This study was to investigate pregnancy rate of IVM/IVF/IVC Korean cattle (registered in government) embryos according to transport time course. For the production of embryos, oocytes recovered from slaughtered excellent grade cow and highly motile frozen-thawed bull semen (purchased from LIMC, KPN#497) was used. In vitro produced embryos were cultured in CR1aa medium for 8 days and some of them were frozen. The rate of average cleavage (>2-cell) was 83.0% (308/371) and blastocyst rate at day 8 was 34.7% (107/308). Among in vitro produced blastocyst embryos at day 8, most healthy embryos were freshly transferred on production day and some frozen embryos were direct transferred on appropriate day. These embryos were produced in a laboratory, embryo transfer (ET) was planned in 10 areas of the remote island (Jeju) from the laboratory by airplane. Thus, we examined the pregnancy rate in recipient cow according to embryo of transport time course before ET. From embryo transferred 44 recipient cows, overall pregnancy was 40.9% (18/44), these 18 cows were all calved [single, 94% (17/18); twin, 6% (1/18)] and total embryo implantation rate was 26% (19/66). Comparing transport time in the base of 6 hr, pregnancy rate in ET group required less 4 hr (60%, 9/15) was significantly higher than that required more 6 hr (26.3%, 5/19). In direct ET of freezing embryos, the pregnancy rate was 40% (4/10). However, it was difficult to find the meaning of temperature, pH and corpus luteum quality of recipients on comparison of pregnancy rate. When the cell death level of embryos according to storage time in thermos (straw container) before ET was measured by TUNEL staining, apoptotic index was increased with storage time-dependent. These results demonstrated that long distance transfer of IVM/IVF/IVC embryos is possible and the time of embryo transport is very important for the pregnancy rate on field trial.
Park H.;Kim J. Y.;Kim J. Y.;Lee J. H.;Park H. D.;Kim J. M.
Journal of Embryo Transfer
/
v.19
no.3
/
pp.245-255
/
2004
In recent years, an increasing number of studies on pig in vitro maturation(IVM) and in vitro fertilization(IVF) have been separated. the wide range of new technologies, including that in applied molecular genetics, has increased this interest. the production of viable porcine embryos in vitro is a prerequisites for the successful production of transgenic pigs to date. The efficiency of IVM/IVF techniques in the porcine is lower than that obtained in other species such as cattle and mouse. The several problems are generally thought to be the cause of poor results: the low rate of MPN formation derived from inadequate IVM of oocytes, the high incidence of polyspermy after IVF and cell blocking at 4 cell during embryos culture. For there reasons overcoming, many studies have been conducted to improve in vitro embryo-genic competence of oocytes. In the last several years, many maturation culture media have been evaluated and various exogenous factors such as hormones and grows factors have been tested to improve the efficiency of porcine in vitro system. In the study several antioxidants have been examined to improve in vitro fertilization and development of porcine oocytes. In this study, several antioxidants were examined to determine the effects on the development of oocytes to the cleavage, morula and blastocyst stage when added at the maturation(IVM) or in vitro fertilization(IVF) or in vitro culture(IVC) of porcine embryos. Porcine oocytes were matured, fertilized and embryos were cultured in defind conditioned medium in vitro with or without supplementation with the antioxidents of cysteine, catalase and glutathione. 1. Significant improvement of blastocyst rate (27.2% versus 15.4%, p<0.05) were achieved when catalase(500U/$m\ell$) were added to TCM-199 medium and morula rate(72.0% versus 53.9%, p<0.05) were significantly higher when glutathione(1.0mM/$m\ell$) were added to TCM-199 medium than those of control. 2. In mTBM medium for oocytes fertilization, the addition of cysteine, catalase and glutathione had no positive effect on embryonic development. glutathione had no positive effect on embryonic development. In conclusion, this study shows that addition of catalase, gluththione during IVM improved the rate of porcine embryo development.
