• Title/Summary/Keyword: In vivo embryo

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Influence of Oxygen Consumption on Pregnancy Rates of Hanwoo Calves following Embryo Transfer

  • Kim, Hyun;Bok, Nan-Hee;Kim, Sung-Woo;Do, Yoon-Jung;Seong, Hwan-Hoo;Kim, Jae-Hwan;Kim, Dong Hun;Kim, Min-Kyu;Ko, Yeoung-Gyu
    • Journal of Embryo Transfer
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    • v.29 no.3
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    • pp.257-264
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    • 2014
  • Recently, several approaches have been used to measure the oxygen consumption rates of individual embryos, but relationship between oxygen consumption and pregnancy rates of Hanwoo following embryo transfer has not yet been reported. In this study, we investigated the correlation between oxygen consumption rate and pregnancy rates of Hanwoo embryo using a SECM. In addition to, the expression of apoptosis-related genes was determined using real-time PCR by extracting RNA according to the oxygen consumption of in vivo embryo. First, we found that the oxygen consumption significantly increased in blastocyst-stage embryos (blastocyst) compared to early blastocyst stage embryos, indicating that oxygen consumption reflects the embryo quality (Grade I). The oxygen consumption or GI blastocysts were significantly higher than those of GII blastocysts ($10.2{\times}10^{14}/mol\;s^{-1}$ versus $6.4{\times}10^{14}/mol\;s^{-1}$, p<0.05). Pregnant rate in recipient cow was 0, 60 and 80% in the transplantation of embryo with the oxygen consumption of below 10.0, 10.0~12.0 and over $12.0{\times}10^{14}/mol\;s^{-1}$, respectively. Apoptosis regulatory genes, Hsp-70.1 were significantly increased in over-10.0 group than below 10.0 group but in Caspase-3, Bax and P53 gene, there was no significant difference. In conclusion, These results suggest that measurement of oxygen consumption maybe help increase the pregnant rate of Hanwoo embryos.

Effect of In Vivo Embryo Production and Embryo Transfer Following Superovulation in Hanwoo (다배란 처리에 따른 한우 체내 수정란 생산 효율과 수정란이식)

  • Cho, Sang-Rae;Choi, Sun-Ho;Choe, Chang-Yong;Son, Jun-Kyu;Choi, Soo-Ho;Kim, Young-Joo;Lee, Poong-Yeon;Yeon, Sung-Heum;Kim, Hyun-Jong;Son, Dong-Soo
    • Journal of Embryo Transfer
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    • v.25 no.3
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    • pp.141-144
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    • 2010
  • In vivo embryo produced from Hanwoo donor cows were collected and transferred to Hanwoo recipients. Cows, at random stages of the estrous cycle, received Progesterone Releasing Intravaginal Device (CIDR-plus, InterAg, New Zealand) together with injection of 1 mg estradiol benzoate and 50 mg progesterone, and gonadotropin treatment began 4 day later. For superovulation, a total of 28 mg FSH was intramuscularly injected twice a day in the way of decreasing doses 4 day (5, 5, 4, 4, 3, 3, 2 and 2 mg). Twenty one Hanwoo donor cows were flushed on day 7 of estrus cycle with same FSH and artificial insemination by the same technicians. Embryos were recovered 7 days after the second insemination by flushing the uterus with Embryo Collection Medium. The results obtained were as follows: The rates of transferable embryos were 50.3%, and 78 fresh embryos at morulae and blastocysts stage were transferred into Hanwoo recipients on day 7 of estrus cycle. The pregnancy rates were first embryo transfer 55.6%, 2nd 62.9% and 3rd 57.9%, respectively. In conclusion, These results suggest that CIDR-based superovulation protocol may be effectively used for production of superior Hanwoo embryos. Also, since it seems the condition of recipient cows greatly affect pregnancy rate, it is very important to evaluate recipient for effective cattle production.

