• Title/Summary/Keyword: cumulus

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Comparison of Gene Expression between Cumulus Oocyte Complexes and Naked Oocytes by Suppression Subtractive Hybridization in Swine

  • Xiang, Zhi Feng;Zhang, Jin Zhou;Li, Xue Bin;Xie, Hong Bin;Wang, Qing Hua
    • Asian-Australasian Journal of Animal Sciences
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    • v.23 no.1
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    • pp.17-24
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    • 2010
  • In the antral follicle phase, several layers of cumulus cells surround the oocyte and play an important support and regulation role in oocyte development and maturation via intercellular communications and interactions between oocytes and cumulus cells. However, information on stage specific gene expression in swine during the phase is not well understood. To investigate the function of cumulus cells during in vitro maturation of porcine oocytes and gene expression, suppression subtractive hybridization (SSH) was performed to screen genes that were differentially expressed between cumulus-oocyte complexes (COCs) and naked oocytes (NOs). Utilizing mRNAs from in vitro maturation oocytes, a SSH cDNA library from COCs as the tester and NOs as the driver was constructed. The SSH cDNA library was then screened using dot blot analysis. Results showed that a total of 70 clones randomly selected from the library were differentially expressed. Among these, 41 exhibited high homology to known genes and 11 were novel expressed sequences tags (ESTs). Four differentially expressed genes, including bfgf, sprouty 2, egr and btc, were further studied by real time quantitative PCR; results confirmed an increased expression of respective mRNA in COCs compared with NOs, which suggests that these factors may play an important role in oocyte development and maturation.

The Expression of Matrix Metalloproteinases Activated Differently on In-Vitro Maturation of oocytes Cytoplasm and Cumulus Cells in Bovine (소 난자의 체외성숙시 난구세포와 난세포질에서 다르게 발현되는 Matrix Metalloproteinases의 분석)

  • Kim, Sang-Hwan;Yoon, Jong-Taek
    • Journal of Embryo Transfer
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    • v.33 no.3
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    • pp.99-105
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    • 2018
  • To determine the differences in the in-vitro ovum maturation process of bovine, we compared the expression of MMPs in these oocytes and cumulus cell throughout oocytes maturated. In an attempt to investigate the effect of MMP activation and inhibitors in total protein of cumulus cell and, oocytes during oocytes maturation, we examined and monitored the localization and expression of MMPs (MMP-2 and MMP-9), TIMPs (TIMP-2 and TIMP-3), as well as their expression profiles (Real-time PCR, Gelatin Zymography and ELISA). Our results that the bovine oocytes MMP-2 and MMP-9 level was significantly associated with the rate of maturity of oocytes (P<0.05). In cumulus cell, MMP-2 was highly expressed in all stages of the oocyte's maturation. The final oocytes maturation exhibited strong gelatinase activity. There was no significant correlation between cumulus cell MMP-9 and the maturation rate of oocytes. However, for the oocyte cytoplasm MMP-9 expression was significant correlation to the maturation oocytes. There was no significant correlation between cumulonimbus cells MMP-9 and oocyte maturation rates; however, for oocyte cytoplasm, MMP-9 expression was significantly correlated with mature oocyte. However, the TIMP-1 and TIMP-2 protein expression patterns are not correlated with the maturation rate of the oocyte. Our results suggest that MMP different expression pattern may regulate the morphological remodeling of oocyte's in the cumulus cell. Further, the MMP-2 expression has a strong relation with a higher maturation rate of the oocyte.