The present study was carried out to examine the effect of cysteamine in vitro maturation (IVM) of porcine oocytes and development of porcine IVM/IVF Embryos. The results were summarized as follows : 1. The rates of nuclear maturation, penetrated oocytes, pronuclear formation, polyspermic oocytes and mean numbers of the penetrated sperm were not different in NCSU23 maturation medium with 0, 25, 50 and 100 $\mu$M cysteamine (P〉0.05). 2. The rates of blastocyst formation at day 7 after in vitro fertilization in 0, 25, 50 and 100 $\mu$M cysteamine were 17.9$\pm$6.1, 17.4$\pm$6.3, 24.2$\pm$1.9 and 16.9$\pm$2.0%, respectively. And the total cells were 30.7$\pm$2.4, 34.9$\pm$2.8, 39.6$\pm$2.3 and 36.8$\pm$3.6, respectively. Fifty $\mu$M cystealnine group was significantly higher than those of any other treatment groups (P<0.05). 3. The ratios of ICM/total cells in 20~40% category were 20.5, 41.6, 19.5 and 31.5%, respectively. Twenty five $\mu$M cysteamine group was higher than those of other groups. 4. The rates of blastocyst formation at day 7 in the NCSU-23 culture medium of porcine IVF-produced embryos with 0, 25, 50, and 100 $\mu$M cysteamine were 16.0$\pm$0.2, 13.6$\pm$1.7, 25.0$\pm$0.8 and 15.7$\pm$4.5%, respectively. And the total cells were 27.0$\pm$3.7, 36.1$\pm$4.8, 34.0$\pm$3.8 and 25.2$\pm$4.4, respectively. Fifty $\mu$M cysteamine group was significantly higher than those of any other treatment groups (P<0.05). 5. The ratios of ICM/total cells in 20~40% category were 53.8, 30.0, 16.6 and 11.1%, respectively. The addition groups of cysteamine were lower than those of control group. In conclusion, these results suggested that the addition of 50 $\mu$M cysteamine in the IVM medium and 25~50 $\mu$M cysteamine in IVC medium were effective on the blastocyst formation and total cells of blastocysts.
These studies were carried out to establish an effective in vitro embryo transfer methods by analyzing several factors. The base media were TCM-199 solution for in vitro maturation(IVM) of bovine follicular oocytes and Fer-TALP solution for in vitro fertilization(IVF) and CRlaa medium for in vitro culture(IVC). IVC used the fertilized oocytes of 24-hr culture (day 1)after IVF. Embryos were cultured in drop-culture that contained 25 embryos per 10${mu}ell$. Blastocysts cultured for 7 to 9 in vitro were transferred to recipients. The results obtained were as follows: 1. The pregnancy rate according to different region of embryo transfer were 33.8%, 48.1%, 45.0% and 35.3% respectively. 2. The pregnancy rate according to the parity of recipient when embryos were transferred to nulliparous (42.9%) was higher than that of 1∼3nd parlous(36.9%), however there were not show significant difference each other. 3. According to the stage of blastocyst, the pregnancy rate when middle blastocysts (MB) (45.5%) were transferred to recipients were higher than that of late blastocysts (LB) (41.0%). 4. When IVF-derived blastocysts cultured for 7 to 9 day were transferred to recipients, the pregnancy rate was higher 7 day of blastocyst than that of 8 day or 9 day of blastocyst. The results of embryo transfer according to the regions, the parity of recipient and the development stage showed that blastocyst formed for 7day transferred to nulliparou were higher pregnancy rate than others.
본 연구는 체외생산된 소 배반포기배의 inner cell mass (ICM) 세포에서 epidermal growth factor-receptor (EGF-R)의 발현 유무를 immunosurgery와 indirect immunofluorescence (간접 면역 형광방법)을 이용하여 조사하고자 실시하였다. 본 실험에 사용된 ICM 세포는 체외수정 후 7∼8일째에 회수된 소 배반포기배로부터 immunosurgery 방법을 실시하여 얻어졌으며, 회수된 ICM세포는 live/dead 염색방법을 통한 생사 유무와 EGF-R 발현 유무 조사에 공시되었다. 특히, 배반포기배에 대한 immunosurgery를 위해 trophectoderm 세포에 대한 rabbit anti-bovine trophectoderm cell antibody (RABTE)를 제조하여 사용하였다. 결과를 요약하면 다음과 같다. ICM세포의 회수율은 RABTE와 guinea pig serum (complement)에 각각 15∼30분과 15∼60분동안 처리했을 경우 16.7∼74.2%였으며, 또한 처리시간이 각각 30분과 30분일 때 가장 높은 회수율(74.2%)을 얻었다. Immunosurgery 후 얻어진 ICM세포의 생존 유무를 조사하기 위해 live/dead 염색 방법을 이용하였던바, ICM세포의 생존율은 complement가 60분 처리된 군(69.3%)을 제외한 모든 처리군에서 84.0∼91.6%의 높은 생존율을 나타냈다. 또한, 회수된 ICM세포에 대한 EGF-R의 존재를 확인하였다. 따라서, ICM세포에서의 EGF-R의 발현은 인위적으로 첨가된 EGF의 이용 가능성을 높임으로서 체외에서의 착상전 배 발달을 증진시킬 수 있을 것으로 사료된다.
