• Title/Summary/Keyword: In vivo and in vitro fertilization

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Utilization of Hydrogel Chamber for Fertilization and In Vivo Culture (Hydrogel Chamber를 이용한 수정 및 배양)

  • 김명철
    • Journal of Embryo Transfer
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    • v.5 no.2
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    • pp.45-55
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    • 1990
  • The in-vitro fertilization in human clinic and animal reproduction is a very important technique but the rate of success is still low. When the in-vitro fertilization and culture of gametes or embryos were done under the condition which Hema hydrogel chamber were implanted into the peritoneal cavity of mouse, the in-vitro fertilization and development of embryos could be significantly improved and the cell-block under in-vitro culture could be overcome. Also, the Rema hydrogel chamber was very useful for the protection of isolated blastomeres. It is concluded that the polymerized Hema (pHema) hydrogel chamber may be effectively used in the fields of embryo transfer and in vitro fertilization.

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OVIDUCT MODEL OF TECHNOLOGIES OF REPRODUCTION - Review -

  • Ogunranti, J.O.
    • Asian-Australasian Journal of Animal Sciences
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    • v.6 no.4
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    • pp.469-481
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    • 1993
  • Gametic biotechnologies involve the procedures which are utilized for procuring reproductive success through the mimicry of in vivo events as in in vitro fertilization, embryo transfer etc. With the realization that the oviduct performs most of the procedures mimicked in vitro under normal in vivo situations, the need to master the oviduct therefore, becomes paramount. The oviduct being an exocrine gland (with its output of glycoproteins) and possibly an ecdocrine gland must be implicated in all the preimplantational procedures of reproduction, which include ovulation, oocyte maturation, sperm capacitation, gametic and embryonal nutrition, fertilization, and implantation. The evidences in the literature for the implication of the oviduct in these processes are examined. It is concluded that there is a need for the mastery of oviductual activity in order to maximize the successes of the procedures in vitro, and provide gametic manipulations which will have high success rates in implantation that is the ultimate after of in vitro fertilization for reproductive success.

Fertilization of Porcine Oocytes and Culture of Embryo in Hydrogel Chambers implanted in the Peritoneal Cavity of intermediate Mouse Recipients (Mouse 복강내에 이식되 Hydrogel Chamber내에서의 돼지난포세포의 수정 및 배양에 관한 연구)

  • 김명철;신상태;박창식;이규승
    • Korean Journal of Animal Reproduction
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    • v.16 no.1
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    • pp.39-46
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    • 1992
  • In viro fertilizatin is very important in both human clinical practice and animal breeding. However, the success rate of in vitro fertilization is not high. The purpose of this study ws to determine wheter in the vitro fertilization and culture of porcine oocyte using a hydrogel chamber were possible or not. Hydrogel chambers were made of polymerized 2-hydroxyethyl methacrylate. Matured follicular oocytes in Waymouth's medium and T L Hepes medium, tubal oocytes, and preincubated sperm in M199 medium were treansferred into the lumen of the hydrogel chambers. The chambers containing porcine oocytes and spermatozoa implanted into the mouse peritioneal cavity, and ova were examined after the recovery of the chambers at 84 hours after preservation start. The result was shown that fertilization and culture of porcine oocytes were successfully achieved inside of the hydrogel chamber.

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Effects of Gamisoyosan on In Vitro Fertilization and Ovulation of Stressed Mice by Electric Shock

  • Kim, Ji-Yeun;Kwak, Dong-Hoon;Ju, Eun-Jin;Kim, Sung-Min;Lee, Dae-Hoon;Keum, Kyung-Su;Lee, Seo-Ul;Jung, Kyu-Yong;Seo, Byoung-Bu;Choo, Young-Kug
    • Archives of Pharmacal Research
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    • v.27 no.11
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    • pp.1168-1176
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    • 2004
  • Exposure to stress is known to precipitate or exacerbate many reproductive dysfunctions such as dysmenorrhea and infertility. Abnormalities of the reproductive system, as shown by reduced ovulation, fertilization and early embryonic development, are frequently seen in dysmenorrhea and infertility. It has been generally accepted that Gamisoyosan (GSS) is a useful prescription for treating insomnia, dysmenorrhea and infertility induced by a stress. Also GSS has been used traditionally to improve systemic circulation and biological energy production. Based on these, this study investigates whether GSS improved ovarian dysfunction caused by stress in mice. Mice were subjected to stress by electric shock on the foot for 30 min daily for a week and treated with GSS at 500 / body weight per day for one week. Thereafter, changes body weight, adrenal weight, ovulation rate, in vitro and in vivo fertilization, embryonic development and estradiol concentrations were measured. GSS markedly increased the body weight of mice with stress, but not normal mice. The administration of GSS caused a reduction in adrenal weight in stressed mice. GSS also had significant positive effects on ovulation rate, estradiol production, in vivo and in vitro fertilization rates and embryonic development. These results indicate that GSS can improve the reproductive dysfunctions caused by stress, and these may production biological energy.

