• Title/Summary/Keyword: in vitro embryo

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Study on In Vitro Fertilization of Proven Bull Semen for Selection of Young Bull in Hanwoo (한우 보증종모우 선발을 위한 후보종무우 정액의 체외수정에 관한 연구)

  • 박병권;김홍기
    • Journal of Embryo Transfer
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    • v.15 no.1
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    • pp.33-38
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    • 2000
  • This study was undertaken in an effort to select the sire bull in Hanwoo through in vitro fertilization of proven bull semen. It was used for in vitro fertilization that of the 20 proven bull semen with follicular oocytes derived from slaughterhouse ovaries of Hanwoo. The stage of maturation on the time course of bovine cumulus-enclosed oocytes incubated for 24 hours was found the highest(96.4%) than hose of other maturationi time. In vitro fertilization rate of bovine oocytes with proven bull sperm showed from 61.5 to 88.9%. Polyspermy of in vitro fertilized oocytes according to proven bulls were the highest KP 491(61.5%) nothing but KP 486, KP 491 and KP 497.

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Effects of donors and in vivo ovum pick-up conditions on in vitro embryo development in Korean native cow (한우 공란우 및 생체내 난자 회수(ovum pick-up) 조건이 체외수정란의 발달에 미치는 효과)

  • Park, Yong Soo;Kong, Jun Ho;Yi, Jun Koo;Oh, Dong yep;Chung, Ki Hwa
    • Korean Journal of Veterinary Service
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    • v.44 no.4
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    • pp.227-237
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    • 2021
  • Artificial insemination of Korean native cattle (KNC) is the predominant method for breed improvement. However, industrialization of embryo production and transfer is necessary to utilize the genetic potential of KNC. The aim of this study was to examine associations between KNC donor cows and ovum pick-up (OPU) conditions, in-vivo oocyte recovery, and embryo development. Oocyte recovery and blastocyst development rates were higher at 50 and 60 mmHg OPU vacuum pressure than at 40 mmHg, which was, however, not significant. Regarding follicle growth, injection of 500 ㎍ GnRH 36 hours before OPU significantly increased the number of OPU oocytes from an average of 4.6 to 7.6 (P<0.05); no significant difference in embryo development rates was observed. Significant differences were observed in the numbers of OPU oocytes, embryo development rates, and transplantable blastocysts per individual among nine KNC donors (P<0.05). Furthermore, although there was no difference in OPU oocyte recovery intervals in approximately 2~8 weeks, the number of recovered oocytes significantly decreased at the 12-week interval (P<0.05); there was no difference in embryo development rates. The number of oocytes and embryonic development rates only tended to decrease until the seventh OPU session, but decreased significantly until the eighth session (P<0.05). The average pregnancy rate after transfer of OPU-derived in-vitro embryos into recipient cows was 41.8%. To improve the efficiency of OPU egg recovery and in-vitro embryo production, considering KNC donor characteristics, vacuum pressure of 60 mmHg, GnRH pretreatment to induce follicle growth, and effective OPU egg recovery up to seven times at intervals of 2~4 weeks appears to be most suitable. This study may facilitate the industrialization of KNC embryo production and transfer using high-quality cows.

In Vitro Development of Porcine Parthenogenetic Embryos under the Oil-free Culture System

  • Park, Sang-Kyu;Choi, Young-Ju;Roh, Sang-Ho
    • Journal of Embryo Transfer
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    • v.25 no.4
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    • pp.259-262
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    • 2010
  • Optimization of the preimplantation mammalian embryo culture condition was widely focused on refining medium composition under the name of chemically defined media. However, recent research revealed that the alteration of physical environment can be a crucial factor to a successful embryo development. In this study, under the same embryo density, a novel culture device named oil-free micro tube culture (MTC) system was evaluated using porcine parthenogenetic embryos. The activated oocytes were placed into the 0.2 ml thin-wall flat cap PCR tube and cultured to the blastocyst stage. As a preliminary step, embryo density and culture medium volume were optimized under a standard drop culture system. The optimal embryo density range for in vitro culture was 0.5 embryos per ${\mu}l$ in $20\;{\mu}l$ drop (20.5%) and 1.0 embryos per ${\mu}l$ in $10\;{\mu}l$ drop (20.6%). Based on these results, we compared drop culture system and 'MTC' system in terms of the developmental rate to the blastocyst stage. In $20\;{\mu}l$ medium volume, the 'MTC' system showed similar blastocyst formation rate when compared with drop culture system (20.2% versus 20.5%, respectively) while the 'MTC' system showed lower blastocyst formation rate than drop culture system in $10\;{\mu}l$ one (12.7% versus 20.0%, respectively). Therefore the $20\;{\mu}l$ MTC system may be an alternative incubation system for short-distance embryo transport without carrying the $CO_2$ incubator and this provides novel embryo culture device to clinical veterinary embryologists.