Effect of Zona Hardening on In Vitro Fertilization in Mouse Oocytes I. Analysis of Zona Soluble Properties with Proteolytic Enzymes (생쥐난자에 있어서 투명대 경화 현상이 체외수정에 미치는 영향 I. 단백분해효소에 의한 투명대의 용해성 분석)

  • 이상진;이상민;지희준;장경환;정형민;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.17 no.2
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    • pp.93-101
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    • 1993
  • These experiments were carried out to investigate whether zona hardening affect the efficiency of in vitro fertilization in mouse oocytes. The soluble properties for zona pellucida of oocytes matured in vivo, aged oocytes, and ovarian oocytes matured in vitro have been analyzed with proteolytic enzyme, 3mg/ml of $\alpha$-chymotrypsin. The mean solubility(t50) for the zona of unfertilized oocytes, oocytes not fertilized at the first inseminati and in vitro produced zygotes were 10.1, 20.3 and 32.3min., respectively. The t50 for zona lysis of fertilized oocytes was significantly difference than those observed for unfertilized oocytes and oocytes not fertilized at the first insemination(P<0.01). In addition, the t50 of zona in ovulated oocytes with and without cumulus cells incubated for 0, 3, 6, 9 and 12 hr in vitro, t50 were 13.9, 11.1, 20.7 and 28.0min., and 22.3, 21.0, 30.0 and 33.5min., respectively. In these experiments, the zona pellucida showed a gradual increase in resistance to dissolution by $\alpha$-chyjotrypsin with in vitro aging for more than 6 hrs. This effect was greater in cumulus-free as compared to cumulus-intact oocytes. Finally, in cumulus-intact and cumulus-free ovarian oocytes matured for 0, 5, 10 and 15 hr in vitro the t50 of zona pellucida were 3.0, 10.6, 18.4 and 24.5 min., and 3.0, 14.0, 26.2 and 32.0 min., respectively. Clear differences in solubility between the zona pellucida of oocytes matured in vivo and in vitro. This data were found suggest that under in vitro conditions there is a gradual change in the soluble properties of the zona pellucida, particularly in the absence of the cumulus cells.

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RNA Polymerase II Inhibitor, ${\alpha}$-Amanitin, Affects Gene Expression for Gap Junctions and Metabolic Capabilities of Cumulus Cells, but Not Oocyte, during In Vitro Mouse Oocyte Maturation

  • Park, Min-Woo;Lee, Hyun-Seo;Kim, Eun-Young;Lee, Kyung-Ah
    • Development and Reproduction
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    • v.17 no.1
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    • pp.63-72
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    • 2013
  • A specific inhibitor of RNA polymerase II, ${\alpha}$-amanitin is broadly used to block transcriptional activities in cells. Previous studies showed that ${\alpha}$-amanitin affects in vitro maturation of cumulus-oocyte-complex (COC). In this study, we evaluated the target of ${\alpha}$-amanitin, and whether it affects oocytes or cumulus cells (CCs), or both. We treated ${\alpha}$-amanitin with different time period during in vitro culture of denuded oocytes (DOs) or COCs in comparison, and observed the changes in morphology and maturation status. Although DOs did not show any change in morphology and maturation rates with ${\alpha}$-amanitin treatment, oocytes from COCs were arrested at metaphase I (MI) stage and CCs were more scattered than control groups. To discover causes of meiotic arrest and scattering of CCs, we focused on changes of cumulus expansion, gap junctions, and cellular metabolism which to be the important factors for the successful in vitro maturation of COCs. Expression of genes for cumulus expansion markers (Ptx3, Has2, and Tnfaip6) and gap junctional proteins (Gja1, Gja4, and Gjc1) decreased in ${\alpha}$-amanitin-treated CCs. However, these changes were not observed in oocytes. In addition, expression of genes related to metabolism (Prps1, Rpe, Rpia, Taldo1, and Tkt) decreased in ${\alpha}$-amanitin-treated CCs but not in oocytes. Therefore, we concluded that the transcriptional activities of CCs for supporting suitable transcripts, especially for its metabolic activities and formation of gap junctions among CCs as well as with oocytes, are important for oocytes maturation in COCs.

