• Title/Summary/Keyword: Blastocyst formation

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Effect of Culture Media and Co-culture with Bovine and Rabbit Oviductal Epithelial Cells on In Vitro Development of Rabbit Embryos (토끼 수정란의 체외발달에 미치는 배양액 및 소와 토끼의 난관상피세포들과의 공배양 효과)

  • 노규진;이효종;송상현;윤희준;박충생
    • Korean Journal of Animal Reproduction
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    • v.18 no.1
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    • pp.39-46
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    • 1994
  • This experiment was carried out to develop an in vitro culture system for rabbit embryos. The zygotes or 2-cell embryos were collected from the oviducts of the superovulated and mated does with D-PBS/10% FCS at 24 hours after hCG injection. The in vitro developmental rate of blastocyst formation and the number of nuclei in the embryos were examined under the following treatments; 1) TCM-199 with 10% FCS, 2) EBSS with 10% FCS, 3) rabbit vitreous humor(VH), 4) TCM-199 with 10% FCS+BOEC, 5) TCM-199 with 10% FCS+ROEC, 6) EBSS with 10% FCS+BOEC and 7) EBSS with 10% FCS+ROEC. For a comparative study of in vivo and in vitro development, the fresh blastocysts, which were developed in vivo for 96 hours after hCG injection, were collected from the uterus and their numbers of nuclei were counted. 1. The zygotes or 2-cell embryos developed to the blastocyst stage in TCM-199, EBSS and VH at the rates of 93, 92 and 89%, respectively. 2. The higher developmental rates 95~98% of blastocyst formation was achieved when the embryos were co-cultured with a monolayer of bovine or rabbit oviductal epithelial cells in TCM-199 or EBSS. No significant difference in developmental rates was shown between bovine and rabbit oviductal epithelial cells. 3. In a comparative study of in vivo and in vitro development, the total numbers of nuclei were significantly less in the in vitro cultured embryos(104~224) than the in vivo developed embryos(1, 0090 at 96 hours after hCG injectin. 4. The mean cell cycle numbers in the embryos cultured for 72 hours in TCM-199 with 10% FCS, EBSS with 10% FCS, TCM-199 with 10% FCS+BOEC, TCM-199 with 10% FCS+ROEC, EBSS with 10% FCS+BOEC and in vivo was 7.38, 6.63, 7.76, 7.69, 7.01 and 9.92, respectively. From these results, it can be suggested the optimal culture system for in vitro culture of rabbit embryos is a co-culture system with bovine or rabbit oviductal epithelial cells in TCM-199 with 10% FCS. Considering the significant reduction in total numbers of nuclei in the in vitro cultured embryos, the advanced research on development of in vitro culture system for rabbit embryos is expected.

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The Beneficial Effects of Ferulic Acid supplementation during In Vitro Maturation of Porcine Oocytes on Their Parthenogenetic Development

  • Lee, Kyung-Mi;Hyun, Sang-Hwan
    • Journal of Embryo Transfer
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    • v.32 no.4
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    • pp.257-265
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    • 2017
  • Ferulic Acid (FA) is a metabolite of phenylalanine and tyrosine, a phenolic compound commonly found in fruits and vegetables. Several studies have shown that FA has various functions such as antioxidant effect, prevention of cell damage from irradiation, protection from cell damage caused by oxygen deficiency, anti-inflammatory action, anti-aging action, liver protective effect and anti-cancer action. In this study, we investigated the maturation rate, intracellular glutathione (GSH) and reactive oxygen species (ROS) of porcine oocytes by adding FA to the in vitro maturation (IVM) medium and examined subsequent embryonic developmental competence at 5% oxygen through parthenogenesis. There is no significant difference between the control group ($0{\mu}M$) and treatment groups ($5{\mu}M$, $10{\mu}M$, $20{\mu}M$) on maturation rates. Intracellular GSH levels in oocyte treated with $5{\mu}M$ of FA significantly increased (P < 0.05), and $20{\mu}M$ of FA revealed significant decrease (P < 0.05) in intracellular ROS levels compared with the control group. Oocytes treated with FA exhibited significantly higher cleavage rates (79.01% vs 89.19%, 92.20%, 90.89%, respectively) than the control group. Oocytes treated with $10{\mu}M$ showed significantly higher blastocyst formation rates (28.3% vs 40.3%, respectively) after PA than the control group. Total cell numbers in blastocyst of $10{\mu}M$ FA displayed significantly higher (39.4 vs 51.9, respectively) than the control group. In conclusion, these results suggested that treatment with FA during IVM improved the developmental potential of porcine embryos by increasing intracellular GSH synthesis and reducing ROS levels. Also, there was an improvement of cleavage rate, blastocyst formation and total cell numbers in blastocysts. It might be associated with Keap1-Nrf2 pathway as an antioxidant regulate pathway that plays a crucial role in determining the sensitivity of cells to oxidative damages by regulating the basal and inducible expression of enzymes which is related to detoxification and anti-oxidative effects, stress response enzymes and/or proteins and ABC transporters.