Importance of Sperm Capacitation, Removal of Cumulus Matrix, Acrosome Reaction, and Sperm-egg Fusion in the Process of In Vitro Fertilization

  • Kim, Ki-Sun;Hwang, Kyung-A;Kim, Hyoung-Chin;Nam, Ki-Hoan;Choi, Kyung-Chul
    • Journal of Embryo Transfer
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    • v.26 no.4
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    • pp.287-296
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    • 2011
  • Mammalian fertilization is a complex cascade process consisting of sperm migration through the female reproductive tract, physiological changes to sperm such as sperm capacitation and acrosome reaction, and sperm-egg interaction in the oviduct in vivo. On the other hand, in vitro fertilization (IVF) is a process by which egg cells are fertilized by sperm outside the body: in vitro. IVF has been used for a variety of purposes in reproductive biotechnology for human and animals. The discovery of sperm capacitation in 1951 promoted the development of IVF technology. In the initial stage of IVF, sperm capacitation in preincubation medium was shown to be essential to fuse with eggs. Besides, sperms should detour some of the in vivo regulations for IVF. This review introduces a general mammalian fertilization process, including sperm capacitation, removal of cumulus matrix, acrosome reaction, and sperm-egg fusion and focuses on the roles of key biochemical molecules, signal mechanisms, and genes involved during IVF and novel results of sperm-oocyte interaction elucidated in various gene-knockout mice models.

Unexpected Estrogenicity of Endocrine Disruptors may Evoke a Failure of Pregnancy Derived from Uterine Function: Overview of Their Possible Mechanism(s) through Steroid Receptors

  • Dang, V.H.;Nguyen, T.H.;Choi, K.C.;Jeung, E.B.
    • Journal of Embryo Transfer
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    • v.22 no.4
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    • pp.199-208
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    • 2007
  • Although many studies have focused on the biological and toxicological effects of phenol products, in particular, in reproductive tracts, the data about their effects in this estrogenic responsive tissue are much less clear. In addition, the in vitro and in vivo data concerning ED-adverse impacts in other endocrine organs, i.e. pituitary gland, are not understood well either. Thus, a further study is needed for providing a new insight into possible impacts of estrogenic EDs including phenol products in humans and wildlife. A combination of in vitro and in vivo system for examining EDs may bring better understanding into the regulatory mechanisms underlying EDs-induced events. In addition, this information may support for developing optimal screening methods of estrogenic EDs, in particular, phenol products.

Relationships between Ovulation and Fertilization Rate in Different Species of Pigs

  • Yoon, Hye-Ryung;Chung, Hak-Jae;Kim, Kyong-Woon;Byun, Sung June;Park, Mi-Ryung
    • Journal of Embryo Transfer
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    • v.30 no.4
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    • pp.283-287
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    • 2015
  • The aim of the present study was to investigate the ovulation rate and its relationship to fertilization ability in Landrace, Durock and Crossbred pigs. Gilts were natural mated at a body weight of at least 120 kg under the same hormone treatment. Embryos were surgically collected 1 day after natural mating (Day 0). Embryos derived from in vivo-fertilized oocytes were cultured in medium PZM-3. The ovaries were examined and the pathological findings were recorded. The number of corpus hemorrhagicum was counted, and was assumed to equal the ovulation rate. There was no difference in the number of corpus hemorrhagicum (20.4, 28.8 and 23.2) and ovulation (13.5, 26.8 and 17.2) in the Landrace, Durock and Crossbred pigs. The two pronucleus formation was 76.0, 80.0 and 86.9%. The Day-7 embryos had blastocyst rates of 68.0, 75.0 and 73.9%. There was no difference in the number of total cells and apoptotic cells. In the future, more studies require determining relationships between ovulation and fertilization rate in different species of pigs.

Sex determination of in vivo- and in vitro-derived bovine embryos (체내 및 체외 수정란의 할구를 이용한 성 판별)

  • Han, Rong-Xun;Kim, Hong-Rye;Diao, Yun-Fei;Jin, Dong-Il
    • Korean Journal of Agricultural Science
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    • v.38 no.2
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    • pp.269-275
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    • 2011
  • The objective of this study was to develop a rapid and reliable PCR method for sexing of morula or blastocyst stage bovine embryo. BOV97M and bovine 1.715 satellite DNA sequences were selected for amplification of male and bovine specific DNA, respectively. But the unbalanced number of copies of these two repetitive sequences required some modification of PCR method. Karyotyping of blastomeres were carried for the confirmation of sex determination in bovine embryos. The coincidence rate of sex between biopsied-single blastomere and matched blastocyst was 80.0%. When in vivo- and in vitro- derived embryos were compared, 61.8% and 56.7% were male in in vitro- and in vivo-derived embryos, respectively. In vivo-derived embryos showed better hatching rate than in vitro-derived embryos following biopsy of blastomeres. In conclusion, rapid and effective PCR could be applied to sexing of bovine preimplantation embryos using single blastomere. The sensitivity of this assay may eliminate the need for biopsy of more than one nucleated blastomere and reduce trauma to the embryos derived from biopsy procedure.