Effects of Bovine Cumulus Cell Co-Culture and CR1aa Medium on In Vitro Development of In Vitro Produced Bovine Embryos (우 난구세포의 공동배양과 CR1aa배양액이 체외생산된 우 수정란의 체외 발생에 미치는 영향)

  • 김동훈;정형민;박세필;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.17 no.4
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    • pp.271-278
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    • 1994
  • The aim of this study was to compare the two culture systems 1) co-culture with cumulus cells and 2) chemically defined medium supplemented with amino acids (CR1aa) and fetal calf serum (FCS) of in vitro produced bovine embryos from follicular oocytes in vitro. Bovine follicular oocytes were collected from ovaries of slaughtered cows and matured in TCM199 supplemented with 10% FCS and hormones (1$\mu\textrm{g}$/ml FSH-P and 1$\mu\textrm{g}$/ml oestradiol-17$\beta$)24 hours at 39$^{\circ}C$ under 5% CO2 in air. The capacitation of spermatozoa from ejaculated or frozen bull semen was induced by centrifugation through Percoll density gradient (45%, 90%). Then capacitated spermatozoa (1$\times$106/ml) were inseminated into 50${mu}ell$ droplet containing matured follicular oocytes and incubated for 40~42 hours. Cleaved embryos of 2~4cell stage were transferred to the co-culture with cumulus cells and/or CR1aa medium supplemented with FCS. In semen source, the developmental rates to the blastocyst and the hatched blastocyst stages were higher in ejaculated semen(27.6% and 14.9%) than those of frozen-thawed semen(18.3% and 11.8%), respectively. In two culture systems, the proportions of embryonic development upto the blastocysts and the hatched blastocysts were higher of CR1aa medium (22.1% and 12.1%) than those of cumulus cell co-culture (16.8% and 5.1%), respectively. The number of cells in exapnded blastocysts was slightly higher in cumulus cells co-culture (122.6$\pm$8.5) than that in CR1aa medium (117.9$\pm$5.9). The present results indicated that the early development of in vitro produced bovine embryos can be maintained efficiently in CR1aa medium as well as in co-culture with cumulus cells.

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Effects of Cumulus Cells, Gulcose and SOD Levels During the In Vitro Culture in Medium on In Vitro Developmental Rates of Bovine Oocytes (난구세포, Glucose, SOD 첨가가 소 수정란의 체외발생에 미치는 영향에 관한 연구)

  • 김상근;이종진
    • Korean Journal of Animal Reproduction
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    • v.20 no.3
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    • pp.353-360
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    • 1996
  • The study was conducted to determine the optimal cumulus cells, glucose and superoxide dimutase(SOD) levels during the in vitro culture of bovine oocytes matured and fertilized in vitro for morulae and blastocyst development. Oocytes were cultured for 0~8 days in TCM-199 medium supplemented with 20% FCS, cumulus cells and with different glucose and SOD levels. The results are summarized as follows; 1. The in vitro developmental rates of bovine oocytes cultured in TCM-199 medium containing cumulus cells and 0.1, 0.5, 1.0, 5.0mM glucose levels 0~3 and 0~8 days after insemination were 21.1, 25.0, 23.3, 17.9 and 26.3, 25.7, 23.1, 19.4% respectively and there was significant differences on the development to the molurae and blastocysts stage among the cumulus cells and glucose levels. 2. The in vitro developmental rates of bovine oocytes cultured in TCM-199 medium containing 0.1, 0.5, 1.0, 5.0mM glucose levels 0~3 and 0~8 days after insemination were 11.3~24.5% and 17.3~25.0%, respectively. 3. The in vitro developmental rates bovine oocytes cultured in TCM-199 medium containing 100, 200, 300, 500 $\mu\textrm{g}$/ml SOD levels 0~3 and 0~8 days after insemination were 12.5~22.9% and 12.9~22.2%, respectively. Hight levels of SOD(500$\mu\textrm{g}$/ml) significantly reduced the rates ofmolurae and blastocysts stage(P<0.05).