The ovaries of Korean Native cows or heifers were obtained from an abattoir and kept on 20 to $25^{\circ}C$ and transported to laboratory within 2 hrs. The follicular oocystes were collected from 2~6mm follicles in diameter and classified into 3 grades by the morphology of cumulus cells attached. The oocytes were matured in vitro(IVM) for 24 hrs. in TCM-199 supplemented with $23{\mu}g/ml$ FSH, $10{\mu}g/ml$ LH, $1{\mu}g/ml$ estradio-17 ${\beta}$ and granulosa cells at $39^{\circ}C$ under 5% $CO_2$ in air. They were fertilized in vitro(IVF) by incubation for 12 hrs. of epididymal spermatozoa pretreated with heparin, and then the zygotes were co-cultured in vitro(IVC) with oviductal epithelial cells for 7 to 9 days. Assessment of maturation revealed that 93.0%(147/158) of grade I oocytes had expanded of cumulus cells, which was higher(p<0.05) than the 79.4%(85/107) of grade II oocytes. Compared to epididymal sperm(32.9%), the insemination with frozen and thawed sperm resulted in slightly lower(20.5%), but not significant, development to morulae and blastocysts from grade I oocytes. Co-culture of bovine IVF embryos with oviductal epithelial cells improved the development to transferable embryos significantly(38.1%), compared to co-culture with granulosa cells(20.0%). When VF bovine embryos were vitrified at blastocyst, the post-thaw survival rate was obtained higher resulf for 1 min. equilibration time(82.6%) or 2 min.(73.9%) than 3 min.(18.2%) in EFS solution.
Park, Heum-Dae;Park, Hyang;Lee, Sang-Jin;Kim, Jae-Myung
Journal of Embryo Transfer
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v.17
no.3
/
pp.211-218
/
2002
These studies were carried out to investigate the effects of the addition of amino acids and FBS as source of exogenous nitrogen fixation added to medium on in vitro production of blastocyst derived from bovine follicular oocytes. The base medium was TCM-199 solution for in vitro maturation(IVM) of bovine follicular oocytes and Fer-TALP solution for in vitro fertilization(IVF) and YS solution for in vitro culture(IVC). IVC used the fertilized oocytes of 24-hr culture (day 1) after IVF. Rmbryos were cultured in drop-culture that contained 25 embryos per 10 ${mu}ell$. The results obtained are as follows: 1 The developmental rates of fertilized oocytes to blastocyst that developed from YS solution with NEAA derived from MEM alone were higher than those of YS solution without NEAA. 2. The developmental rates of fertilized oocytes to blastocyst that developed from YS solution with EAA derived RPMI 1640 alone were significantly higher than those of YS solution without EAA (p<0.05). 3. When added to EAA on day 5 after NEAA supplementation on day 1, the developmental rates of hatched blastocyst and blastocyst to hatched blastocyst were improved. 4. When removed to EAA on day 3, day 4 and day 5 from medium after NEAA and EAA supplementation on day 1. the developmental rates of blastocyst to hatched blastocyst were reduced. 5. When added to FBS as source of exogenous nitrogen fixation, the developmental rates of blastocyst and hatched blastocyst that developed from the later culture higher(day 5) than those of the early culture.
To improve the efficiency of in vitro production of embryos with follicular oocytes in Korean Native cows, the recovery rates, in vitro maturation, fertilization and development, and the time required for collecting and processing oocytes by aspiration with or without slicing were evaluated comparatively. The ovaries were obtained from a local abattoir and placed in physiological saline at 25~28$^{\circ}C$ and brought to the laboratory within 3 hrs. The oocytes were collected by aspiration of follicles(2~6mm) with or without slicing ovaries after aspiration, and classified into Grade I, Grade II, Denuded, Expanded oocytes by the morphology of cumulus cells attached and the homogeneity of cytoplasmic granules. Also the time required for each step of collecting and processing oocytes were measured. The cumulus cells were removed in some Grade I oocytes to measure their size and nuclear configuration before and after in vitro maturation. The Grade I oocytes were matured in vitro(IVM) for 24 hrs. in TGM-199 supplemented with 35$\mu$g /ml FSH, 10$\mu$g /ml LH, 1 $\mu$g /ml at 39$^{\circ}C$ under 5% C02 in air. They were fertilized in vitro(IVF) by epididymal spermatozoa treated with heparin for 24hrs. and then the zygotes were cocultured in vitro (IVC) with bovine oviductal epithelial cells for 10 days. The results obtained were as follows: The number of oocytes recovered per ovary was averaged 6.6 by aspiration and 11.2 by slicing post aspiration, which summed to 17.8. The number of Grade I oocytes recovered per ovary was averaged 3.1 by aspiration and 3.6 by slicing, which summed to 6.7. The percentage of Grade I to total oocytes recovered was significantly(P<0.05) higher as 48.0 % in aspiration than 31.6% in slicing post aspiration. The time requlred for recovering a Grade I oocyte by aspiration and slicing was 1.1 and 2.5 min, respectively. The mean diameter of Grade I oocytes by aspiration and slicing was similar as 148.7 and 151.5$\mu$m, respectively. The percentage of Metaphase II stage oocytes after IVM for 24 hours was significantly (P
