• Title/Summary/Keyword: Human Embryos

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Effect of Embryo Number and Incubation Volume on the Development of Pre- and Post-implantation Mouse Embryos In Vitro (배아밀도와 배양액 용량이 착상전후의 생쥐배아의 체외 성장에 미치는 영향)

  • Kang, Byung-Moon;Cheon, Yong-Pil;Kim, Ji-Young;Kim, Jeong-Hee;Lee, Ji-Yun;Chae, Hee-Dong;Kim, Chung-Hoon;Chang, Yoon-Seok;Mok, Jung-Eun
    • Clinical and Experimental Reproductive Medicine
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    • v.24 no.3
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    • pp.377-383
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    • 1997
  • The effects of embryo number and incubation volume on the development of mouse embryos were evaluated. The growth rate of two-cell mouse embryos to attached blastocyst stage and the growth rate of blastocysts to early somite stage were assessed after culture in different incubation volumes and embryo densities. Embryos were collected from ICR female mice superovulated with pregnant mare serum gonadotropin and human chorionic gonadotropin and mated by ICR males. In experiment 1, groups of one, five, ten, twenty 2-cell embryos were cultured in 10-, 50-, 500-, 1000-${\mu}l$ drops of BWW media under mineral oil at $37^{\circ}C$ in a humidified atmosphere of 5% $CO_{2}$ and 95% air. As the incubation volume decreased, significantly (p<0.05) higher rates of embryos reached morular and blastocyst stage on day 3 and 4 culture, respectively. In experiment 2, groups of one, five, ten, twenty blastocysts were cultured in 1- and 2-ml volumes of CMRL 1066 media under same condition as in experiment 1. However the reverse was the result. Decreasing the number of embryos incubated per volume from 1 to 20 significantly (p<0.05) increased the number of blastocysts reaching the late egg cylinder (LEC) and early somite (ES) stage on day 6 and 8 culture, respectively, regardless of incubation volume. Blastocysts cultured in 2ml had higher (p<0.05) development rates to LEC and ES stage on day 6 and 8 culture, respectively, than embryos cultured in 1ml. Our results suggest that the effects of embryo number and incubation volume on the development of mouse embryos are stage specific and the shifting point was between hatching and EEC stage.

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Early fragment removal on in vitro fertilization day 2 significantly improves the subsequent development and clinical outcomes of fragmented human embryos

  • Kim, Seok-Gi;Kim, Youn-Young;Park, Ji-Young;Kwak, Su-Jin;Yoo, Chang-Seok;Park, Il-Hae;Sun, Hong-Gil;Kim, Jae-Won;Lee, Kyeong-Ho;Park, Hum-Dai;Chi, Hee-Jun
    • Clinical and Experimental Reproductive Medicine
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    • v.45 no.3
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    • pp.122-128
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    • 2018
  • Objective: To determine whether fragment removal on in vitro fertilization (IVF) day 2 improved the subsequent development and pregnancy outcomes of fragmented embryos compared to similar-grade embryos without fragment removal. Methods: This study was a retrospective analysis involving 191 IVF cycles in which all embryos had over 10% fragmentation (grade 3 or 4) on day 2 of the IVF-embryo transfer cycle from March 2015 to December 2017. IVF cycles were divided into the fragment removal group (n = 87) and the no fragment removal group (n = 104) as a control cohort. Before fragment removal, embryos with fragmentation on day 2 were incubated in $Ca^{2+}$- and $Mg^{2+}$-free biopsy medium under paraffin oil for 30 minutes. Microsurgical fragment removal was performed with later-assisted hatching and a handmade suction micropipette that had an outer diameter of $30{\mu}m$. Results: There were no significant differences in the characteristics of the patients between the control and the fragment removal groups. After fragment removal and subsequent in vitro culture for 24 hours, the number of blastomeres ($7.1{\pm}1.7$ vs. $6.9{\pm}1.6$) was comparable between the transferred embryos in the two groups, but the morphological grade of the embryos in the fragment removal group ($1.9{\pm}0.7$) was significantly higher than that of the control group ($3.1{\pm}0.5$, p< 0.01). The clinical pregnancy (43.7%) and implantation rates (25.8%) in the fragment removal group were significantly higher than those in the control group (28.8% and 14.0%, respectively; p< 0.05). Conclusion: Early fragment removal on day 2 significantly improved the subsequent development and pregnancy outcomes of fragmented embryos.