Effects of Medium on Blastocyst Formation, Cell Number and Percentage of ICM in Mice (마우스에서 배반포 형성, 세포 수 및 ICM의 비율에 미치는 배양액의 효과)

  • Park, Kee-Sang;Lee, Taek-Hoo;Chun, Sang-Sik;Song, Hai-Bum
    • Clinical and Experimental Reproductive Medicine
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    • v.29 no.4
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    • pp.237-243
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    • 2002
  • Objective : The aim of this study was to evaluate the influence of different media on blastulation, mean cell number, percentage of inner cell mass (ICM) of total cells and ICM : trophectoderm (TE) ratio in mice. Materials and methods: A total 552 two cell embryos were retrieved from ICR female mice (4 weeks old) at 48 hr after hCG injection (mated just after hCG injection) and cultured in MEM (n=276) or TCM (n=276) supplemented with 20% hFF. The grading of blastocysts from zona-intact (ZiB) to -escape (hatching and hatched, ZeB) was performed at 72 hours after culture. Total, TE and ICM cell numbers were analyzed by differential staining of blastocyst. Statistical analysis was performed using t-test with SigmaPlot-2001. P-values < 0.05 were accepted as statistically significant. Results: The blastulation rate in MEM ($64.9{\pm}4.95%$) was significantly higher (p=0.0031) than that in TCM ($57.2{\pm}5.22%$). No differences were found in the number of ZiB and ZeB between MEM ($31.9{\pm}2.62$, $33.0{\pm}4.58%$), and TCM ($27.2{\pm}4.28$, $30.1{\pm}4.58%$). A total 314 blastocysts (MEM=166; TCM=148) were stained differentially. Mean cell number of blastocysts was significantly higher (p=0.0002) in TCM ($73.1{\pm}3.3$) than in MEM ($61.7{\pm}2.5$). Differential staining was successfully performed in 155 blastocysts (MEM=77; TCM=78). The percentage of ICM was significantly higher in MEM than in TCM ($20.9{\pm}1.3$ vs. $17.1{\pm}1.2%$, p=0.0281). The ICM : TE ratio was higher in TCM than in MEM (1 : $4.85{\pm}0.68$ vs. 1 : $3.78{\pm}0.78$, NS). Conclusion: These results show that MEM increase the blastocyst formation and percentage of ICM of total cells comparing with TCM in mice.

Correlation of Hanwoo (Korean Native Cattle) Carcass Classification and Oocyte Donor for Blastocyst Production In Vitro (한우 육질등급이 난포란의 배반포 체외생산에 미치는 영향)

