• Title/Summary/Keyword: oviduct epithelial cell

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Melatonin Attenuates Nitric Oxide Induced Oxidative Stress on Viability and Gene Expression in Bovine Oviduct Epithelial Cells, and Subsequently Increases Development of Bovine IVM/IVF Embryos

  • Kim, J.T.;Jang, H.Y.;Park, C.K.;Cheong, H.T.;Park, I.C.;Yang, B.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.24 no.2
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    • pp.190-197
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    • 2011
  • The objective of the present study was to elucidate the fundamental mechanism of bovine oviduct epithelial cell (BOEC) co-culture on developmental capacity of bovine IVM/IVF embryos and to determine whether or not melatonin acts as an antioxidant in BOEC culture and subsequent embryo development. These studies examined the effects of melatonin against NO-induced oxidative stress on cell viability, lipid peroxidation (LPO) and the expression of antioxidant genes (CuZnSOD, MnSOD and Catalase) or apoptosis genes (Bcl-2, Caspase-3 and Bax) during BOECs culture. We also evaluated the developmental rates of bovine IVM/IVF embryos with BOEC co-culture, which were pre-treated with melatonin ($1,000\;{\mu}M$) in the presence or absence of sodium nitroprusside (SNP, $1,000\;{\mu}M$) for 24 h. Cell viability in BOECs treated with SNP (50-$2,000\;{\mu}M$) decreased while melatonin addition (1-$1,000\;{\mu}M$) increased viability in a dose-dependent manner. Cell viability in melatonin plus SNP ($1,000\;{\mu}M$) gradually recovered according to increasing melatonin addition (1-$1,000\;{\mu}M$). The LPO products were measured by thiobarbituric acid (TBA) reaction for malondialdehyde (MDA). Addition of melatonin in BOEC culture indicated a dose-dependent decrease of MDA, and in the SNP group among BOECs treated with SNP or melatonin plus SNP groups MDA was significantly increased compared with SNP plus melatonin groups (p<0.05). In expression of apoptosis or antioxidant genes detected by RT-PCR, Bcl-2 and antioxidant genes were detected in melatonin or melatonin plus SNP groups, while Caspase-3 and Bax genes were only found in the SNP group. When bovine IVM/IVF embryos were cultured for 6-7 days under the BOEC co-culture system pre-treated with melatonin in the presence or absence of SNP, the highest developmental ability to blastocysts was obtained in the $1,000\;{\mu}M$ melatonin group. These results suggest that melatonin has an anti-oxidative effect against NO-induced oxidative stress on cell viability of BOECs and on the developmental competence of bovine IVM/IVF embryo co-culture with BOEC.

Study on Development in vitro of Follicular Oocytes fertilized in vitro in Korean Native Cattle (한우에 있어서 체외수정된 난포란의 배발생에 관한 연구)

  • 서태광;박항균
    • Korean Journal of Animal Reproduction
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    • v.14 no.4
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    • pp.253-261
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    • 1990
  • This study was carried out to investigate the factors affecting development in vitro of follicular oocytes fertilized in vitro in Korean Native Cattle. The bovine ovaries were obtained at a slaughter house and the follicular oocytes were recovered by aspirating the follicular fluid from the visible follciles of 3~6mm. The bovine oocytes were matured in vitro for 20~24 hours in TCM0-199 containing 10% FCS and hormones (0.02AU/ml FSH, 10$\mu\textrm{g}$/ml LH, 1$\mu\textrm{g}$/ml estradiol-17$\beta$). The matured oocytes were fertilized in vitro using Percoll-separated frozen-thawed spermatozoa in BO solution containing caffeine(5mM) and heparin(10$\mu\textrm{g}$/ml). Twenty-four hours after insemination, the oocytes were cultured in vitro and then the effects of cumulus cell layer, co-culture with cumulus cells, bovine oviduct epithelial cells from ampulla or isthmus on development of ova, were studied. The results obtained are summarized as follows : 1. The in vitro development degree of oocytes attached with compact and dense layered cumulus cells was higher than that with 3~4 layered cumulus cells to be 9~16cells(P<0.01). 2. When the in vitro fertilized oocytes were co-cultured with bovine oviduct epithelial cells or cumulus cells, the development rate to be morula was 20.2% and 12.7%, respectively and the rates were higher than that of control, 2.1%(P<0.05). 3. The development rate to be morula was 15.8% and 23.8%, respectively when the in vitro fertilized oocytes were co-cultured with bovine oviduct epithelial cells from ampulla or isthmus, and the rates were higher than that of control, 0%(P<0.05%).