Effect of Fragment Removal on Development of Human Fragmented Embryos in IVF-ET Program (IVF-ET 시술 시 파편제거가 파편화된 인간배아의 발달에 미치는 효과)

  • Chi, Hee-Jun;Koo, Jung-Jin;Lee, Ju-Ok;Ryu, Hyoung-Eun;Kim, Kwang-Rae;Park, Chan;Roh, Sung-Il
    • Clinical and Experimental Reproductive Medicine
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    • v.37 no.4
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    • pp.339-348
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    • 2010
  • Objective: To investigate the beneficial effect of fragment removal on the subsequent cell division and clinical outcome of the fragmented human embryos. Methods: A prospective study was performed in Hanna Women's Clinic and Mizmedi Hospital. Sixty couples undergoing In vitro fertilization-embryo transfer (IVF-ET) program were participated in the present study. The microsurgical fragment removal was performed in 106 fragmented embryos of 29 patients before the transfer. As a control group, 122 fragmented embryos of 31 patients were transferred without the fragment removal. Effects of fragment removal on morphological changes and clinical outcomes of fragmented embryos were investigated. Results: Mean morphological grade (G2.79) of fragmented embryos was significantly improved after the fragment removal(G1.63, p<0.001). Most of the fragmented embryos did not show a regeneration of fragments after the fragment removal during the subsequent development, and a beneficial effect of fragment removal on the development of the fragment removed embryos was observed. Implantation and pregnancy rates of fragment removed embryos were 12.3% and 31.3%, whereas the rates of control group embryos were 6.6% and 22.5%, respectively. There was no statistical significance in the rates between the two groups because of the low number of trials. Conclusion: Microsurgical fragment removal improved the subsequent development as well as the morphological grade of fragmented embryos. The fragment removal may be beneficial for neighboring blastomeres by repairing the intercellular communication and removing the secretion of the potential toxic materials by fragments.

Production of Transgenic Porcine haboring the Human Erythropoietin(EPO) Gene (사람 조혈인자 유전자(Human Erythropoietin Gene)를 도입한 형질전환돼지 생산)

  • 이연근;박진기;민관식;이창현;성환후;전익수;임석기;양병철;임기순
    • Korean Journal of Animal Reproduction
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    • v.26 no.2
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    • pp.95-104
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    • 2002
  • This study was performed during the four seasons for the production of transgenic pigs containing the human erythropoietin(hEPO) transgene. Purebred Landrace gilts and sows approximately 8∼15 months of age (n=42) were used fur the collection of 1-cell zygotes for DNA microinjection and transfer. Retrospectively, estrus synchronization and superovulation schemes were evaluated to assess practicality for zygote collection. Synchronization and superovulation procedures were used that cyclic gilts were synchronized with 20mg altrenogest (ALT) per day for 9days after PG600 administration followed by superovulation with 1500IU pregnant mares serum gonadotropin (PMSG) and 500IU human chorionic gonadotrophin (hCG). Preparation of recombinant gene for microinjection is mice whey acidic protein promoter (mWAP) linked to human erythropoietin (hEPO) gene. After hormone treatment, 650 embryos were collected from 23 donors and 83.1% (540/650) embryos were in 1-cell stage which can be visualized the pronuclei for DNA microinjection. A total of 543 DNA microinjected embryos fiom donors were transferred to 19 synchronized recipients, seven of them maintained pregnancy and delivered 47 piglets. One of the 47 offsprings were determined to have transgene by PCR analysis. The overall rate of transgenic production was 2.13% (tansgenic/offspring). This study provides the success and useful information regarding production of transgenic pig for bioreactor research.

Developmental Characteristics of Cloned Embryos Reconstructed with Induced Pluripotent Stem Cells in Pigs (돼지 유도만능줄기세포 유래 복제란의 특성 분석)

  • Kwon, Dae-Jin;Oh, Jae-Don;Park, Mi-Ryung;Hwang, In-Sul;Park, Eung Woo;Hwang, Seongsoo
    • Journal of Animal Reproduction and Biotechnology
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    • v.34 no.3
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    • pp.232-239
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    • 2019
  • In general, cloned pigs have been produced using the somatic cell nuclear transfer (SCNT) technique with various types of somatic cells; however, the SCNT technique has disadvantages not only in its low efficiency but also in the development of abnormal clones. This study aimed to compare early embryonic development and quality of SCNT embryos with those of induced pluripotent stem cells (iPSCs) NT embryos (iPSC-NTs). Ear fibroblast cells were used as donor cells and iPSCs were generated from these cells by lentiviral transduction with human six factors (Oct4, Sox2, c-Myc, Nanog, Klf4 and Lin28). Blastocyst formation rate in iPSC-NT (23/258, 8.9%) was significantly lower than that in SCNT (46/175, 26.3%; p < 0.05). Total cell number in blastocysts was similar between two groups, but blastocysts in iPSC-NT had a lower number of apoptotic cells than in SCNT (2.0 ± 0.6 vs. 9.8 ± 2.9, p < 0.05). Quantitative PCR data showed that apoptosis-related genes (bax, caspase-3, and caspase-9) were highly expressed in SCNT than iPSC-NT (p < 0.05). Although an early development rate was low in iPSC-NT, the quality of cloned embryos from porcine iPSC was higher than that of embryos from somatic cells. Therefore, porcine iPSCs could be used as a preferable cell source to create a clone or transgenic animals by using the NT technique.