  • Kim, Kang-Sig;Lee, Hong-Chul;Park, Yong-Su;Kim, So-Sub;Park, Hum-Dai
    • Journal of Embryo Transfer
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    • v.30 no.3
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    • pp.161-170
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    • 2015
  • These studies were conducted to establish the practical Hanwoo (Korean native cattle) improvement system through the combining of embryo transfer technology and confirming individual Hanwoo oocyte culture system and to investigate that correlation of Hanwoo carcass classification (intramuscular marbling) and oocyte donor for blastocyst production in vitro. In case of Hanwoo, the carcass meat quality grades were divided to grade $1^{{+}{+}}$, $1^{+}$, 1, 2, and 3 depends on fat distribution of longest muscle cross-sectional surface. As results, the numbers of follicular oocytes collected from individual fundamentally-registered Hanwoo yielded $1^{{+}{+}}$, $1^{+}$, 1, 2 and 3 meat quality were 9.5, 9.4, 8.5, 8.8 and 8.8 per ovary, respectively. The numbers of retrieval oocyte from follicles were significantly higher in the cattle yield $1^{{+}{+}}$, $1^{+}$ meat quality than in the cattle yield 1, 2 and 3 meat quality (p<0.05). The rates of blastocyst formation were 18.2, 21.3, 29.4, 30.9, and 31.5% in the cattle yield $1^{{+}{+}}$, $1^{+}$, 1, 2 and 3 meat quality of after in vitro maturation, respectively. It was significantly lower in the cattle yield $^{{+}{+}}$ and $1^{+}$ meat quality than in the cattle yield 1, 2 and 3 meat quality (p<0.05). In order to evaluate embryos quality, TUNNEL assay was conducted for each meat quality grade using blastocyst stage embryo on day 8. The results showed that apoptosis cell number was higher tendency in the cattle yield $1^{{+}{+}}$and $1^{+}$ meat quality (81 and 79, respectively) than in the cattle yield 1, 2 and 3 meat quality (51, 48 and 50, respectively) but there was no statistical significance in each group. After embryo transfer, the conception rate of recipient was 53.5 (23 out of 43), 52.1 (38 out of 73) and 58.0% (58 out of 100) in the meat quality of 1, $1^{+}$ and $1^{{+}{+}}$, respectively. These results showed that the conception rate was significantly higher in the cattle yield 1 meat quality than in the cattle yield $1^{{+}{+}}$, $1^{+}$, 2, and 3 meat quality (p<0.05). In summary, these results indicate that the application of confirming Hanwoo individual oocyte culture system and embryo transfer technology can make good use of the genetic resources conservation and improvement of Hanwoo. Relevance of the meat quality grade and reproductive ability of carcasses of Hanwoo will be considered to be one of the effective means for the associated research with obesity and reproduction.

Morphological Characteristics of Pig Blastocysts Produced by Somatic Cell Nuclear Transfer

  • Y.M. Han;D.B. Koo;Park, Y.H.;Park, J.S.;Kim, H.N.;Y.K. Kang;W.K. Chang;Lee, K.K.
    • Proceedings of the KSAR Conference
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    • 2001.03a
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    • pp.68-68
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    • 2001
  • Blastocyst formation, consisting of the inner cell mass (ICM) and trophectoderm (TE), is the first differentiation process during embryonic development in mammals. It has been hypothesized that the proportion of ICM to TE in the blastocyst may be crucial for subsequent developmental competence of early embryos, which it may be expressed as a sensitive indicator for evaluating in vitro systems. In this study ICM/total cell ratio of nuclear transfer (NT) embryos was compared with IVF-derived and in vivo embryos. Somatic cell nuclei obtained from a fetus at Day 40 of gestation were transferred into the enucleated oocyte and then cultured in NCSU 23 medium for 6 days as previously described (Koo et al., Biol. Reprod. 2000; 63:986-992). ICM and TE cells of blastocysts were determined by using a differential staining method (Han et al., Biol. Reprod. 1999; 60:1110-1113). Development rate (9.8$\pm$2.5%, 23/225) to the blastocyst stage of NT embryos was lower than IVF embryos (23.8$\pm$2.7%, 53/223). Thus, a difference was detected in the in vitro developmental rate to blastocyst stage between NT and IVF-derived embryos (P<0.05). In the next experiment, we investigated ICM and TE nuclei to assess the quality of blastocysts that produced by NT, IVF and in vivo, respectively. NT blastocysts (27.6$\pm$8.3) showed a smaller total cell number than IVF-derived (42.6$\pm$17.4) and in vivo embryos (283.9$\pm$103.5) (P<0.05). Ratios of ICM/total cells in NT, IVF and in vivo blastocysts were 15.1$\pm$ 18.6% (n=56), 12.3$\pm$9.2% (n=57) and 30.4$\pm$6.8% (n=40), respectively. Individual blastocysts for the ratio of ICM/total cells were assigned to 3 groups (I; <20%, II; 20 to 40% and III;>40%). As the results, most in vivo blastocysts (97.5%, 39/40) were distributed into group II while most NT (78.6%, 44/56) and IVF-derived blastocysts (82.5%, 47/57) were allocated to group I. Thus, our data show that NT or IVF-derived embryos have aberrant morphology during early development in vitro systems, suggesting that these anomalies may result in developmental failures of the NT embryos to term.