In Vitro Maturation, Fertilization and Development of Mouse Oocytes Derived from In Vitro Grown Preantyal Follicles (체외성장된 Preantral Follicle에서 유래된 생쥐난자의 체외성숙, 수정 및 발달)

  • Kim, D.H.;Lee, H.J.;K.S. Chung;Lee, H.T.
    • Korean Journal of Animal Reproduction
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    • v.26 no.2
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    • pp.133-142
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    • 2002
  • The objective of this study was to examine maturation, fertilization and developmental rate of the in vitro-grown mouse oocytes, and to compare these results with those of oocytes grown and matured in vivo. The preantral follicles isolated from 12-day-old mice were cultured on Transwell-COL membrane inserts. After in vitro growth and maturation, 72.5 % of oocytes grown in vitro produced polar body which can be comparable to in vivo growth (70.5 %). However, the mean oocyte diameter of the in vitro group (69.6$\pm$2.1$\mu$m) was smaller than that of the in vivo group (73.3$\pm$3.0$\mu$m). The fertilization rate was significantly lower (p<0.05) in the in vitro group (76.5%) than in the in vivo group (90.2%), however, there was no difference in the percentage of monospermic and polyspermic oocytes between two groups. The capacities of in vitro grown ova to cleave and develop to blastocyst were (57.8 and 14.4%, respectively) significantly lower (p<0.001) than those of the in vivo counterpart (84.4 and 56.6%, respectively). Moreover, the mean number of cells per blastocyst was significantly lower (p<0.05) in the in vitro group (39.0$\pm$10.8) than in the in vivo group (60.5$\pm$12.5). Live young were produced from transferred 2-cell embryos derived from in vitro-grown and matured oocytes. In conclusion, the results show that in vitro-grown oocytes did not achieve the developmental capacity of in vitro-grown oocytes.

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.

Production of Bovine Embryos Using Follicular Oocytes Matured In Vitro (체외성숙 난포란을 이용한 소배의 생산)

  • 박수봉
    • Journal of Embryo Transfer
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    • v.5 no.1
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    • pp.21-27
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    • 1990
  • The technique for maturation of follicular oocyte has been devised to provide such a low cost and in ptentifut number supply of bovine embryo. Some of problems concerning production of bovine embtyo in vitro were discussed in this paper. Bovine follicular oocytes cultured in vitro achieved normal fertilization but cleavage rates to blastocyst were low compared to the oocyte matured in vivo. It has been concluded that a deficient cytoplasmic maturation occurs in the oocytes matured in vitro. These results indicate that the studies for maturation of bovine follicular oocytes in vitro need improvement of culture conditions and to define the characteristics that might be indicative of healthy oocyte.

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Effect of Zona Hardening on In Vitro Fertilization in Mouse Oocytes I. Analysis of Zona Soluble Properties with Proteolytic Enzymes (생쥐난자에 있어서 투명대 경화 현상이 체외수정에 미치는 영향 I. 단백분해효소에 의한 투명대의 용해성 분석)

  • 이상진;이상민;지희준;장경환;정형민;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.17 no.2
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    • pp.93-101
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    • 1993
  • These experiments were carried out to investigate whether zona hardening affect the efficiency of in vitro fertilization in mouse oocytes. The soluble properties for zona pellucida of oocytes matured in vivo, aged oocytes, and ovarian oocytes matured in vitro have been analyzed with proteolytic enzyme, 3mg/ml of $\alpha$-chymotrypsin. The mean solubility(t50) for the zona of unfertilized oocytes, oocytes not fertilized at the first inseminati and in vitro produced zygotes were 10.1, 20.3 and 32.3min., respectively. The t50 for zona lysis of fertilized oocytes was significantly difference than those observed for unfertilized oocytes and oocytes not fertilized at the first insemination(P<0.01). In addition, the t50 of zona in ovulated oocytes with and without cumulus cells incubated for 0, 3, 6, 9 and 12 hr in vitro, t50 were 13.9, 11.1, 20.7 and 28.0min., and 22.3, 21.0, 30.0 and 33.5min., respectively. In these experiments, the zona pellucida showed a gradual increase in resistance to dissolution by $\alpha$-chyjotrypsin with in vitro aging for more than 6 hrs. This effect was greater in cumulus-free as compared to cumulus-intact oocytes. Finally, in cumulus-intact and cumulus-free ovarian oocytes matured for 0, 5, 10 and 15 hr in vitro the t50 of zona pellucida were 3.0, 10.6, 18.4 and 24.5 min., and 3.0, 14.0, 26.2 and 32.0 min., respectively. Clear differences in solubility between the zona pellucida of oocytes matured in vivo and in vitro. This data were found suggest that under in vitro conditions there is a gradual change in the soluble properties of the zona pellucida, particularly in the absence of the cumulus cells.