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배란 전, 후 생쥐 난자-난구 복합체의 미세구조의 변화

  • 김문규;김종흡
    • The Korean Journal of Zoology
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    • v.31 no.4
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    • pp.273-282
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    • 1988
  • 생쥐에 PMSG와 hOG를 주사한 후 난자-난구복합체의 미세구조의 변화를 환찰함으로세 난구세포의 분산현상을 규명하고자 본 실험을 행하였다. 난자는 PMSG 주사후 48시간까지 별 다른 변화가 없었고 다만 표면막에 miGrOVilli와 Coaled pit의 수가 감소하는 경향을 보였다. 그러나 PMSG-hCG주사 12시간 후에 배란된 난자의 표면은 microvilli와 coated pit가 사라져서 평평하게 되었다. 방사관세포는 PMSG주사 48시간 후메 밀착해 있던 투명대와 간격이 생기기 시작하였고, 투명대를 통관하여 난자의 표면막과 desmosome으로 연결되어 있던 세포질돌기도 퇴화의 징후를 보였다. PMSG-hCG주사 후에는 급속히 격리, 분산되고 세포질돌기는 퇴화하였으며 dermo-some도 사라겼다. 난구세포들은 대조군에서 밀집되어 있었고 거의 gap junction으로 연결되어 있었는데, PMSG주사 24시간 후에는 모양이 등글게 되고 더욱 밀집되었으며, 48시간 후에는 거의 loose junction으로 연결되었고 분산되기 시작하였다. 결국 PMSG-hCG주사 If시간 후에는 완전히 분산되었고 거의 모두 핵응축과 괴사현상을 보였다. 난자- 난구 복합체의 분산은 배란전에 PMSG에 의하여 시작되고 hCG에 의하여 촉진 완결된다는 것이 확실하다. The ultrastructural changes of the oocyte-cumulus complexes of mouse alter injection of PMSG and hOG have been investigated in order to elucidate expansion phenomenon of the cumulus cells. The oocytes until 48 hours after PMSC injection showed no change except a tendency of decrease in numbers of microvilli and the coated pelts on surface membrane. However, surface membrane of the ovulated oocytes 12 hours after PMSC-hCC injection changed to be smooth due to disapperance of microvilli and coated pits. Corona radiate cells tightly attaching to zona pe]lucida 48 hours after PMSC injection began to be detached and their cytoplasmic processes connected by desmosome to oocyte surface membrane showed a degeneration symptom. Thereafter the detachment and degeneration were accelerated by hCG injection and followed by disappearence of desmosome. The cumulus cells in control group were compacted and connected by almost 9aP junction each another. Ite cumulus cells 24 hours after PMSG injection were changed to be round form and more tightly compacted. However, the cumulus cells 48 hours after PMSG injection were connected by almost loose junction and showed the beginning of expansion. Eventuallv, the cumulus cells 12 hours a%or PMSG-hCG injection were completely expanded, and became pvknotic and necrotic in most It is clear that the expansion of oocyte-cumulus complex were initiated by PMSC, then accelerated and completed by hCG before ovulation.

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Studies on the Cumulus Expansion and Oocyte Maturation of Mouse Cumulus-Oocyte Complexes: Regulation of Intracellular cAMP Level (생쥐 난자-난구 복합체의 성숙과 분산에 관한 연구 : 세포내 cAMP의 조절)

  • 권혁방;고선근;임욱빈
    • The Korean Journal of Zoology
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    • v.30 no.1
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    • pp.1-9
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    • 1987
  • Cyclic AMP (cAMP) was known to play a key role in the regulation of cumulus expansion and oocyte maturation of mammalian cumulus-oocyte complexes (COC's) in vivo and in vitro. The present experiments were conducted to know how intracellular level of cAMP in these cells is controlled. Intracellular cAMP level was modulated by culturing mouse CGC's with an adenylate cyclase stimulator, forskolin, a phosphodiesterase inhibitor, 3-isobutyl-1-methyixanthine (IBMX), human chorionic gonadotrophin (HCG), or follicle stimulating hormone (FSH). The rate of cumulus expansion and germinal vesicle break-down (GVBD) was checked after culture and used as a biological end point. Forskolin in the medium began to stimulate the expansion of the complexes at 1 nM and induced maximum expansion (80~90%) at 0 1~10 $\mu$M. The expansion rate was reduced to 60% when forskolin concentration was increased to 100 $\mu$M. Oocyte GVBD occurred normally (75~82%) in the presence of 10 $\mu$M of forskolin, but partial suppression was appeared at 100 pM of the drug (40%). IBMX also stimulated the expansion from the concentration of 0.01 pM and induced full expansion (81~89%) between the concentration of 1-1000 $\mu$M. Meiotic resumption was occurred normally under 10 $\mu$M of IBMX, but suppressed drastically from the concentration of 100 $\mu$M. The minimum exposing time to hormone or drugs required to trigger cumulus expansion was two minutes with HCG, 15~30 minutes with FSH and fors kolin, and two hours with IBMX. The data presented here seemed to imply that intracellular cAMP level in cumulus cells is regulated by both adenylate cyclase and phosphodiesterase and cumulus expansion is induced by a peak of cAMP while meiotic arrest is maintained by continuous presence of cAMP.