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Studies on Production and Efficient Utilization of Livestock Embryos by In Vitro Fertilization and Miceomanipulation I. Transfer and Freezing of In Vitro Fertilized Rabbit and Bovine Oocytes Matured In Vitro (체외수정 및 미세조작에 의한 가축배의 생산가 효율적 이용에 관한 연구 I. 체외성숙.체외수정된 토끼 및 소 배의 이식과 동결)

  • 김창근;정영채;이근상;김희석;정진태;윤종택;최미호;이장희;김광식
    • Korean Journal of Animal Reproduction
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    • v.17 no.1
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    • pp.57-68
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    • 1993
  • This stduy was carried out to find a reliable method for the production of in vitro fertilized embryos having more excellent development capacity and freezability in the rabbit and cattle. The greatest number of rabbit oocytes was recovered 6hrs after HCG injection(P<0.05). The maturation rate in vitro was slightly higher in the oocytes(6-h-oocytes) from 6h than those (8-h-oocytes)from 8 hrs after HCG injection and the beneficial effect of FSH during oocyte maturation was significantly great in the oocytes from large follicles. The cleavage rate into 2-to-6-cell stage was not differ between the 6-h-oocytes and 8h-oocytes, but the cleavage of these oocytes was greatly promoted by FSH addition to maturation medium and the cleavge of 8-h-oocytes matured without FSH was significantly low. The embryo development into 16-cell to morula was not promoted by the co-culture with rabbit oviduct epithelial cells. The freezability by embryo stages was ovidusly high at 4-cell and morula stage in 6-h-oocytes and the viability of 16-cell embryos from 8h-oocytes was similar to that of morula stage. The implantation sites after surgical tranfer of fresh rabbit embryos were not implanted. In bovine experiment, the in vitro development into 16-cell and morula after in vitro maturation and fertilization in the follicular oocytes was slightly improved by the co-culture with granulosa cells compared to that with oviduct epithelial cells and the frozen-thawed viability rate of these embryos ranged from 14 to 40%. The excellent fresh embryos were transferred nonsurgically to 6 recipients, but were not pregnant.

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Nuclear Remodeling and In Vitro Development Following Somatic Cell Nuclear Transfer in Swine

  • Yoon Jong-Taek;Kim Yong-Yeup;Lee Jong-Wan;Min Kwan-Sil;Hwang Seongsoo
    • Reproductive and Developmental Biology
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    • v.28 no.4
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    • pp.241-245
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    • 2004
  • This study was conducted to investigate nuclear remodeling and developmental rate following nuclear transfer of fetal fibroblast cells, ear skin cells and oviduct epithelial cells into porcine recipient oocytes. To test par-thenogenetic activation, oocytes were treated with a 6-dimethylaminopurine (6-DMAP), a single DC-pulse (DC), calcium ionomycin (ionomycin), DC+6-DMAP and ionomycin + 6-DMAP after in vitro maturation. For nuclear transfer, in vitro matured oocytes were enucleated, and donor cells were transferred into oocytes. Cloned embryos were fused and stimulated with 6-DMAP for 4 h and cultured in vitro for 6 days. Among treatments for parthenogenesis, the activation rate of DC +6-DMAP treatment was significantly higher than that of single treatment roups (p<0.01), except for DC treatment group. However, the difference was not significant in activation rate compared to other complex treatment groups. Nuclear swelling of the cloned embryos was initiated at 60 min after stimulation and increased afterwards. Fusion rates were not different among different donor cells. Cleavage rates of DC treatment groups were significantly higher than those of DC+6-DMAP treatment groups (p<0.05) in case that fetal fibroblast and ear cells were used for nuclear donor. The cloned embryos from developed to blastocysts in oviduct epithelial cell nuclear transfer with DC+6-DMAP treatment was significantly higher compared to those with DC only treatment (p<0.05). However, no blastocyst was developed from nuclear transfer of fetal fibroblast and ear cells regardless of activation treatments. Based on these results, a proper activation stimulation may be necessary to increase the activation rate and the development to blastocyst in cloned porcine embryos.