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Effect of Co-culture with Bovine and Porcine Oviductal Epithelial Cells on In Vitro Development of Mouse Embryos (마우스 수정란의 체외발달에 미치는 소와 돼지의 난관상피세포와의 공배양 효과)

  • Lee, S.;Hur, E.J.;Seok, H.B.
    • Korean Journal of Animal Reproduction
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    • v.21 no.2
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    • pp.139-146
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    • 1997
  • This experiment was carried out to evaluate the effect of mouse early embryonic development in vitro by co-culture with bovine and porcine oviductal epithelial cells(BOEC and POEC). The 2-cell embryos were collected from the oviducts of the superovulated and mated does with D-PBS/15% FCS at 48 hours after hCG injection. The in vitro developmental rate of blastocyst formation and the number of nuclei in the embryos were examined. For a comparative study of in vi패 and in vitro development, the fresh blastocyst which developed in vivo for 120 hours after hCG injection was collected from the uterus, and their numbers of nuclei were also counted. The higher developmental rates of blastocyst formation was a, pp.ared from 91% to 97% when the embryos were co-cultured with a monolayer of bovine or porcine oviductal epithelial cells in TCM 199 or Ham's F-10 and MediCult IVF media. No significant difference in developmental rates was shown between bovine and porcine oviductal eptithelial cells. The number of nuclei in the embryos cultured for 72 hours under each conditions was significantly reduced it than blastocyst in vitro conditions. The number of nuclei in embryos cultured in TCM 199, Ham's F-10 and Medicult IVF medium were counted 68.1$\pm$6.00, 67.3$\pm$4.49, 66.4$\pm$5.64, and 94.3$\pm$8.61, 92.5$\pm$7.60, 92.1$\pm$6.10 with BOEC and 93.3$\pm$5.80, 92.9$\pm$6.53, 92.3$\pm$7.35 with POEC coculture, respectively. These numbers were lowered than 107.2$\pm$7.43 in vivo conditions. In conclusions, the coculture between the mouse early embryos, and oviductal epithelial cells of BOEC and POEC give to improve the developmental and hatching rates of blastocyst but in vivo culture systems for the growth of nuclei were ineligible than in vitro conditions.

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Effect of Thiol Compounds on the Blastocyst Formation of In Vitro Matured and Fertilized Bovine Embryos (체외에서 성숙되고 수정된 소 난자의 배반포 형성에 있어 항산화제의 역할)

  • 정미용;도정태;엄진희;엄상준;김남형;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.22 no.3
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    • pp.293-300
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    • 1998
  • The objective of this study was to determine effects of $\beta$-mercaptoethanol ($\beta$-ME) and cyst-eine (CYS) on the development of bovine em-bryos obtained from in vitro matured and fertil-ized oocytes. Cumulus-oocyte-complexes (COC-s) were matured in micro-drop of TCM-199 medium containing 10% FBS, 17$\beta$-Estradiol and FSH-p under paraffin oil at 39$^{\circ}C$ for 24 hrs. The fertilization of COC were induced in Fert-TALP medium supplemented with PHE, heparin, BSA and then the fertilized oocytes were cultured in CR1aa medium for 24 hrs. To investigate the effects of the agents on the development of the embryos, the embryos developed to the late 2-cell stage were cultured in the media with and without $\beta$-ME, CYS for 9 days. In experiment 1, to select appropriate concentration of $\beta$-ME and CYS during whole culture period (9 days), various concentrations of $\beta$-ME and CYS were add ded to the CR1aa medium. Addition of 25TEX>$\mu$M of $\beta$-ME and O.1mM of CYS to the culture medium 1 increase the incidence of embryos developed to the blastocyst. In experiment 2, we evaluated the effects of 25$\mu$M of $\beta$-ME and O.1mM of CYS addition on the blastocyst formation when emb bryos at different stages were exposed to 25$\mu$M $\beta$-ME and O.1mM of CYS. $\beta$-ME and CYS enhanced in vitro development of embryos to the blastocyst stage. The effect was greater in 8-ceII to morula embryos than in embryos fewer than 2-cells at the initiation of treatment. These results suggested that the addition of 25$\mu$M B-ME and O.1mM cysteine enhanced development to the blastocyst and hatching stage of in vitro derived bovine embryos, also addition of $\beta$-ME and cysteine were effective later stage embryo than early embryo development.

