• Title/Summary/Keyword: Embryos In vitro development

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Post-thaw Survival of Mouse Embryos of Various Developmental Stages Cryopreserved by Vitrification in Ethylene Glycol-Based Solution (Ethylene Glycol을 이용한 유리화 동결시 배 발달단계별 생쥐배의 생존성)

  • 정기화;공일근;박준규;곽대오;박충생
    • Journal of Embryo Transfer
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    • v.8 no.1
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    • pp.31-36
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    • 1993
  • The post-thaw survival of mouse embryos of the various developmental stages was determined after cryopreservation by vitrification in a solution containing ethylene glycol, Ficoll and sucrose (EFS). All the embryos were equilibrated for 2 minutes just prior to freezing. The number of blastomeres during in vitro development was counted by nuclei higher rates of post-thaw survival were obtained from the embryos of 2-cell(92.2%), 8-cell(77.2%) or morula stage(90.0%) than those of blastocyst stage(62.7%). The number of blastomeres per embryo following in vitro culture for 24 hours was significantly(P<0.05) smaller as 66.0f22.3 in vitrified and thawed morulae than fresh morulae(91.7$\pm$12.2).

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Effects of Growth Factors and Hexoses on In Vitro Development in Porcine Embryos (돼지수정란의 체외발육에 있어서 Growth Factors와 Hexoses의 영향)

  • 윤선영;이상영;정희태;양부근;김정익;박춘근
    • Korean Journal of Animal Reproduction
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    • v.27 no.3
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    • pp.249-258
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    • 2003
  • The aim of this study was to investigate the effects of different hexoses in medium with IGF-I and/or EGF on in vitro development of porcine embryos. In first experiment, when the embryos were cultured in medium with concentrations of 5 ng/ml IGF-I and 10 ng/ml EGF, the morula and blastocyst rates were higher than in another culture conditions (P<0.05). In second experiment, the effect of IGF-I in medium with different hexoses during the embryo culture was examined. The higher cleavage rates were obtained in medium with glucose and IGF-I (P<0.05). However, the higher proportion of embryos developed to morula and blastocyst stages in medium with IGF-I were obtained than in medium without IGF-I in medium with glucose, mannose and galactose. In third experiment, the effect of EGF on in vitro development of porcine embryos in medium with different hexoses were examined. In the culture medium was supplemented with glucose, the higher proportions (P<0.05) of embryos developed to molura and blastocyst stages were obtained in medium with that than without EGF. However, the proportions of embryos developed to blastocyst stage were not significantly different between with and without of EGF in medium with different hexoses. In firth experiment, the effects of presence of IGF-I and EGF in medium with different hexoses on in vitro development of porcine embryos were examined. When culture medium was supplemented with IGF-I and EGF, the higher proportions of oocytes cleaved and developed to 8-cell stage were obtained in medium with glucose than mannose, galactose and fructose (P<0.05). These results show that glucose and growth factors, supported the development in vitro of porcine embryos, especially with greater embryo cleavage and development in medium with glucose added to media with IGF-I and/or EGF.

Viability of Somatic Cell Nuclear Transfer Embryos following Embryo Transfer in Korean Native Striped Cattle (Bos namadicus Falconer, Chikso)

  • Kwon, Dae-Jin;Park, Joo-Hee;Hwang, Hwan-Sub;Park, Yeon-Soo;Park, Choon-Keun;Yang, Boo-Keun;Cheong, Hee-Tae
    • Reproductive and Developmental Biology
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    • v.31 no.4
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    • pp.235-240
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    • 2007
  • This study was conducted to examine the viability of Korean native striped cattle (Bos namadicus Falconer, Chikso) clone embryos after embryo transfer. Chikso somatic cell nuclear transfer (SCNT) embryos were produced by fusion of ear skin cells derived from a female Chikso with enucleated oocytes matured in vitro for 18-24 hr. After in vitro culture of SCNT embryos for 7 to 8 days, fresh or vitrified blastocysts derived from SCNT were transferred into a uterine horn of recipient cows. Fifteen of total 43 recipients were pregnant at Day 50 and 4 recipients were maintained to term. Three IVF-derived calves and 1 clone Chikso calf were born. Pregnancy rate was higher when fresh embryos were transferred to recipients compared to vitrified embryos, but development to term was not different between both groups. The clone Chikso calf died at 5 days after birth due to the fullness of amniotic fluid in rumen and the infection of umbilical cord. The result of the present study shows that clone Chikso calf can produced from the embryo transfer of SCNT embryos, however, solution of abortion problem is necessary to improve the cloning efficiency.

