fertilized in vitro(IVF) as control. Cleavage rate was significantly (P<0.05) higher in IVF than in NT embryos with MSCs, FFs and CCs ($82.7{\pm}8.9%\;vs\;70.6{\pm}5.4,\;68.7{\pm}5.1\;and\;63.4{\pm}5.6%$, respectively). However, blastocyst rates in IVF and NT embryos derived from MSCs ($24.5{\pm}2.8\;and\;20.4{\pm}8.3%$) did not differ, but were significantly (P<0.05) higher than NT derived from FFs and CCs ($10.6{\pm}2.7\;and\;9.8{\pm}2.1%$). Total cell number and the ratio of ICM to total cells among blastocysts cloned from MSCs ($35.4{\pm}5.2\;and\;0.40{\pm}0.09%$, respectively) were significantly (P<0.05) higher than those from FFs and CCs ($24.9{\pm}6.2%\;vs\;0.19{\pm}0.16,\;23.6{\pm}5.5\;and\;0.17{\pm}0.16%$, respectively). Proportions of TUNEL positive cells in NT embryos from FFs and CCs ($6.9{\pm}1.5\;and\;7.4{\pm}1.7%$, respectively) were significantly (P<0.05) higher than in MSCs ($4.8{\pm}1.4%$) and IVF ($2.3{\pm}0.9%$). The results demonstrate that MSCs have a greater potential as donor cells than FFs and CCs in achieving enhanced production of cloned porcine embryos.