Teratogenic Effects of Phenytoin on Rat Embryos in Culture (랫드에 있어서 배양배자에 대한 Phenytoin의 최기형성 효과)

  • Kim, Jong-Choon;Lim, Kwang-Hyeon;Chung, Moon-Koo;Roh, Jung-Koo
    • Toxicological Research
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    • v.14 no.3
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    • pp.357-363
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    • 1998
  • The teratogenic potential of the anticonvulsant drug phenytoin (PHT) has been well documented both in the human and in the experimental animals. However there are few reports on the effects of PHT on embryonic development in rats in vitro. The present study was performed to evaluate the teratogenic effects of PHT using whole-embryo culture system in rats. Sprague-Dawley rat embryos were explanted on gestational day (GD) 9.5 and cultured for 48 hrs in the immediately centrifuged and heat-inactivated rat serum containing 0,25,50, or $100{\mu}g$ PHT/mL. At the end of culture period the embryos were scored for morphological development according to the procedure of Van Maele-Fabry, and their total protein contents were determined. At 100 ${\mu}$g/mL of culture medium. PHT caused significant reduction in developmental score and protein content of embryos and a high incidence morphological abnormalities (100%). Characteristic malformations included altered yolk and embryonic circulation, craniofacial hypoplasia, neural tube schisis, branchial arch defects, abnormal ratation, and limb bud hypoplasia, among others. There were no adverse effects on embryonic growth and development at concentrations of 25 and 50 ${\mu}$g /mL of culture medium. The results indicated that the dysmorphogenic effect of PHT on cultured embryos is due to a direct interference with embryonic development.

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Clinical Outcomes of Frozen-thawed Embryo Transfer after Microsurgical Removal of Damaged Blastomere (동결-융해 배아 이식에서 손상된 할구의 미세 수술적 제거의 임상적 효과)

  • Choi, Won Yun;Sohn, Jie Ohn;Park, Eun A;Lee, Dong Ryul;Lee, Woo Sik;Han, Se Yul;Park, Lee Suk;Cho, Jung Hyun;Kim, Soo Hee;Cha, Kwang Yul;Yoon, Tae Ki
    • Clinical and Experimental Reproductive Medicine
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    • v.32 no.1
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    • pp.55-64
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    • 2005
  • Objective: Human infertility clinics have been faced the demand for improving clinical results. The purpose of this study was to evaluate the effect of microsurgical removal of damaged blastomeres (DB) in frozen-thawed embryos on the clinical outcomes. Methods: From January 2003 to May 2004, out of 258 thawing ET cycles were divided into three groups: Group-1 (n=46): Intact cleavaged embryos after thawing. Remained cycles with embryos containing DB were randomly divided into two groups. Group-2 (n=102): Drilling zona pellucida (ZP) of frozen-thawed embryos by acidified Tyrode's solution. Group-3 (n=110): Drilling ZP and removal of DB. Embryos after microsurgical manipulation were transferred into the uterus of patients. Results: Clinical profiles and the mean number of transferred embryos among three groups were not different. Pregnancy and implantation rates were similar in three groups. It were 30.4% and 9.3% in Group-1, 29.4% and 7.8% in Group-2, and 26.4% and 7.6% in group-3, respectively. Miscarriage rate in Group-3 (37.9%) was slightly higher than those in Group-1 and Group-2 (14.3% and 23.3%), but it was not statistically significant. Conclusion: Intact cleaving embryos after DB removal showed higher potent of pregnancy and implantation. We could not find any improvement of clinical outcome by removal of DB in frozen-thawed embryos.

Effect of Ethylene Glycol (EG) on the Viability of Mammalian Embryo during Cryopreservation (포유류 초기 배아의 동결 시 생존율에 미치는 Ethylene Glycol(EG)의 영향)