Optimization of In Vitro Murine Embryo Culture Condition based on Commercial M16 Media

  • Lee, Soo Jin;Bae, Hee Sook;Koo, Ok Jae
    • Journal of Embryo Transfer
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    • v.30 no.4
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    • pp.315-317
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    • 2015
  • In vitro culture of murine embryos is an important step for in vitro production systems including in vitro fertilization and generations of genetically engineered mice. M16 is widely used commercialized culture media for the murine embryos. Compared to other media such as potassium simplex optimization medium, commercial M16 (Sigma) media lacks of amino acid, glutamine and antibiotics. In the present study, we optimized M16 based embryo culture system using commercialized antibiotics-glutamine or amino acids supplements. In vivo derived murine zygote were M16 media were supplemented with commercial Penicillin-Streptomycin-Glutamine solution (PSG; Gibco) or MEM Non-Essential Amino Acids solution (NEAA; Gibco) as experimental design. Addition of PSG did not improved cleavage and blastocyst rates. On the other hand, cleavage rate is not different between control and NEAA treated group, however, blastocyst formation is significantly (P<0.05) improved in NEAA treated group. Developmental competence between PSG and NEAA treated groups were also compared. Between two groups, cleavage rate was similar. However, blastocyst formation rate is significantly improved in NEAA treated group. Taken together, beneficial effect of NEAA on murine embryos development was confirmed. Effect of antibiotics and glutamine addition to M16 media is still not clear in the study.

Study on the Freezing of Bovine Embryos II. Bovine embryos survival after freezing and thawing (우수정란의 동결보존에 관한 연구 II. 동결보존후 융해난자의 생존성)

  • 김정익;양부근;남상헌;이상영;임석기;고광두
    • Korean Journal of Animal Reproduction
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    • v.9 no.1
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    • pp.36-39
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    • 1985
  • This experiment was carried out to investigate the morphology of bovine embryos thawed after deep freezing at -196$^{\circ}C$ and the development of frozen-thawed embryos after in vitro culture in Ham's F-10 medium with 10% NBCS. The results obtained were summarized as follows: 1. The propotion of embryos which a, pp.ared mophologically normal was averaged 77.5% (79/102). 2. The morphologically normal rate of frozen-thawed blastocyst (78.6%) was higher than that of morula (76.7%), but there was no significant difference. 3. Normal development was observed in 20 of 68 embryos cultured for 24-72hr in medium and overall survival rate was 29.4%. 4. Survival rate fo blastocyst (33.3%) was higher than that of morula (25.7%).

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Endoplasmic reticulum stress in periimplantation embryos

  • Michalak, Marek;Gye, Myung Chan
    • Clinical and Experimental Reproductive Medicine
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    • v.42 no.1
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    • pp.1-7
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    • 2015
  • Stress coping mechanisms are critical to minimize or overcome damage caused by ever changing environmental conditions. They are designed to promote cell survival. The unfolded protein response (UPR) pathway is mobilized in response to the accumulation of unfolded proteins, ultimately in order to regain endoplasmic reticulum (ER) homeostasis. Various elements of coping responses to ER stress including Perk, Ask1, Bip, Chop, Gadd34, Ire1, Atf4, Atf6, and Xbp1 have been identified and were found to be inducible in oocytes and preimplantation embryos, suggesting that, as a normal part of the cellular adaptive mechanism, these coping responses, including the UPR, play a pivotal role in the development of preimplantation embryos. As such, the UPR-associated molecules and pathways may become useful markers for the potential diagnosis of stress conditions for preimplantation embryos. After implantation, ER stress-induced coping responses become physiologically important for a normal decidual response, placentation, and early organogenesis. Attenuation of ER stress coping responses by tauroursodeoxycholate and salubrinal was effective for prevention of cell death of cultured embryos. Further elucidation of new and relevant ER stress coping responses in periimplantation embryos might contribute to a comprehensive understanding of the regulation of normal development of embryonic development and potentiation of embryonic development in vitro.