The Early Mammalian Embryos and the Role of Oviduct (포유동물 초기배아왕 수란관의 작용)

  • 김해권;윤용달;이영기
    • Korean Journal of Animal Reproduction
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    • v.18 no.4
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    • pp.285-297
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    • 1995
  • The mammalian oviduct is a place where ontogeny of an animal begins. Nowadays, however, it is possilbe to manipulate a part of physiological events occurring in the oviduct so that fertilization of gametes and early embryonic development of zygotes could proceed outside oviductal environment. Rabbit zygotes readily develop to blastocysts in a conventional culture condition. Most of the mouse fertilized eggs do so when cultured under a specific environment, e.g., in a medium containing ethylenediamine tetraacetic acid. Similarly, a significant number of zygotes from rat, sheep, pig or cattle can develop to blastocysts if they are cultured in the presence of particular component which appear to be somewhat species-specific. Instead of changing the components of medium, somatic cells including oviductal epithelial cells, have widely been used to improve mammalian embryonic development in vitro. Many investigators have reported that mammalian zygotes, whether fertilized in vivo or in vitro, could develop to blastocysts when they were cultured on a monolayer of various kinds of somatic cells or even in a somatic cell-conditioned medium. While little is known about the nature of embryotrophic factor(s) produced in vitro by somatic cells, the existence fo oviduct-specific protein(s) has consistently been demonstrated in many laboratories. Some of these proteins are reported to be associated with oviductal eggs. However, the physiological role of these proteins has still to be determined. Recently we observed that the perivitelline space of mouse oocytes was fluorescently stained with various fluorochrome-protein conjugates following ovulation into the oviducts or upon their expossure to oviductal extracts. Furthermore, it was also found that cattle or pig oviductal fluid gave similar results when examined using mouse ghost ZP. These observations lead to suggest that mammalian oviduct induces changes of biochemical properties of oocytes. Further studies are needed to clarify the nature of oviductal factor(s) and the physiological meaning of the reaction.

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Protective Effect of BOEC Co-Culture System against Nitric Oxide on Development of Bovine IVM/IVF Embryos

  • Jang, Hyun-Yong;Jung, Yu-Sung;Li, Zheng-Yi;Yoon, Hyoung-Jong;Cheong, Hee-Tae;Kim, Jong-Taek;Park, Choon-Keun;Yang, Boo-Keun
    • Reproductive and Developmental Biology
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    • v.32 no.3
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    • pp.167-173
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    • 2008
  • Somatic cells such as oviduct epithelial cell, uterine epithelial cell, cumulus-granulosa cell and buffalo rat river cell has been used to establish an effective culture system for bovine embryos produced in in vitro. But nitric oxide (NO) metabolites secreted from somatic cells were largely arrested the development of bovine in vitro matured/ in vitro fertilized (IVM/IVF) embryos, suggesting that NO was induced the embryonic toxic substance into culture medium. The objective of this study was to investigate whether BOEC co-culture system can ameliorate the NO-mediated oxidative stress in the culture of bovine IVM/IVF embryos. Therefore, we evaluated the developmental rate of bovine IVM/IVF embryos under BOEC co-culture system in the presence or absence of sodium nitroprusside (SNP), as a NO donor, and also detected the expression of growth factor (TGF-$\beta$, EGF and IGFBP) and apoptosis (Caspase-3, Bax and Bcl-2) genes. The supplement of SNP over 5 uM was strongly inhibited blastocyst development of bovine IVM/IVF embryos than in control and 1 uM SNP group (Table 2). The developmental rates beyond morulae stages of bovine IVM/IVF embryos co-cultured with BOEC regardless of SNP supplement (40.4% in 5 uM SNP+ BOEC group and 65.1% in BOEC group) were significantly increased than those of control (35.0%) and SNP single treatment group (23.3%, p<0.05: Table 3). The transcripts of Bax and Caspase-3 genes were detected in all experiment groups (1:Isolated fresh cell (IFC), 2:Primary culture cell (PCC), 3:PCC after using the embryo culture, 4: PCC containing 5 uM SNP and 5: PCC containing 5 uM SNP after using the embryo culture), but Bcl-2 gene was not detected in IFC and PCC (Fig. 1). In the expression of growth factor genes, TGF-$\beta$ gene was found in all experimental groups, and EGF and IGFBP genes were not found in IFC and PCC (Fig. 2). These results indicate that BOEC co-culture system can increase the development beyond morula stages of bovine IVM/IVF embryos, possibly suggesting the alleviation of embryonic toxic substance like nitric oxide.