Effect of Bovine Follicular Fluid and Hormones on In Vitro Oocyte Fertilization and Development of Bovine Embryos (소의 난포액과 호르몬이 난포란의 체외수정 및 체외발달에 미치는 영향)

  • 최양석;송상현;최창용;하란조;강다원;최상용;윤창현;박충생
    • Journal of Embryo Transfer
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    • v.12 no.2
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    • pp.181-188
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    • 1997
  • This study was carried out to determine the effect of bovine follicular fluid(bFF), hormones, and fetal bovine serum(FBS) supplemented in the medium on the in vitro fertilization and development of bovine embryos. The ovaries were obtained from a local abattoir and placed in physiological saline kept at 30~32˚C and brought to the laboratory within 3~4 hours. The oocytes and follicular fluid were collected by aspiration from visible follicles, and the oocytes of grades I on the basis of the morphology of cumulus cells attached and the homogeneity of cytoplasmic granules were selected and used for maturation. The basal media used for oocyte maturation, fertilization and embryo development in vitro were Ham' F-10, TALP and TCM-199, respectively. The hormones supplemented in maturation medium were consisted of 35 pg /ml FSH, 10 pg /ml LH and 1 pg/mi estradiol-l7$\beta$. The bFF collected from 5~9 mm follicles was centrifuged, filtered and inactivated by heat-treatment at 56˚C for 30 min. FBS also was inactivated with the same method and kept at -20˚C until use. The embryos were co-cultured with the monolayer of bovine oviductal epithelial cells at 39˚C under 5% $CO_2$ in air for 9 days. The results obtained were summarized as follows: The fertilization rate of oocytes was found 87.4% from 10% FBS and hormones treatment for IVM, and 37.1% of these TVF embryos were developed to blastocyst stage in 10% FBS groups. Compared with this control system, the fertilization rate was decreased significantly(P<0.05) in the maturation without either FBS or hormones. These IVF embryos were developed to morula stage at the similar rate, but to blastocyst at significantly(P<0.05) lower rate in the embryo culture with or without FBS supplementation. The fertilization rate(82.9%) in hormones and 10% inactivated bFF was similar with 10% FBS and hormone groups(87.4%), but decreased significantly(P<0.05) in 20 or 30% bFF (61.0 or 66.0%), respectively. In vitro developmental competence to blastocyst stage in 10% FBS and 20% inactivated bFF(37.1% and 31.4%) was higher than in 10 or 30% inactivated bFF(20.0 or 19.2%) or 10, 20 and 30% fresh bFF(19.1, 21.0 and 17.5%) The results indicated that the in vitro fertillzation and development rate of the embryos should be improved in 10% FBS or 20% inactivated culture system and 20% inactivated bFF might be available economically for bovine oocyte maturation and embryo culture instead of fetal bovine serum.

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Effect of Glycosaminoglycans on In vitro Fertilizing Ability and In vitro Developmental Potential of Bovine Embryos