Early Mouse and Human Embryonic Development in vitro by Co-culture with Human Oviduct Epithelial Cells (인간 난관 상피세포와의 공동배양이 생쥐와 인간수정란의 체외발달에 미치는 영향에 관한 연구)

  • Ko, J.J.;Chung, M.K.;Do, B.R.;Oum, K.B.;Yoon, T.K.;Cha, K.Y.
    • Clinical and Experimental Reproductive Medicine
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    • v.19 no.2
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    • pp.133-141
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    • 1992
  • We examined effects of co-culture with human oviduct epithelial cells (HOEC) on the development of mouse and human embryos from early embryonic· stage to late morula or blastocyst stage (LM or B). In human, embryos were transferred and pregnancy rate was investigated. The HOEC, collected from surgically removed fallopian tube, were cultured in medium-199 supplemented with 20 % fetal cord serum (FCS). The HOEC were characterized by using immunocytochemical staining with anticytokeratin antibody and then used for cultures of mouse and human embryos. Results obtained from co-culture system were as follows. Development rate of mouse embryos was improved by co-culture system at late developmental stage (p<0.025). Human supernumerary embryos remained after transfer, unsuitable for freezing because of their poor quality, were co-cultured for 72hrs. Co-culture (78.79%) or conditioned medium (78.26%) system improved the developmemt rate, significantly, in comparision with control (11.11%)(p<0.00l). Co-cultured (85.71%) human zygotes for 24hrs showed the better development rate in comparision with control (50.00%) (p<0.01). When we transferred embryos cultured with the HOEC to patients, we obtained one pregnancy. Co-cultured human zygotes for 24hrs showed the better quality and viability for the replacement in comparision with control (p<0.01). In addition, improved pregnancy rate was obtained. Our results suggest that the co-culture system can rescue early degenerating embryos by improving early development and yield a resonable number of blastocyst for the appropriate replacement. The effect provided by cultured HOEC is not species specific for the development of embryos and it can be used to overcome in vitro blocks for the development. And also the co-culture system offers the possibility to freeze embryos at blastocyst stage which is more sucessful stage for the freezing. The HOEC monolayer may provide some stimulus via specific factor, which is unknown, to the development of embryos. Our results showed that the co-culture system with HOEC can be an alternative to conventional culture system.

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Various Expression Pattern of Beta-catenin in the Preimplantation Stage of Porcine Embryos

  • Han, Jee-Soo;Koo, Deog-Bon;Shin, Bo-Rami;Lee, Kyung-Kwang;Han, Yong-Mahn
    • Proceedings of the KSAR Conference
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    • 2003.06a
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    • pp.56-56
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    • 2003
  • Beta-catenin is very important in early development including involvement in cell adhesion, cell signaling, and developmental fate specification. Cell-cell interaction is an important process during mammalian embryonic development. In preimplantation embryos, embryonic compaction is the process of increased cellular flattening and adhesion of junctional complexes and results in a polarized distribution. Beta-catenin is associated with embryonic compaction in mammals. Here, we examined the relationship between beta-catenin expression and compaction in porcine embryos derived from in vitro fertilization. First of all, we investigated beta-catenin expression in each embryonic developmental stage and also focused on expression pattern according to full, partial and non-compaction at morula stage. We used the immunocyto-chemical method in this research. To confirm compaction affects on the embryonic development, we compared between compaction and developmental rates to the blastocyst. The result showed that compaction and non-compaction rates were 14.6% and 63.8% at 4 days after IVF, respectively The developmental rates to the blastocyst and their total cell number were 50.9% vs 36.4% and 41.4$\pm$11.5 vs 26.8$\pm$12.7 in compaction and non-compaction groups. Although no difference was detected in the ratio of ICM to total cells between two groups, total cell number of the blastocysts in compaction group was superior to that of the blastocysts in non-compaction group (P<0.05). Expression of beta-catenin appeared in the boundary of membrane surface between blastomeres in 2- and 4-cell stage, and observed irregular pattern from 8-cell to blastocyst stage. We also investigated beta-catenin expression pattern according to the degree of compaction in the 3 groups; full, partial (>50%) and non-compaction. The expression signal in fully compacted embryos was stronger than those of partial and non-compacted embryos. Especially, beta-catenin expression appeared various patterns in morula stage suggesting the aberrant distribution of beta-catenin is affected by compaction patterns. Our results suggest that abnormal beta-catenin expression was affected by embryo quality and further development in porcine embryos in vitro.