Studies on the Effects of Co-culture of Cumulus Cell, Oviduct Epithelial Cell and Hormones and Freezing on !fl Vitro Developmental Rates of Bovine Embryos (소 수정란의 난구세포, 난관 상피세포, 호르몬과의 공배양 및 동결이 체외발생에 미치는 영향에 관한 연구)

  • 이종진;이명헌;김상근
    • Journal of Embryo Transfer
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    • v.12 no.1
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    • pp.27-36
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    • 1997
  • The studies were carried out to investigate the effects of co-culture with cumulus cells and oviduct epithelial cells on the in vitro fertilization and cleavage rate of bovine follicular cocytes and to determine the optimum thawing temperature and equilibration time on in vitro developmental rate of frozen bovine embryos. The ovaries were obtained from slaughtered Korean native cows. The follicular oocytes were cultured in TGM-199 medium containing 10 IU /ml의 PM SG, 10 IU /ml의 hCG, ip g/ml의 $\beta$-estradiol and 10% FCS for 24~48 hrs in incubator with 5% $CO_2$ in air at 38.5$^{\circ}C$. The bovine embryos following dehydration by cryoprotective agents and a various concentration of sucrose were directly plunged into liquld nitrogen and thawed in 3$0^{\circ}C$ water. Survival rate was defined as developmental rate on in vitro culture or FDA-test. The results are sunanarized as followes :1. The in vitro fertilization and in vitro developmental rates of bovine oocytes co-cultured with cumulus cells in TCM499 medium were 75.0~76.8% and 17.3~27.6%, respect-ively. And in-vitro fertilization rates of cumulus-enclosed oocytes(55.4%)were significantly(p<0.05) higher than cumulus-denuded oocytes (23.1%). 2. The in vitro fertilization and in vitro developmental rates of bovine oocytes co-cultured with l$\times$ l04cells /ml, 1 x l06cells /ml, lx l08cells /ml and 1 x l015cells /ml oviduct epithelial cells in TCM-199 medium were 74.5~77.8% and 15.7~21.20 respectively.3. The in-vitro fertilization and in vitro developmental rates of bovine oocytes cocultured in '1CM-199 media containing PMSG, hCG, PMSG+hCG. PMSG+$\beta$-estradiol, hCG+$\beta$-estradiol 0 to 40 hrs after insemination were 74.0~77.4% and l8.9~23.l%, re-spectiv ely.4.The survival rates of bovine embryos thawed after rapid freezing in the freezing medium containing a various concentration of sucrose added 1.5M and 2.OM glycerol,DMSO and propanediol were 23.5~31.4% and 20.6~34.l%, respectively. 5. The temperature thawed at 3$0^{\circ}C$ after rapid freezing of bovine embryos resulted in a significantly higher embryos survival rate than did at 2$0^{\circ}C$ and 35$^{\circ}C$.6. The equilibration time on the survival rates of bovine embryos was attained after short period of time(2.5~5 min.) in the freezing medium higher than long period of time (10~20min.). (Key words : bovine embryos, co-culture, freezing, in vitro development)