The objective of this study was to optimize the freezing/thawing method of in vitro produced Hanwoo blastocysts. Day 7 blastocysts after IVF were vitrified using EFS40 (40% ethylene glycol, 18% ficoll, 0.3 M sucrose and 10% FBS added m-DPBS) as a freezing solution and electron microscope (EM) grid (V-G) or straw (V-S) as an embryo container. In both method, freezing/thawing were treated by 2-step, treatment time was required in V-G method and V-S method, for 2 min / 3 min and 3.5 min / 10 min, respectively. Embryo survival was assessed as re-expanded and hatched rates at 24 h and 48 h after warming, respectively. The results obtained in these experiments were summarized as follows: when the effect of exposure in vitrification solution and chilling injury from freezing procedure on in vitro produced expanded blastocysts were examined, at 24 h after warming, embryo survival in exposure group (100.0%) was not different compared to that in control group (100.0%), although those results were significantly different with two vitrified groups (V-G: 87.8, V-S: 77.8%) (P<0.001). However, at 48 h after warming, hatched rates of V-G group (67.8%) were significantly higher than those of V-S group (53.3%) (P<0.05). In addition, this hatched rate in V-G group was not different with that in exposure group (73.3%). When the effects of embryo developmental stage (early, expanded and early hatching blastocysts) and embryo container (EM grid and straw) to the in vitro survival of vitrified-warmed day 7 Hanwoo blastocysts were simultaneously examined, fast developed embryos were indicated the better resistance to freezing than delayed developed one, irrespective of embryo containers (early; 57.1 & 24.4%, expanded; 84.7 & 60.6%, early hatching; 91.7 & 80.0%) (P<0.001). Especially, in expanded and early hatching blastocysts, embryo survival of V-G group (67.8, 95.0%) was significantly higher than those of V-S group (53.0, 65.0%) at 48 h post warming, respectively (P<0.05, P<0.001). Therefore, this study indicates that Hanwoo blastocysts can be cryopreserved more simple, efficient and successful by vitrification method using EM grid.
The present study was undertaken to investigate the effects of PVP concentration and exposure temperature to vitrification solution on the post-thaw survival, in vitro maturation and development of immature bovine oocytes (germinal vesicle stage). The vitrification solution (VS) consisted of 40% ethylene glycol (EG)+0.5 M sucrose (S)+10% FBS. PVP was added to VS: 0%, 5% or 10%. The cumulus-oocyte complexes (COCs) were diluted in VS as one step, after 2 min the COCs were loaded in straw and vitrified by direct immersion into liquid nitrogen. For thawing, the straws were plunged into $30^{\circ}C$ water bath for 10s. After thawing, the oocytes were diluted in 0.5 M (in DPBS with 10% FBS) sucrose solution for 5 min. The survival rate (FDA-test and trypan blue) of immature bovine oocytes was measured. The survival rate was higher in 5% PVP (91.5%) than in 0% (64.2%) or in 10% PVP (79.7%). The proportion of metaphase II formation was 69.35% in control (no vitrified COCs), 9.3% in 40% EG+0.5 M S+0% PVP and 21.05% in 40% EG+0.5 M S+5% PVP (p<0.05). The effect of room temperature ($25^{\circ}C$ for 10 min) and cold temperature ($4^{\circ}C$ for 10 min) on COCs were determined in this study. After IVF, the cleavage and blastocysts rate of oocytes exposed to room temperature and cold temperature in VS+5% PVP was significantly different (2 cell: 63.20% vs 37.97%, blastocysts: 18.40% vs 2.53%). The cleavage rates of frozen-thawed oocytes were 20.53% with PVP and 22.13% without PVP (p>0.05). Two out of 151 oocytes (1.32%) developed to blastocyst stage after frozen-thawed with 5% PVP (p>0.05). Development of oocytes after frozen-thawing to the 2 cell were not significantly affected with or without PVP following IVF. However, the vitrification of immature bovine oocytes with PVP maintained the ability to develop to the blastocyst stage after IVM-IVF and IVC, while no blastocysts were obtained from oocytes vitrified without PVP. These results suggested that PVP has a protective role for vitrification of immature bovine oocytes as far as survival is concerned, however, the protection was not sufficient enough to support blastocyst formation.
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