Effect of Co-Culture with Various Somatic Cells during In Vitro Maturation of Immature Oocytes (미성숙 난자의 체외 성숙 시 다양한 체세포의 공동 배양 효과)

  • Yoon, Junchul David;Kim, Eun-Hye;Hwang, Seon-Ung;Cai, Lian;Hyun, Sang-Hwan
    • Journal of Embryo Transfer
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    • v.29 no.1
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    • pp.1-5
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    • 2014
  • Recent 2 decades, including in vitro maturation (IVM), assisted reproductive technologies (ARTs) achieved noteworthy development. However the efficiency of ARTs with in vitro matured oocytes is still lower than that with in vivo oocytes. To overcome those limitations, many researchers attempted to adapt co-culture system during IVM and consequently maturation efficiency has been increased. The beneficial effects of applying co-culture system is contemplated base on communication and interaction between various somatic cells and oocytes, achievement of paracrine factors, and spatial effects of extracellular matrix (ECM) from somatic cell surface. The understanding of co-culture system can provide some information to narrow the gap between in vitro and in vivo. Here we will review current studies about issues for understanding cu-culture system with various somatic cells to improve in vitro maturation microenvironment and provide bird view and strategies for further studies.

Production of Nuclear Transplant Embryos Using Follicular Oocytes in Rabbits (토끼에서 난포란을 이용한 핵이식배 생산에 관한 연구)

  • 김창근;정영채;신언익;임홍순;김홍률;정영호;윤종택;이종완;권처진
    • Journal of Embryo Transfer
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    • v.10 no.2
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    • pp.105-113
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    • 1995
  • This study was conducted to examine the efficiency of enucleation and blastomere isolation from recipient oocytes and donor embryos, respectively and to determine the effect of oocyte age and electric voltage on the fusion rate and in vitro development of the fused oocytes in rabbit nuclear transplantation. Immature oocytes collected from ovarian follicles were matured in vivo for 12 h in TCM-199 containing FCS and hormones and in vivo matured oocytes were collected 17 to 18 h post-HCG. The fresh and frozen donor embryos of 8- to 16-cell stage were collected from the oviduct of superovulated does. The proportion of successfully enucleated oocytes was greatly lower in in vitro matured oocytes (42.3%) than that (62.7%) in in vivo matured oocytes The level of cytochalasin B for in vivo matured oocytes did not affect the efficiency of enuleation, but 7.5 $\mu$g /mL cytochalasin B for in vitro matured oocytes showed a high enucleation rate significantly. The isolation efficiency of a single blastomere nucleus did not differ between 8- and 16-cell stage embryos. The percentage of single blastomeres isolated from 16-cell stage fresh embryos after 0.5% pronase treatment was greatly higher at 16-min treatment (94.4%) than at 8-min(78. 1%) and the blastomeres(61.5%) isolated from frozen-thawed embryos after 16-min pronase were significantly fewer than those of fresh embryos. The age of recipient oocytes affected nuclear fusion rate. The reconstituted oocytes fused at 24-h age showed slightly higher fusion rate (77.8%) than those (65.0%)fused at 18-h age. The fusion rate of in vitro and in vivo matured oocytes inserted with fresh blastomere did not differ among electric voltages, but the cleavage rate and development to morula-blastocysts of in vitro matured oocytes was more higher under 0.6 kV/cm than under 0.8 to 1.2 kV/cm, while the cleavage rate and development of in vivo matured oocytes was higher under 0.8 to 1.0 kV/cm than under 1.2 kV/cm. The fusion and cleavage rate fol1owing insertion with frozen-thawed blastomere was not different between the in vitro and in vivo matured oocytes and was similar to those from fresh blastomere insertion.

