• Title/Summary/Keyword: in-vitro

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Accomplishment of canine cloning through in vitro matured oocytes: a pioneering milestone

  • Kukbin Ji;Kangsun Park;Dongern Kim;Eunyoung Kim;Taeyoung Kil;Minkyu Kim
    • Journal of Animal Science and Technology
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    • v.66 no.3
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    • pp.577-586
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    • 2024
  • The in vitro maturation (IVM) rate of canine oocytes remains low compared to other mammals due to their unique reproductive characteristics. This study aimed to explore the effect of hormone supplementation during the IVM of canine immature oocytes on nuclear maturation and subsequently assess its potential application in canine somatic cell nuclear transfer (SCNT). Immature oocytes were collected and cultured in an IVM medium supplemented with hormones (follicle-stimulating hormone [FSH] and progesterone [P4]) or without hormones (control) for 24 hours. The maturation rates of oocytes in the hormone-treated group (94.92 ± 3.15%) were significantly higher than those in the control group (61.01 ± 4.23%). Both in vitro and in vivo matured oocytes underwent NT to evaluate their utility, and the fusion rates were higher in the in vitro matured group than those in the vivo matured group, not significant between in vivo and in vitro matured group (73.28% and 82.35%, respectively). As a result, 14 fused embryos from the in vitro matured group were transferred into two surrogates, with one surrogate achieving a successful pregnancy and delivering four puppies. Whereas in the in vivo matured group, 85 fused embryos were transferred to 8 surrogate mothers, leading to three surrogates becoming pregnant and delivering one, four, and two puppies. The pregnancy rates were not significant between both groups (50% and 37.50%), but the number of offspring exhibited a significant difference (28.57% and 8.23%). In conclusion, we achieved a remarkable milestone by successfully producing cloned puppies using in vitro matured oocytes, underscoring the feasibility of canine cloning from in vitro recovered oocytes. It is important to note that this study focused only on immature oocytes after ovulation and only during the estrus stage. Further research targeting other stages of the estrous cycle could potentially enhance canine cloning efficiency.

EFFECTS OF OVARY TYPE, OOCYTE GRADE, HORMONE, SPERM CONCENTRATION AND FERTILIZATION MEDIUM ON IN VITRO MATURATION, FERTILIZATION AND DEVELOPMENT OF BOVINE FOLLICULAR OOCYTES

  • Im, K.S.;Kim, H.J.;Chung, K.M.;Kim, H.S.;Park, K.W.
    • Asian-Australasian Journal of Animal Sciences
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    • v.8 no.2
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    • pp.123-127
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    • 1995
  • In vitro embryo production (IVP) is affected by various factors during in vitro maturation, fertilization, and development. In this experiment, the effect of ovary type, quality of follicular oocyte, medium used for fertilization, presence of hormone in medium, sperm concentration on in vitro maturation and fertilization were examined for effective IVP. In vitro maturation was carried out using TCM-199 supplemented with 15% FCS and hormones in 5% $CO_2$ incubator for 24h. In vitro fertilization was performed with frozen-thawed sperm in modified mTALP medium containing 0.3% BSA, $10{\mu}g/ml$ heparin, and 5mM/ml caffeine for 24h. The fertilized embryos were co-cultured on monolayer of cumulus cells in TCM-199. When oocytes were collected from functionally active and inactive ovaries, maturation rate was 76.9 and 7.7%, respectively. When oocytes were classified morphologically to good and poor grades, maturation rate was 75 and 58.8%, respectively. FSH + LH + $E_2$ (86.4%) showed higher maturation rate than control (53.0%) and FSH (73%). The fertilization rate was 28.2, 100 and 91.7% in $1.6{\times}10^5$, $5.0{\times}10^5$ and $10.0{\times}10^5$ sperm concentration per ml. When oocytes were fertilized in mTALP and BO media, fertilization and cleavage rates of oocytes in mTALP were higher (84.3 and 56.9%) than those (67.4 and 23.3%) in BO medium. In this experiment, in vitro maturation, fertilization and development of oocytes were affected by type of ovary, grade of oocyte, hormones, sperm concentration and fertilization medium.

Effect of Bovine Oviductal Epithelial Cell(BOEC) Conditioned Medium on In Vitro Development of Bovine Embryos Fertilized In Vitro (난관상피세포 Conditioned Medium이 체외수정된 소 수정란의 체외 발달에 미치는 영향)

