• Title/Summary/Keyword: Mouse oocytes

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Effect of cell-penetrating peptide-conjugated estrogen-related receptor ${\beta}$ on the development of mouse embryos cultured in vitro

  • Yang, Ning Jie;Seol, Dong-Won;Jo, Junghyun;Jang, Hyun Mee;Yoon, Sook-Young;Lee, Dong Ryul
    • Clinical and Experimental Reproductive Medicine
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    • v.41 no.1
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    • pp.1-8
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    • 2014
  • Objective: Estrogen related receptor ${\beta}$ (Esrrb) is a member of the orphan nuclear receptors and may regulate the expression of pluripotencyrelated genes, such as Oct4 and Nanog. Therefore, in the present study, we have developed a method for delivering exogenous ESRRB recombinant protein into embryos by using cell-penetrating peptide (CPP) conjugation and have analyzed their effect on embryonic development. Methods: Mouse oocytes and embryos were obtained from superovulated mice. The expression of Oct4 mRNA and the cell number of inner cell mass (ICM) in the in vitro-derived and in vivo-derived blastocysts were first analyzed by real time-reverse transcription-polymerase chain reaction and differential staining. Then 8-cell embryos were cultured in KSOM media with or without $2{\mu}g/mL$ CPP-ESRRB protein for 24 to 48 hours, followed by checking their integration into embryos during in vitro culture by Western blot and immunocytochemistry. Results: Expression of Oct4 and the cell number of ICM were lower in the in vitro-derived blastocysts than in the in vivo-derived ones (p<0.05). In the blastocysts derived from the CPP-ESRRB-treated group, expression of Oct4 was greater than in the non-treated groups (p<0.05). Although no difference in embryonic development was observed between the treated and non-treated groups, the cell number of ICM was greater in the CPP-ESRRB-treated group. Conclusion: Treatment of CPP-ESRRB during cultivation could increase embryos' expression of Oct4 and the formation rate of the ICM in the blastocyst. Additionally, an exogenous delivery system of CPP-conjugated protein would be a useful tool for improving embryo culture systems.

In vitro Follicular Growth and Ovulation of Mouse Preantral Follicles Cryopreserved by Vitrification (초자화동결된 생쥐 Preantral Follicle의 체외성장과 배란)

  • Park, Ji-Kwon;Paik, Won Young
    • Clinical and Experimental Reproductive Medicine
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    • v.32 no.2
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    • pp.91-99
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    • 2005
  • Objective: To define an appropriate vitrification condition of preantral follicle that yields high survival and to evaluate growth and ovulation rate of mouse follicles during in vitro culture after vitrification. Methods: Preantral follicles were isolated mechanically from mouse ovaries that were surgically recovered from mice aged 14 days. Retrieved preantral follicles were placed in EG (Ethylene Glycol) for 2, 5, 10 minutes and transferred to EFS-40 (40% EG, 18% Ficoll-70, 0.5 M sucrose) for 0.5, 1, 2 minutes. And then, preantral follicles were placed onto an EM grid and submerged immediately in liquid nitrogen. Thawing was carried out at room temperature. After defining the most appropriate vitrification condition that yields high survival, in vitro growth and ovulation rate of follicles were evaluated. Results: Appropriate vitrification condition that yield high survival rate ($83.2{\pm}2.1%$) of preantral follicle was EG for 5 minutes and EFS-40 for 0.5 minutes. In vitro survival rate of the vitrified preantral follicles were $85.5{\pm}0.5%$, $67.9{\pm}0.8%$ and $40.2{\pm}0.5%$ on day 2, 6 and 10. And in vitro growth of the vitrified preantral follicles were $107.1{\pm}16.1{\mu}m$, $117.1{\pm}18.4{\mu}m$, $178.4{\pm}45.6{\mu}m$ and $325.4{\pm}54.4{\mu}m$ on day 0, 2, 6 and 10. Although in vitro survival rate and growth of vitrified preantral follicles were lower than that of non-vitrified preantral follicles, the patterns of survival and growth were similar in vitrified and non-vitrified preantral follicles. The ovulation rate of antral follicles that was grown from vitrified preantral follicles was $32.6{\pm}1.2%$. Conclusion: Vitrified preantral follicles could be grown to antral sizes, and mature oocytes that can be used for IVF-ET programs were produced successfully. These data suggest that cryopreservation of preantral follicle by vitrification can be used for the preservation of the fertility.