  • Kim, Eun Young;Noh, Eun Hyung;Noh, Eun Ji;Park, Min Jee;Park, Hyo Young;Lee, Dong Sun;Riu, Key Zung;Park, Se Pill
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.2
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    • pp.178-188
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    • 2013
  • The glycosaminoglycans (GAGs) present in the female reproductive tract promote sperm capacitation. When bovine sperm were exposed to 10 ${\mu}g/ml$ of one of four GAGs (Chondroitin sulfate, CS; Dermatan sulfate, DS; Hyaluronic acid, HA; Heparin, HP) for 5 h, the total motility (TM), straight-line velocity (VSL), and curvilinear velocity (VCL) were higher in the HP- or HA-treated sperm, relative to control and CS- or DS-treated sperm. HP and HA treatments increased the levels of capacitated and acrosome-reacted sperm over time, compared to other treatment groups (p<0.05). In addition, sperm exposed to HP or HA for 1 h before IVF exhibited significantly improved fertilizing ability, as assessed by 2 pronucleus (PN) formation and cleavage rates at d 2. Exposure to these GAGs also enhanced in vitro embryo development rates and embryo quality, and increased the ICM and total blastocyst cell numbers at d 8 after IVF (p<0.05). A real-time PCR analysis showed that the expression levels of pluripotency (Oct 4), cell growth (Glut 5), and anti-apoptosis (Bax inhibitor) genes were significantly higher in embryos derived from HA- or HP-treated sperm than in control or other treatment groups, while pro-apoptotic gene expression (caspase-3) was significantly lower in all GAG treatment groups (p<0.05). These results demonstrated that exposure of bovine sperm to HP or HA positively correlates with in vitro fertilizing ability, in vitro embryo developmental potential, and embryonic gene expression.

Studies on Culture and Transfer of Mouse Embryos Biseeted at Various Cell Stages (생쥐배의 발생단계별 미세분할, 배양 및 이식 관한 연구)

  • 강대진;박희성;이효종;박충생
    • Journal of Embryo Transfer
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    • v.4 no.1
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    • pp.28-34
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    • 1989
  • These experiments were carried out to determine the effect of cell stage in embryo bisection on the sub-Sequent in vitro and in vivo development in mouse. The embryos of ICR mouse were microsurgicaily bisected at 2-cell, 4-cell, 8-cell, morula and blastocyst stage using a microsurgical blade attached a micromanipulator. These demi-embryos without zona pellucida were cultured up to blastocyst stage and transferred to pseudopregnant mice, and the development of these demi-embryos was compared with the results of intact embryos of the corresponding cell stage. The successful rate of mouse embryo bisection at 4-cell stage (59.0%) was significantly (p <0.05) lower than those at 8-cell (75.6%), 2ce11 (80.7%) or morula stage (84.8%), and highest at blastocyst stage (95.7%). When the bisected embryos without any damage from microsurgery were cultured in vitro up to blastocyst,the in vitro de'velopment of demi-embroys bisected at morula to blastocyst was 91.6 to 95.3%, which was similar to the culture result of intact embryos of corresponding stage. However, the in vitro development of demi-em-bryos bisected at 2- to 8-cell stage was signiflcantiy (p <0.05) lower.The post-transfer implantation rate of demi-embryos developed in vitro to eu-blastocyst were 19.6 and 25.4% in demi-embryos bisected at morula and blastocyst stage,respectively and not significantly (P <0.05)different from the result of intact embryos of the same stage. However, the implantation rates of demi-embryos bisected at 2- or 8-cell stage were significantly (P <0.05) lower than the result from the intact embryos of the corresponding stage.

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The Effect of Co-culture and Oxygen Concentration on In Virto Fertilization of Follicular Oocytes in Korean Native Cattle (공배양 및 산소농도가 한우 난포란의 체외발생에 미치는 영향)

  • 이재관;윤준진;황성수;윤종택;김창근;정영채
    • Korean Journal of Animal Reproduction
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    • v.22 no.1
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    • pp.43-50
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    • 1998
  • The effect of oxygen tension on embryonic development in co-culture was evaluated from the standpoint of the reduction of dissolved oxygen concentration by the oxygen consumption of feeder cells. Three co-culture systems using bovine oviductal epitherial cells (BOEC), African green monkey kidney cells (Vero cells) or buffalo rat liver cells (BRLC) have been compared in terms of development of bovine embryos derived from oocytes matured and fertilized in vitro. Among the co-cultured embryo, Vero cells su, pp.rted the highest developmental rate (29%) and the other two showed the similar rates. When the co-cultures were incubated in three different oxygen tension such as 5, 10, 20% oxygen atmosphere, embryos co-cultured with Vero cells at 10%-O2 resulted in the highest percentage of development. From the measurement of oxygen consumption of feeder cells, BRLC consumed 1.38 10-10 mg-O2/min/cell which was higher than 0.94 10-10 and 0.26 10-10mg-O2/min/cell for Vero cells and BOEC, respectively. Based on the oxygen consumption data, the phenomena of optimum oxygen tension required in embryo development in vitro has been analyzed, and we suggested that gas phase oxygen concentration, oxygen consumption rate of feeder cells and the number of feeder cells should be considered for the design of optimal co-culture system for effective fertilization of embryos in vitro.