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IN VITRO DEVELOPMENT OF BOVINE ONE-CELL EMBRYOS FERTILIZED IN VITRO IN SERUM- AND FEEDER CELL-FREE CULTURE SYSTEMS

  • Ohboshi, S.;Hanada, K.;Zhao, J.;Hattori, M.;Fujihara, N.;Umetsu, R.;Yoshida, T.;Tomogane, H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.9 no.5
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    • pp.583-590
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    • 1996
  • The purpose of this study was to evaluate some factors in the bovine embryonic development from one-cell to blastocyst using modified synthetic oviduct fluid medium (mSOFM), after maturation and in vitro fertilization of the oocytes. The embryonic development to the blastocyst stage was assessed at 7-10 days after in vitro fertilization, and the total cells in the blastocysts were counted by staining nuclei with fluorochrome. Some commercial calf sera (CS) and a superovulated cow serum had different effects on the embryonic development to the blastocyst stage (8.6-21.4%), dependent upon their product lots, although the development might not be affected at least by serum progesterone levels. ${\beta}$-Mercaptoethanol (${\beta}$-ME) supplemented into mSOFM was effective to the embryonic development (27.8%), as well as the co-culture system with cumulus cells (19.5%). In a serum- and feeder cell-free culture using mSOFM containing several growth factors and ${\beta}$-ME instead of CS plus co-cultured cumulus cells, bovine serum albumin (BSA, fraction V), but not polyvinyl alcohol (PVA), was highly effective in embryonic development to the blastocyst stage, almost comparable to CS in the serum-contained culture (CS, BSA and PVA; 27.8, 19.5 and 5.7%, respectively). However, fatty acid free BSA rather reduced the number of developed blastocysts, compared with fraction V BSA (7.3 vs 29.4%). In the serum- and feeder cell-free culture, supplement of glucose to the medium (final 2.0 mM) stimulated the cell proliferation of developing embryos 120 hr after in vitro fertilization. These results indicated that a serum-free medium supplemented with ${\beta}$-ME could successfully support the development of bovine one-cell embryos to the blastocyst stage. Moreover, supplement of glucose and fatty acids to the medium might support preferably the development and cell proliferation of embryos.

Effect of Thiol Compounds and Antioxidants on In Vitro Development and Intracellular Glutathione Concentrations of Bovine Embryos Derived from In Vitro Matured and In Vitro Fertilized II. Effect of Antioxidants with Somatic Cells on Development and Intracellular Glutathione Concentrations of Bovine IVM/IVF Embryos (Thiol 화합물과 항산화제 첨가배양이 소 체외수정란의 체외발육과 세포내 Glutathione 농도 변화에 미치는 효과 II. 항산화제 첨가와 체세포 공동배양이 소 체외수정란의 체외발육과 세포내 Glutathione 농도 변화에 미치는 영향)

  • 양부근;박동헌;우문수;정희태;박춘근;김종복;김정익
    • Korean Journal of Animal Reproduction
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    • v.21 no.4
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    • pp.345-353
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    • 1997
  • Antioxidants and antioxidants with somatic cell co-culture, bovine oviduct epithelial cells(BOEC) and buffalo rat liver cells(BRLC), were studied as a mean of increasing the development and intracellular glutathione(GSH) concnetrations of bovine embryos derived from in vitro matured(IVM) and in vitro fertilized(IVF) oocytes. Cell numbers and intracellular GSH concentrations of blastocysts were also counted. The developmental rate beyond morula stages in CRlaa containing taurine(2.5mM), superoxide dismutase(SOD, 600U) and catalase(250U) were 1%, 75.0%, 64.8% and 62.3%, respectively. The developmental rate in antioxidant groups was significantly higher than in control(P<0.05). The intracellular GSH concentrations of blastocysts cultured in 0, 2.5mM taurine, 600U SOD and 250U catalase were 33.8pM, 39.3pM, 42.3pM and 54.8pM, respectively. This result indicated that the developmental rates and intracellular GSH concentrations of catalase group was significantly higher than any other groups(P<0.05). The developmental capacity in CRlaa plus various antioxidants co-cultured with BOEC were 55.3%(control), 74.1%(2.5mM taurine), 66.7%(600U SOD) and 70.7%(250U catalase) and in CRlaa plus various antioxidants co-cultured with BRLC in control, 2.5mM taurine, 600U SOD and 250U catalase were 63.8%, 75.5%, 71.0% and 73.5%, respectveily, the intracellular GSH concentrations of blastocyst embryos co-cultured with BOEC and BRLC in CRlaa with 0.25mM taurine, 600U SOD and 250U catalase were 73.4pM and 64.4pM, 79.9pM and 67.5pM, 82.3pM and 71.7pM, and 83.0pM and 80.0pM, respectively. Cell numbers of blastocysts were not difference in all experimental groups. These studies indicate that andtioxidants and antioxidant with somatic cell co-culture can increase the proportion of embryo that developed into morula and blastocysts, and the intracellular GSH concentrations of blastocyst embryos.

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