Studies on the Effects of Dibutyryl Cyclic AMP and Theophylline on RNA Synthesis in Mouse Follicular Oocytes in Vitro (Dibutyryl Cyclic AMP와 Theophylline이 培養중인 생쥐 濾胞卵子의 RNA合成에 미치는 영향에 관한 연구)

  • Cho, Wan-Kyoo;Yoo, Seung-Hyun
    • The Korean Journal of Zoology
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    • v.18 no.1
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    • pp.19-26
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    • 1975
  • 自記放射法을 이용하여 dbcAMP와 theophylline이 未成熟卵子의 RNA合成에 미치는 영향을 관찰하였다. 培養中인 未成熟卵子의 RNA合成은 dbcAMP와 theophylline에 의하여 抑制를 받았다. dbcAMP나 theophylline은 培養液(modified Krebs-Ringer bicarbonate solution)內에 100 $\\mu$g/ml 정도 들어 있으며 핵막(germinal vesicle)의 붕괴 되지 못하고 그대로 存在하며 그동안의 RNA合成은 극히 억제된 채로 남아 있다. 그러나 培養을 시작하여 2$\\sim$3時間後, 즉 핵막붕괴가 끝난 다음에 이들 억제물질을 배양액에 添加하면 正常卵子와 같이 성숙분열이나 RNA合成이 억제 됨이 없이 진행된다. 24時間동안 dbcAMP나 theophylline으로 성숙이 억제 되었던 卵子도 이들 억제물질을 제거하면 즉시 成熟分裂이 진행되며 RNA合成도 正常的으로 일어난다. 이런 結果로 미루어 dbcAMP등의 RNA合成 抑制機作에 한 가지 가능성을 추측할 수 있다. 즉 dbcAMP나 theophylline의 처리에 의해 細胞質內 cAMP의 농도가 높아지고 이 cAMP는 핵막붕괴나 染色質의 응집에 관여하는 단백질 合成을 誘導할 mRNA合成을 억제하며 이 때문에 卵子는 핵을 보유한채 그대로 남아 있는 것이다.

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Studies on the Effects of Dibutyryl Cyclic AMP and Theophylline on Intracellular Contents of Glycogen of Mouse Follicular Oocytes in Vitro (Dibutyryl Cyclic AMP와 Theophylline이 培養중인 생쥐 濾胞卵子의 Glycogen 함량에 미치는 영향에 관한 연구)

  • Cho, Wan-Kyoo;Yoon, Yong-Dal
    • The Korean Journal of Zoology
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    • v.18 no.1
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    • pp.27-40
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    • 1975
  • dbcAMP와 theophylline이 난자의 성숙을 억제하는 기작과 난자내 glycogen 함량과의 관계를 밝혀보기 위하여 실험한 결과는 다음과 같다. 1. 생쥐 여포난자의 PAS 양성물빌은 glycogen이며 핵의 성숙분열이 진행됨에 따라 glycogen의 함량은 감소한다. 2. dbcAMP나 theophylline에 의해 핵의 성숙이 억제된다 하더라도 난자내의 glycogenolysiss는 촉진된다. 이에 반해 핵분열이 일어나지 않은 난자는 배양이 진행되더라도 glycogen을 그대로 유지하고 있다. 일단 dbcAMP나 theophylline에 의해 성숙이 억제되었던 난자가 성숙과정에 들어가려면 다시 glyconeogenesis가 일어나 세포질내의 glycogen의 양이 회복하며 이때의 glycogen은 핵성숙과 더불어 소모된다. 3. Glycogen의 회복은 배양액내의 glucose 유무에 관계없이 이루어지며 따라서 이는 난자내 glucose 혹은 다른 전구물질에 의해 이루어지리라고 추측된다. 4. 결국 dbcAMP나 theophylline은 난자내 cAMP의 양을 증가시켜 glycogen의 소모를 일으키는 것으로 생각되며, glycogenolysis와 난자의 핵 성숙과정이 별개로 진행되기는 하지만 성숙의 요건은 일정량 이상의 glycogen이 함유되어 있어야 한다는 것을 알게되었다.

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Generation of Miniaturized Ovaries by In Vitro Culture from Mouse Gonads

  • Jang, Si Won;Choi, Hyun Woo
    • Development and Reproduction
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    • v.25 no.3
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    • pp.173-183
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    • 2021
  • The incidence of infertility among individuals of reproductive age has been growing due to genetic and environmental factors, and considerable research efforts are focused on solving this issue. Ovarian development is an overly complex process in the body, involving the interaction between primordial germ cells and gonad somatic cells. However, follicles located in the center of the in vitro ovary are poorly formed owing to ovarian complexity, nutrient deficiency, and signaling deficiency. In the present study, we optimized methods for dissociating gonads and culture conditions for the in vitro generation of miniaturized ovaries. The gonads from embryos were dissociated into cell masses and cultured on a Transwell-COL membrane for 3-5 weeks. Approximately 12 follicles were present per in vitro ovary. We observed that miniaturized ovaries successfully matured to MII oocytes in vitro from 150 to 100 ㎛ gonad masses. This method will be useful for investigating follicle development and oocyte production.