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The Effects of Polyampholyte on Vitrification Process for cryopreservation of Bovine Oviduct Epithelial Cell (Polyampholyte가 소난관상피세포의 초자화 동결방법에 미치는 영향)

  • Kim, Sung Woo;Lee, Jae-Yeong;Kim, Chan-Lan;Yu, Yeonhee;Lee, Sung Soo;Ko, Yeoung-Gyu
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.6
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    • pp.527-535
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    • 2020
  • The purpose of this study was to establish a simple vitrification protocols to preserve animal cell lines derived from tissues of livestock that could be recultured. Bovine oviduct epithelial cells (BOEC) were used for the vitrification process using a 0.25 ml straw to increase cryopreservation efficiency. BOEC was cultured from the oviduct of 3.5-day estrus state, and the commercially available polyampholyte StemCell KeepTM was used as a cryoprotective agent. Using different concentrations, the viability rates of BOEC in 5, 10, 25, 50, 75, and 100% in freezing media were investigated. Survivability was determined using a differential staining technique using a trypan blue test and a CYTO-13/PI staining protocol. The viability rates of BOEC in the trypan blue test were 5.6±11.8, 12.5±7.2, 53.0±2.7, 85.1±6.9, 79.8±0.6, and 60.7±6.7% with a respective concentration of StemCell KeepTM. The viability rates in CYTO-13/PI staining were 4.6±2.5, 30.8±12.1, 58.4±2.5, 85.5±1.2, 79.8±0.6, and 71.2±1.2%, respectively. These results indicate that BOEC could be preserved with StemCell KeepTM without toxicity in a 0.25-ml straw. The optimal concentration of vitrification solution with StemCell KeepTM was determined to be 50% and can be considered as a proper preservation method for cryobanking.

Studies on the Improvement of Performance and Reproductive Efficiency in Farm Animal Ⅵ. Studies on Improvement of Development Potential of In vitro-fertilized Bovine Follicular (가축의 개량 및 번식효율 증진에 관한 연구 Ⅵ. 소에 있어서 체외수정 난포란의 발생능 향상에 관한 연구)

  • 정영채;김창근;류범용;윤종택;김훈태;이규승
    • Korean Journal of Animal Reproduction
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    • v.14 no.1
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    • pp.73-83
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    • 1990
  • These studies were carried out to find the proper conditions for in vitro maturation and fertilization of bovine follicular oocytes and culture methods capable of further developing early embryos. For these objectives, the cleavage rate of oocytes matured and fertilized in vitro was investigated under medium supplemented with hormones and estrous cow serum and season of oocytes collection as well as different cumulus cell stage before insemination. Finally, 2~8 cell embryos were cultured in in vitro and in vitro culture system to investigate developmental capacity into morula. 1. Cleavage rate of oocytes matured in vitro was 27%(20/73) for A(LH+FSH+estradil-17$\beta$+10% FBS), 38%(27/71) for B(LH+10% ECS) and 27%(15/56) for C(10% ECS), respectively. Supplement B showed more higher rate and 4~8 cell embryos were also obtained much more in this group(67%, 18/27). In vitro maturation rate of follicular oocytes cultured in TCM 199 supplemented withLH and 10% ECS was 88%(75/85). 2. Cleavage rate(15%, 10/65) of oocytes collected in summer was significantly lower than in fall(47%, 42/89). 3. Cleavage rate(15%, 10/65) of oocytes collected in summer was significantly lower than in fall(47%, 42/89). 3. Cleavage rate(15%, 10/65) of oocytes with partially removed cumulus cell before insemination was more higher than that(44%, 27/62) of oocytes with intact cumulus cell. 4. The frequency of development from early cleaved embryos into morula was 6%(4/65), 12%(4/33) for co-culture of cumulus cell monolayer and bovine oviduct epithelial cell monolayer, respectively and 25%(6/25) in ligated rabbit oviduct.

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