  • 오종훈;김동훈;정형민;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.17 no.1
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    • pp.69-74
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    • 1993
  • This study was investigated to examine the effect of conditioned medium from bovine oviductal cell(BOEC) in the co-culture system with BOEC on in vitro development of in vitro produced bovine embryos. Oocyte-cumulus complexes were cultured for 24 hrs in TCM-199 supplemented with 10% fetal calf serum, 1$\mu\textrm{g}$/ml FSH and 21U hCG, 1$\mu\textrm{g}$/ml oestradiol-17$\beta$ at 39$^{\circ}C$ under 5% CO2 in air. In vitro fertilization was performed with epididymal sperm and heparin (10$\mu\textrm{g}$/ml, 15min.) or caffeine(2.5mM)-treated spermatozoa. Oocytes were incubated with 1$\times$106 spermatozoa/ml for 18 hrs and then cultured in various culture system for 7 days. The development rates of 16-cell or blastocyst stages were recorded on 4, 7 days, respectively, after incubating. The proportions ofembryonic development into molulae and blastocysts were higher in cumulus cell co-culture(23.4%) and BOEC co-culture(34.3%) than in M199-FCS(6.1%). Similarily, the development rates into molulae and blastocysts were significantly higher in BOEC-conditioned medium than those in M199-FCS. Therefore, it is suggested that BOEC co-culture and BOEC conditioned medium increase significantly the development of in vitro produced bovine embryos in in vitro system.

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Effect of Follicle Size in Jeju Mare on Oocytes Matured in vitro (제주말에서 난포 크기에 따른 난포란의 체외성숙)

  • Yoo, Jae-Gyu;Kang, Tae-Young
    • Journal of Veterinary Clinics
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    • v.27 no.1
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    • pp.46-49
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    • 2010
  • In this study, we investigated the number of follicles, oocyte recovery rate and oocyte competence after in vitro maturation according to the size of follicle. And equine oocyte competence after in vitro maturation was investigated in terms of the diameter of follicle with criteria of maturation: nuclear stage after Hoechst staining. The average number of follicles per ovary with middle size (11-20 mm, 2.68) was higher than those of small (5-10 mm, 0.74) and large size follicle (> 21 mm, 1.63), therefore medium follicle (53.1%) had higher proportion than other size of follicles. The average numbers of follicle per ovary was 5.05. The rate of oocyte recovery in small (54.5%) and middle follicle (50%) was higher than that in large follicle (40.9%). After culture for 48 h in Medium 199, 50%, 45.5%, and 44.4% of oocytes from the follicles with diameters of 5-10, 11-20, > 21 mm, respectively reached the metaphase II stage. This is the first report showing number of follicle, oocyte recovery rate according to follicular size, and in vitro oocyte maturation in Jeju mare in Korea. To fulfill in vitro equine embryo production, further studies such as the seasonal effect, in vitro fertilization etc is need.

Analysis of Current Density Distribution and In Vitro Exposur System fot ELF Exposed Cell Experiments (ELF 전자파 피폭 세포실험을 위한 배양기의 전류밀도 분포 해석 및 In Vitro 노출장치 설계)

  • 김대근;정재승;안재목
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.1
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    • pp.84-91
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    • 2001
  • In in vitro cell experiments for the biological assessment of electromagnetic (EM) field, exposure system (ES) must be analyzed in terms of current density (J) and induced electric field intensity (E). Although in uniform B field, E and J in the sample medium are not distributed uniformly because of conductivity in sample dish. Thus, the precise estimation for E and J induced by uniform ELF within sample media is very important keys for successful in in vitro experiments. In this paper, we designed in vitro ELF ES with electromagnetic analysis using MATLAB simulator. Then we calculated from the measured B field to verify induced E & J distribution for random locations of cells within media in two cases of samples existence or not. ES with B field ranging from 0 to 20G consists of Helmholz coil and current generator based on the microprocessor. Also, we developed ELFES for each B field generation as uniform and non-uniform modes.

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Effect of Co-culture with Porcine Endometrial Cell Monolayers on the Development of In Vitro Produced Porcine Zygotes (자궁내막세포막의 공배양이 돼지 체외수정란의 초기발달에 미치는 영향)

  • 한만희;박병권;박창식;이규승
    • Journal of Embryo Transfer
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    • v.11 no.3
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    • pp.217-223
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    • 1996
  • This study was conducted to investigate the effects of co-culture for the development rate to morula /blastocyst stages of early porcine embryos, derived from oocytes matured and fertilized in vitro, with porcine endometrial cell monolayers(PEM) in the two different media, respectively. The rates of embryos developed to 2-, 4-, 8~16-cell and morula /blastocyst stage were 49.6, 40.5, 28.2 and 15.3% in Ham's F-10 with PEM, and 55.3, 45.9, 32.7, and 17.6% in TCM-HEPES with PEM, respectively. The above development rates to morula /blastocyst stages were significantly higher than those of the embryos cultured in the Ham's F-10 and TGM-HEPES without PEM(P<0.05). The in vitro development rates to the morula /blastocyst stage of 1-cell embryos cultured in Ham's F-10 and TCM-HEPES without PEM were 0~1.2%. Especially, most of embryos were observed to arrest the development beyond 4-cell stages. As shown in the above results, the co-culture of in vitro produced porcine embryos with PEM in the two different media enhanced the development of fertilized eggs to morula /blastocyst stages in vitro. However, we didn't find out any differences for the in vitro development to morula /blastocyst stages between Ham's F-10 and TcM-HEPES media.