Haploidy of somatic cells in mouse oocyte using somatic cell nuclear transfer

  • Yeonmi Lee;Eunju Kang
    • Journal of Animal Reproduction and Biotechnology
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    • v.37 no.4
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    • pp.213-217
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    • 2022
  • Haploidization in somatic cells is the process of reducing the diploid somatic chromosomes to haploid. Several studies have attempted somatic haploidization using oocytes in mice and humans. Some researchers showed partial somatic haploidization, but none observed embryo development. Our study attempted somatic haploidization using the modified somatic nuclear transfer (SCNT) protocol with various combinations of chemicals or proteins in mice. This study induced the proper segregation of somatic homologous chromosomes and full embryo development in vitro. Furthermore, somatic haploid embryos established embryonic stem cells and produced live births. The current review summarizes this recent study on the success of somatic haploidization and provides an overview of other related studies on somatic haploidization.

Effect of Antioxidants for Porcine Oocytes during In Vitro Maturation, Fertilization and Development (돼지 난포란으로부터 체외수정란의 생산에 있어서 항산화제의 첨가가 배 발달에 미치는 효과)

  • Park H.;Kim J. Y.;Kim J. Y.;Lee J. H.;Park H. D.;Kim J. M.
    • Journal of Embryo Transfer
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    • v.19 no.3
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    • pp.245-255
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    • 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.

Effects of Glycosaminoglycan on the Development of In vitro Fertilized Mouse Embryo (Glycosaminoglycan이 생쥐 수정란의 체외 발달에 미치는 영향)

  • Kim, J.W.;Seo, D.S.;Yoon, S.H.;Ko, Y.
    • Korean Journal of Animal Reproduction
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    • v.24 no.3
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    • pp.269-279
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    • 2000
  • The present study was carried out to evaluate the effect of glycosaminoglycans added to the culture medium on the mouse embryo development to the blastocyst stage. In vitro fertilized mouse oocytes were cultured in Ham's F-10 supplemented with 10% FBS either in the absence or presence of 0.1, 0.5, 1.0 mg/$m\ell$ hyaluronic acid, chondroitin sulfate, and dermatan sulfate, respectively. After 4 days in culture, embryos developed to blastocysts were observed in all groups. There was a significant increase in blastocyst yield in the presence of hyaluronic acid and chondroitin sulfate (p<0.05), whereas dermatan sulfate was ineffective. Development to the blastocyst stage was best supported in 0.1, 0.5, 1.0 mg/$m\ell$ hyaluronic acid and 0.5mg/$m\ell$ chondroitin sulfate. It is concluded that hyaluronic acid and chondroitin sulfate support the development of mouse oocyte fertilized in vitro to the blastocyst stage. Furthermore, these results suggest that glycosaminoglycans can be utilized to support embryo development in vitro as a nutrient instead of serum.

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Effect of Addition of ESCM and ESM during In Vitro Maturation on In Vitro Development of Porcine Follicular Oocytes (돼지 난포란으로부터 배반포의 체외생산에 있어서 체외성숙시 기초배양액에 ESCM과 ESM의 첨가효과)

  • Kim, Seok-Gi;Park, Hum-Dai
    • Journal of Animal Reproduction and Biotechnology
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    • v.34 no.3
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    • pp.205-211
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    • 2019
  • In this study, we investigated the possibility of using mouse embryonic stem cell conditioned medium (ESCM) and embryonic stem cell medium (ESM) for in vitro maturation in the efficient in vitro production of blastocysts from porcine follicular oocyte. Depending on the concentration of supplement of ESCM added to the NCSU-23 solution did not affect 2-cell development rates and blastocysts development. However, in particular, the survival rate (10 days of culture) of blastocyst was significantly higher than that of the control group as the additive concentration (30%) increased (p < 0.05). The survival rate of blastocysts showed a similar tendency even with addition of ESM (30%) alone. On the other hand, the duration of the addition of these additives during IVM (0-44 h) was that the IVM I period (0-22 h) were more effective than the IVM II period (22-44 h). Thus, the effect of these additives is probably due to the combination of the various physiologically active substances of ESCM or the appropriate amino acids and vitamins of ESM. In particular, these additives were more effective during the first half (IVM I) of in vitro maturation. In summary, optimization of ESCM or ESM supplementation may improve in vitro maturation of porcine oocyte and affect developmental competency. Therefore, if more efficient methods of adding ESCM or ESM to basal culture medium can be developed during in vitro maturation of porcine follicle oocytes, high quality blastocysts will be developed from low porcine follicular oocyte compared to other domestic animals.