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Effects of age on in vitro maturation and fertilization of immature oocytes from stimulated cycles in human IVF-ET program (체외수정시술 시 획득한 미성숙난자의 환자 연령에 따른 체외성숙률 및 수정률 비교)

  • Han, Sang Hoon;Lee, Jung Ryeol;Kim, Hyun Jun;Moon, Jung Hee;Jee, Byung Chul;Ku, Seung-Yup;Suh, Chang Suk;Kim, Seok Hyun;Choi, Young Min;Kim, Jung-Gu;Moon, Shin Yong
    • Clinical and Experimental Reproductive Medicine
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    • v.32 no.4
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    • pp.331-336
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    • 2005
  • Objective: To investigate the effects of female age on in vitro maturation and fertilization of immature oocytes from controlled ovarian hyperstimulation (COH) in human IVF-ET program. Method: A total of 96 immature oocytes (GV & metaphase I) obtained from 40 cycles of IVF-ET (29 patients). The mean age of female patients was $31.8{\pm}3.1years$. Ovulation was triggered by urinary or recombinant hCG. Immature oocytes were cultured with YS medium containing 30% of patients' human follicular fluids, LH (1 IU/mL), FSH (1 IU/mL) and EGF (10 ng/mL), and then matured oocytes were fertilized by ICSI. In vitro maturation and fertilization of immature oocytes were analyzed according to age of female (< 34 or ${\geq}34years$). Results: The maturation rate was similar between two groups (68% vs 64%). The fertilization rate of in?vitro-matured oocytes was higher in patients < 34 years old, but there was no statistical significance (64% vs 50%, p=0.347). The fertilization rate of in-vitro-matured oocytes was significantly lower compared with those of in-vivo-matured oocytes in both age groups (64% vs 79%, p=0.035, 50% vs 86%, p=0.007). Conclusion: In older female group, fertilization rate of in-vitro-matured oocytes seems to be decreased. Further investigations should be warranted to increase fertilization potential of in-vitro-matured oocytes.

The Effect of Leukemia Inhibitory Factor on Embryos to the Blastocyst Formation (Leukemia Inhibitory Factor가 배의 배포형성에 미치는 영향)

  • Min, Bu-Kie;Oh, Soo-Mi;Kim, Kie-Suk;Hong, Gi-Youn;Kim, Hun-Young;Sim, Jea-Ryang;Park, Seung-Teak
    • Clinical and Experimental Reproductive Medicine
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    • v.28 no.1
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    • pp.41-46
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    • 2001
  • Objective: To determine the effects of leukemia inhibitory factor (LIF) on embryonal development in in vitro culture. Methods: This is designed in vitro model using eggs from mouse. The eggs from mouse were assigned 29 for control group, 53 for 20 ng/ml of LIF, 88 for 40 ng/ml of LIF, 68 for 80 ng/ml of LIF respectively for in vitro fertilization. And 26 fertilized eggs at 2 cell stage from mouse also were assigned. The mouse embryos of all groups were cultured in medium supplemented with LIF in different concentrations, whereas the eggs in control group was cultured in medium without supplement of LIF. Results: At 72 hours culture of eggs from in vitro fertilization, there was a slight increas in rate of embryonal development to morula in both LIF-20 and LIF-40 as results of 64.15% and 75% respectively, while 42.65% in inferior rate of LIF-80, compare with 51.72% in control group. But the difference between these each groups were not significant in statistically ($p{\le}0.05$). And after 96 hours culture of eggs, the rates blastocyst formation was significantly higher in both LIF-20 and LIF-40 as 56.6% and 63.63% than those in control and LIF-80 as 44.83% and 35.29% respectively. On culturing eggs from in vivo fertilization, the rates of blastocyst formation was significantly not only higher as 85% and 81.81% respectively in medium supplemented with LIF-40 and LIF-80 than 42.3% in LIF-20 but also embryonal cell viability were remakedly improved at 96 hours after culture. Conclusion: The LIF in low dose is embryotrophic, but LIF in high dose is embryotoxic on eggs from in vitro fertilization. Whereas on culturing eggs from in vivo fertilization, LIF is more beneficial with dose dependent in high concentration.

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