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Influence of various serum supplement on in vitro culture for goat embryos (다양한 혈청 물질의 첨가가 염소 수정란의 체외배양에 미치는 영향)

  • Kim, Kwan-Woo;Jeon, Dayeon;Lee, Jinwook;Lee, Sung-Soo;Kim, Seungchang;Kim, Chan-Lan;Lee, Sang-Hoon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.9
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    • pp.510-516
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    • 2019
  • This study examined the effects of fetal bovine serum (FBS), goat blood serum (gBS), and poly-vinyl alcohol (PVA) on the in vitro development and embryo quality of goats for an improvement of embryo production. For the experiment, an in vitro fertilized embryo culture medium was supplemented with 10% FBS, 10% gBS, and 10% PVA to determine their effects on the embryo development efficiency and blastocyst quality. The results showed that the non-serum supplementation group showed significantly lower cleavage rate and blastocyst formation. On the other hand, the gBS and PVA supplementation groups showed a significant increase in the cleavage rate and better blastocyst formation than the control and FBS supplementation group. Furthermore, a TUNEL assay performed to confirm the blastocyst quality showed the same pattern as the embryo development experiment. These results showed that the supplemented gBS or PVA was more efficient in enhancing the in vitro development efficiency of goats than the supplementation of FBS or non-serum. On the other hand, considering the risk of an unidentified factor in gBS, PVA appears to be safer and more efficient in the in vitro development of goat embryos.

Effects of Co-culture with Uterine or Oviductal Epitherial Cells on Development of Korean Native Cattle Oocytes Fertilized In Vitro (한우 체외수정란의 발달에 자궁상피세포 및 난관 상피세포의 공배양이 미치는 영향)

  • 최선호;양병철;김일화;손동수;이광원;이동원
    • Journal of Embryo Transfer
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    • v.11 no.1
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    • pp.7-14
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    • 1996
  • The object of this study was to evaluate the effect of uterine epithelial cells on development of Korean native cattle(KNC) oocytes fertilized in vitro. Qocytes were collected from ovaries of slaughtered Korean Native Cows and matured in TCM199 with granulosa cells supplemented with 10% FBS, 5$\mu$g/ml FSH, 10 JU/ml hCG, and 1$\mu$g/ml estradiol-17$\beta$ for 24 hrs. For co-culture of in vitro development of fertilized ova, oviductal epithelial cells (l$\times$l0˚cells /ml) obtained from slaughtered cow and uterine epithelial cells(1$\times$10˚cells /ml) flushed from the superovulated holstein on Day 7 were incubated in 39$^{\circ}C$, 5% $CO_2$, 95% air. Frozen-thawed KNC sperm was capacitated with BO(Brackett & Oliphant, 1975) medium supplemented with 10mM, 5mM-caffein. Matured oocytes were inseminated for 20 hrs. And then fertilized oocytes were washed with culture medium and transferred to oviductal epithelial cells for in vitro development and three days later a portion of embryos were transferred to uterine epithelial cells. Stastical methods of developmental rates on KNC-IVF oocytes was ANOVA-test. Developmental rates of KNC-IVF oocytes was significant higher(P<0.01) when co-cul-tured with uterine epithelial cells(25.2%) than oviductal epithelial cells. Blatocyst cul-tured for 7 to 9 days were frozen by automatic freezer with 1.4M glycerol-PBS. Survival rates of blastocyst was 40.0%. Fourteen frozen-thawed blastocysts were transferred to five holstein heifers on day 7 after natural estrus. Three recipients were observed twin and one recipient was single by ultra-sound systems on days 45 after embryo transfer.

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