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Studies on Oocyte Activation Regimen for Nuclear Transfer in Hanwoo(Korean Cattle) (핵이식을 위한 한우 난자 활성화 처리방법에 관한 연구)

  • 임기순;양보석;박성재;양병철;장원경;박창식
    • Korean Journal of Animal Reproduction
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    • v.24 no.3
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    • pp.281-288
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    • 2000
  • This experiment was carried out to investigate the optimal activation condition for parthenogenetic development. In order to activate oocytes at 22 h post onset of maturation, the oocytes were subjected to 5 $\mu$M ionomycin(I) for 5 min ,10 $\mu$M calcium ionophore(Ca) for 5 min, 2 mM 6-dimethylamino-purine(DMAP) for 3 h and 10 $\mu\textrm{g}$/$m\ell$ cycloheximide(CH) for 6 h alone or in combination. The activated oocytes were cultured in modified CR$_1$aa at 5% $CO_2$, 5% $O_2$, 90% $N_2$. l. The cleavage rates after 48 h culture of oocytes treated with I, Ca, DMAP and CH were 12.7%, 14.1%, 28.9% and 22.9%, respectively. There was no blastocyst formation. 2. The cleavage rates after 48 h culture of oocytes treated with I + DMAP, I + CH, Ca + DMAP and Ca + CH were 96.9%, 82.1%, 93.1% and 34.7%, respectively. Developmental rates to blastocysts were 10.4%, 5.3%, 17.6% and 7.1 %, respectively. When oocytes were treated with Ior Ca followed by DMAP, the blastocyst formation rate was significantly higher than other groups(P <0.05). 3. According to single activation treatment, pronucleus formation rates were 5.4%, 3.6%, 28.3% and 28.8%, respectively, Whereas, all oocytes treated with the combined activation agents formed 100% pronucleus.

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Effect of Cysteamine on In Vitro Maturation of Porcine Oocytes and Development of Porcine IVM/IVF Embryos (Cysteamine의 첨가배양이 돼지 난포란의 체외성숙과 배발달에 미치는 영향)

  • 이경본;한만희
    • Korean Journal of Animal Reproduction
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    • v.26 no.1
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    • pp.41-51
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    • 2002
  • 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.

Efficient Production of Parthenogenetic Murine Embryonic Stem Cells by the Treatment of Pluripotin (SC-1) (Pluripotin(SC-1) 처리를 통한 단위발생 마우스 배아줄기세포 생산 효율 향상)

  • Kang, Hoin;Roh, Sangho
    • Journal of Embryo Transfer
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    • v.27 no.3
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    • pp.171-174
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    • 2012
  • Various small molecules can be used to control major signaling pathways to enhance stemness and inhibit differentiation in murine embryonic stem cell (mESC) culture. Small molecules inhibiting the fibroblast growth factor (FGF)/ERK pathway can preserve pluripotent cells from stimulation of differentiation. In this study, we aimed to evaluate the effect of pluripotin (SC-1), an inhibitor of the FGF/ERK pathway, on the colony formation of outgrowing presumptive mESCs. After plating the zona pellucida-free blastocyst on the feeder layer, attached cell clumps was cultured with SC-1 until the endpoint of the experiment at passage 10. In this experiment, when the number of colonies was counted at passage 3, SC-1-treated group showed 3.4 fold more mESC colonies when compared with control group. However, after passage 4, there was no stimulating effect of SC-1 on the colony formation. In conclusion, SC-1 treatment can be used to promote mESC generation by increasing the number of early mESC colonies.