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Effect of Medium and Cumulus Cell on In Vitro Fertilization of Porcine Follicular Oocytes (배양액 및 난구세포가 돼지난포란의 체외수정에 미치는 영향)

  • Park, B.K.;Han, M.H.;Seo, K.W.;Park, C.S.;Lee, K.S.
    • Korean Journal of Agricultural Science
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    • v.23 no.2
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    • pp.206-211
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    • 1996
  • This study was conducted to investigate the effects of medium and cumulus cell on in vitro fertilization of porcine follicular oocytes. The results obtained are as follows ; 1. The normal fertilization rates of in vitro matured follicular oocytes cultured in 00, mT ALP and TCM-HEPES medium were 14.0~24.3%, 30.8~32.7% and 21.4~23.9%, respectively. These data indicated that the optimal medium for fertilization of porcine oocytes in vitro was the mTALP medium 2. The normal fertilization rates of epididymal sperm were 24.3%(80), 30.8%(mTALP) and 23.9%(TCM-HEPES), and those of ejaculated sperm were 14.0%(B0), 32.7%(mTALP) and 21.4%(TCM-HEPES). 3. The sperm penetration rates of cumulus-enclosed and cumulus-free oocytes on in vitro fertilization were 54.0% and 72.0%. The normal fertilization rates of cumulus-enclosed and cumulus-free oocytes were 11.9% and 21.5%. The normal fertilization rate of cumulus-enclosed oocytes was significantly(P<0.05) higher than that of cumulus-free oocytes.

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Effect of Human Follicular Fluid and Bovine Oviductal Tissue Extract on the Mouse Oocyte-Cumulus Complex (사람 난포액과 소의 수란관 조직추출액이 생쥐 난구세포에 미치는 영향)

  • 홍민정;김지수;심명선;김해권
    • Development and Reproduction
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    • v.6 no.2
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    • pp.97-104
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    • 2002
  • In most mammals, mature oocyte-cumulus complexer(OCCs) ovulate into the oviduct where fertilization by sperm takes place. However, the complex that fail to fertilize eventually undergoes degeneration while they reside in the oviduct. Yet there is no blown mechanism how both oocyte and cumulus cells degenerate. Using human follicular fluid (hFF), bovine oviductal tissue extract (BOX) and mouse OCC, the present study aimed to find how the oviduct influence the viability of the oocyte and cumulus cells in vitro. There was no difference of oocyte maturation rate between the control and BOX-treated groups. However, there was a significant difference in the survival of cumulus cells between two groups. Cumulus cells cultured in the presence of hFF alone underwent initially expansion and then they formed monolayer in the culture dish. Even after 72 hr, they proliferated well and showed fibroblast-like morphology. Cumulus cells cultured in the presence of both hFF and BOX also expanded after 24 hr, however, after 72 hr culture, they eventually detached and degenerated. Cumulus cells cultured in the BOX alone gave a similar drastic result. When the cumulus cells cultured in the presence of BOX were stained with DAPI, their nuclei showed partial condensation and fragmentation. After detailed analysis of these cells by TUNEL assay, many nuclei of them exhibited well stained spots indicating the signs of apoptosis. Based upon these observations, it is suggested that BOX might possess a factor that leads mouse cumulus cells to undergo apoptosis in vitro.

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