  • Kim, Hyun;Cho, Young Moo;Ko, Yeoung-Gyu;Kim, Sung Woo;Seong, Hwan-Hoo;Yamanouchi, Keitaro
    • Journal of Embryo Transfer
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    • v.29 no.3
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    • pp.235-240
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    • 2014
  • Ethylene glycol (EG) has been successfully used as a cryoprotectant for vitrification of mammalian embryos (including human embryos) due to its low formula weight and high permeation into cells compared with other cryoprotectants, including propylene glycol (PROH). Cryopreservation is able to store the surplus pre-embryos for freezing and furthermore thawing and transfer in a subsequent cycle. This study was carried out to evaluate the effects of embryonic stage, cryoprotectant, and freezing-thawing method on the rates of survival and development of the cryopreserved mouse early embryo and finally to establish the cryopreservation method of surplus embryos obtained during assisted reproductive technology (ART). Female ICR mice (6~8 weeks old) were induced to superovulate by sequential intraperitoneal injection of 5 IU PMSG and 5 IU hCG 48 h apart. Mouse embryos were collected according to its developmental stage after the injection of hCG. Embryos were cryopreserved not only during cryoprotectant step (1~4 step) but also in a variety of media (HTF, IVF medium, D-PBS) and cell stage. The results were as follows : There is no clear advantage in these freezing media of rapid method, but 4 cell and 8 cell of slow method (2, 3 and 4 step) have advantage in D-PBS. The development of embryos according to cell stage become greater in 8 cell stage. In the treatment steps of cryopreservation, the development of embryo to blastocyst was similar among rapid method, but the development of 4 cell and 8 cell embryos to blastocyst according to slow method was better than rapid method.

A STUDY ON CHONDROGENIC POTENTIAL IN MANDIBULAR AND LIMB BUD MESENCHYMAL CELLS OF HUMAN EMBRYOS : A POSSIBLE ROLE OF PROTEIN KINASE C

  • Kook, Yoon-Ah;Kim, Eun-Cheol;Kim, Sang-Cheol
    • The korean journal of orthodontics
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    • v.26 no.6
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    • pp.667-676
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    • 1996
  • We have examined the in vitro stage-related chondrogenic potential of human mandibular and limb bud mesenchyme cells using micromass culture. Our results indicate that limb bud mesenchyme cells as early as stage 16 by Carnegie system (37 days), well before the initiation of in vivo chondrogenesis, have chondrogenic potential which is expressed in micromass culture. These results are correlated with stage-related chondrogenic potential of human limb bud in vivo as a result of Alcian blue staining. The proliferation of chondrogenic cells increased in the first 3 days after culture and then decreased. These results were correlated with the cell cycle analysis of which the number of $G_0^1/G_1$ phase increased markedly after 3 days of culture, while the percentage of cells in S phase was decreased. On the other hand, it was rarely differentiated in the mandible. We examined the effects of two PKC modulators such as phorbol 12-myristate 13-acetate (PMA), a potent activator of PKC, and staurosporine (STSN), an inhibitor of PKC. PMA inhibited the chondrogenesis, whereas STSN promoted the chondrogenesis in a dose dependent manner. In addition, PMA exerted no inhibitory effect when the cells were pretreated for 24 h with STSN, implying that the chondrogenic events might be settled at an early step in vitro and FKC may act as a negative modulator. Collectively, these results demonstrate, for the first time, the stage-related chondrogenic potential of human mandibular and limb bud mesenchyme cells and the role of PKC during chondrogenesis in vitro & in vivo.

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Enhanced Green Fluorescent Protein Gene under the Regulation of Human Oct4 Promoter as a Marker to Identify Reprogramming of Human Fibroblasts

  • Heo, Soon-Young;Ahn, Kwang-Sung;Kang, Jee-Hyun;Shim, Ho-Sup
    • Reproductive and Developmental Biology
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    • v.32 no.2
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    • pp.135-140
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    • 2008
  • Recent studies on nuclear transfer and induced pluripotent stem cells have demonstrated that differentiated somatic cells can be returned to the undifferentiated state by reversing their developmental process. These epigenetically reprogrammed somatic cells may again be differentiated into various cell types, and used for cell replacement therapies through autologous transplantation to treat many degenerative diseases. To date, however, reprogramming of somatic cells into undifferentiated cells has been extremely inefficient. Hence, reliable markers to identify the event of reprogramming would assist effective selection of reprogrammed cells. In this study, a transgene construct encoding enhanced green fluorescent protein (EGFP) under the regulation of human Oct4 promoter was developed as a reporter for the reprogramming of somatic cells. Microinjection of the transgene construct into pronuclei of fertilized mouse eggs resulted in the emission of green fluorescence, suggesting that the undifferentiated cytoplasmic environment provided by fertilized eggs induces the expression of EGFP. Next, the transgene construct was introduced into human embryonic fibroblasts, and the nuclei from these cells were transferred into enucleated porcine oocytes. Along with their in vitro development, nuclear transfer embryos emitted green fluorescence, suggesting the reprogramming of donor nuclei in nuclear transfer embryos. The results of the present study demonstrate that expression of the transgene under the regulation of human Oct4 promoter coincides with epigenetic reprogramming, and may be used as a convenient marker that non-invasively reflects reprogramming of somatic cells.