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Factors Influencing the Efficiency of In Vitro Embryo Production in the Pig

  • Lin, Tao;Lee, Jae Eun;Shin, Hyun Young;Oqani, Reza K.;Jin, Dong Il
    • Reproductive and Developmental Biology
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    • v.39 no.2
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    • pp.29-36
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    • 2015
  • Pigs are considered an ideal source of human disease model due to their physiological similarities to humans. However, the low efficiency of in vitro embryo production (IVP) is still a major barrier in the production of pig offspring with gene manipulation. Despite ongoing advances in the associated technologies, the developmental capacity of IVP pig embryos is still lower than that of their in vivo counterparts, as well as IVP embryos of other species (e.g., cattle and mice). The efficiency of IVP can be influenced by many factors that affect various critical steps in the process. The previous relevant reviews have focused on the in vitro maturation system, in vitro culture conditions, in vitro fertilization medium, issues with polyspermy, the utilized technologies, etc. In this review, we concentrate on factors that have not been fully detailed in prior reviews, such as the oocyte morphology, oocyte recovery methods, denuding procedures, first polar body morphology and embryo quality.

Studies on In Vitro Culture, Freezing and Transfer of Korean Native Cattle Embryos Fertilized In Vitro III. Transfer of Korean Native Cattle Embryos Fertilized In Vitro (한우 체외수정란의 체외배양, 동결보존 및 이식에 관한 연구 III. 한우 체외수정란의 이식)

  • 김일화;손동수;이호준;이동원;서국현;이광원;장인호
    • Journal of Embryo Transfer
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    • v.11 no.2
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    • pp.137-144
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    • 1996
  • The present study was carried out to obtain the pregnancy and delivery rate following transfer of fresh and frozen-thawed Korean native cattle(KNC) blastocysts(1~4 em-bryos / head) produced in vitro to Holstein recipients. The pregnancy rate of fresh and frozen-thawed KNC blastocysts produced in vitro was 50%(7 /14 heads) and 38.5%(5 /13 heads), respectively. The pregnancy rate of frozen-thawed KNC blastocysts produced in vitro frozen using 1.5M ethylene glycol and 1.4M glycerol for cryoprotectant was 33.3%(2 /6 heads) and 42.9 %(3 /7 heads), respectively. Seven calves including 2 sets of twin were born fiom 5 pregnant recipients receiving eleven fresh blastocysts. Three pregnant recipients were aborted among four pregnant recipients receiving twelve frozen-thawed blastocysts and one calf was born from the rest of one pregnant recipient.

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Evaluation and Method of In Vitro Digestibility in Monogastric Animal Model (단위동물 모델에서 In vitro 소화율 측정과 평가)

  • Kang, Lyeongin;Kim, Jin Seon;Lee, Sung Sill;Chu, Gyo-Moon;Kim, Jin Wook
    • Journal of agriculture & life science
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    • v.53 no.2
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    • pp.15-26
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    • 2019
  • An in vitro digestibility methods have been developed to mimic an in vivo system in the past decades. Because the in vivo techniques cause high cost, intensive labor, longer research periods and ethnical problems. In this review, the digestive systems from stomach to large intestine of pig as a monogastric animal were addressed to understand an in vivo digestion. The innovative in vitro technique using the Daisy II incubator was performed and the in vitro ileal and fecal dry matter (DM) digestibility of corn, rice, wheat and barley was determined.

Effects of Genotypes on In Vitro Maturation and Fertilization of Frozen-Thawed Porcine Oocytes

  • Jia Y. H.;Jin H. J.;Wee M. S.;Cheong H. T.;Yang B. K.;Park C. K.
    • Reproductive and Developmental Biology
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    • v.29 no.4
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    • pp.207-212
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    • 2005
  • In the present study, we investigated the effects of genotypes on in vitro maturation and fertilization in porcine fresh/frozen-thawed oocytes. The porcine cumulus-oocyte complexes (COCs) were divided into four groups according to whether they were: (1) in vitro matured; (2) cryopreserved and in vitro matured; (3) in vitro fertilized and (4) cryopreserved, and in vitro fertilized. Maturation of porcine COCs was accomplished by incubation in NCSU23 medium. Immature oocytes were cryopreserved by Open Pulled Straws (OPS) method according to Vajta et al., (1998). Oocytes stained by Acetic-Orcein method were observed under the microscope. DNA extracted from the ovaries was analyzed by RAPD (random amplified polymorphic DNA) and SSCP (single strand conformational polymorphisrrt) method. The rates of oocytes maturation and fertilization were significantly high in AA genotype. The results indicated that in vitro maturation and fertilization in porcine fresh/frozen-thawed oocytes may be affected by genotypes in pigs.