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Effects of Embryo Sources and Culture Systems on the Membrane Permeability and Viability of Bovine Blastocysts Cryopreserved by GMP Vitrification (소 수정란의 생산체계가 세포막 투과력 및 GMP Vitrification 동결융해 후 생존성에 미치는 영향)

  • Kong, I.K.;Cho, S.G.
    • Korean Journal of Animal Reproduction
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    • v.25 no.2
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    • pp.191-198
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    • 2001
  • The purpose of this study was to investigate the effects of embryo sources such as in vivo vs. in vitro produced blastocyst, and culture systems on the membrane permeability and viability of bovine blastocyst following GMP vitrification. To produce in vivo embryos, six cows were superovulated by administration of follicle stimulation hormone (FSH) and prostaglandin $F_{2{\alpha}}$(PG $F_{2{\alpha}}$). in vitro embryos were produced by two different culture systems, oviduct co-culture (OCS) and defined culture system (HECM-6; DCS). Ovaries were picked up at a local slaughterhouse and transported to laboratory in 3$0^{\circ}C$ saline within 2 h. Ovaries were washed with same saline three times and then placed in saline on warm plate adjusted at 3$0^{\circ}C$ during aspiration. The blastocysts produced were assigned for membrane permeability and viability following GMP vitrification. The membrane permeability of blastocysts was checked in 0.5 M sucrose solution on warm plate at 35$^{\circ}C$ for 0, 2, 5 and 7 min, respectively. Then the diameters (width and length) of embryo cytoplasms were measured by a eyepiece meter, and they were converted to their volume by 4/3 $\pi$ $r^3$. The blastocysts were cryopreserved by GMP vitrification method, where they were sequentially placed into vitrification solution before being loaded into GMP vessels and immersed into L$N_2$ within 20 to 25 sec. Post-thaw blastocysts were serially washed in 0.25 and 0.15 M sucrose in HM and TCM-199 for 5 min each, and then cultured in TCM 199 supplemented with 10% FCS for 24 or 48 h. The volume change of in vivo blastocyst at 0, 2, 5 and 7 min (100, 37.1, 34.3 and 31.6%) was significantly more shrunk than those of in vitro blastocysts derived from OCS (100, 59.8, 48.9, 47.9%) and DCS (100, 57.2, 47.3 and 46.9%) (P<0.05). The viability of post-thaw blastocyst derived from in vivo (93.6%) was also significantly different from those in OCS and DCS (81.9 and 83.6%; P<0.05). In the present culture system, the morphology of embryos produced in vitro was similar to that of in vivo embryos, but the quality in membrane permeability and post-thaw viability showed a big difference from their sources as in vivo or in vitro derived from OCS and DCS. The results indicated that the quality of in vivo embryos in membrane permeability and post-thaw viability was better than those of in vitro embryos derived from OCS or DCS.

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Effect of Nuclear Transfer Methods on In Vitro Development of Reconstituted Bovine Embryos II. Effect of Electric Voltage and In Vitro Produced Donor Embryo Quality on Fusion and In Vitro Development (소에서 핵이식 방법이 재구축배의 체외발달에 미치는 영향 II. 통전전압과 체내생산 공핵배의 질에 따른 융합과 체외발달)

  • 정영채;김창근;송학웅;정영호;윤종택;이종완;김흥률;김광식
    • Korean Journal of Animal Reproduction
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    • v.20 no.4
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    • pp.467-472
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    • 1997
  • This study was conducted to determine the optimal DC voltage for NT of in vivo donor embryo nuclei and investigate the effect of donor embryo guality on fusion and in vitro development of NT embryos . Recpient oocytes were enucleated 25~27h after IVM and further cuitured for 18~20h prior to fusion for oocyte aging. Donor embryos of molura stage were recovered from superovulated heifers and classified l into good and low quality group. Their nuclei were transferred in to the emucleated oocytes 42~44h post-IVM and fused 43-45h post-IVM with a single 0.75kV /cm or 1.0kV /cm DC voltage for 70${\mu}\textrm{A}$sec. The fusion rate of oocytes was not different between two DC voltages. However, the cleavage and M + B developmnent was more high at 1.0kV /cm DC voltage and the proportion of M+B was 19.0% at 0.75kV /cm DC and 29.4% at 1.0kV /cm DC voltage. Donor embryo qualtiy did not greatly affect the fusion and cleavage of NT oocytes, but none of NT embryos derived from low embryo quatity reached the morula stage. The results indicate that the most suitable DC v voltage for electrofusion of in vivo donor muclei was a single 1.0kV /cm DC voltage and donor embryo quality was an important factor affecting the development in vitro of NT embryos.

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