Normal maturation of the mammalian oocytes is prerequisite for the fertilization and the early embryonic development. We have been tested the effects of purine and its de novo synthetic inhibitor, azaserine(Aza) on the maturation of germinal vesicle(GV) and germinal vesicle breakdown(GVBD) mouse oocytes. Denude-immature oocytes were cultivated in the media containing adenosine, guanosine, and/or azaserine, and checked the matruation stage by monitoring the prominent morphological changes. In GV stage oocytes, GV was arrested temporarily by the adenosine(1.0%) and protractedly by the guanosine(65.9%, P<0.001). The regression was increased significantly at the adenosine(90%, P<0.001) but decreased at the guanosine(1.6%, P<0.05). Inhibiting the de novo synthesis of purine, nuclear maturation rate was increase(90.4% : 96.7%), but GV arrest was significantly increased by cotreatment with guanosine(P<0.001). Polar body extraction significantly was increased at the Aza(P<0.05), but not in others. In GVBD oocytes, adenosine itself did not affect GVBD arrest. Guanosine, on the other hand, elevated GVBD arrest rate(P<0.001), but co-treated with Aza, decreased GVBD arrest(P<0.001). Aza increased GVBD arrest rate(20.2%, P<0.05) compared with control. From those results, we know that guanosine shows more prominent effect on the inhibition of nuclear maturation at the GV stage, and of the 1st polar body extrusion at the GVBD stage. Adenosine showed the cytoplasmic toxicity at GV stage oocyte. Our data speculate that cytoplasmic cAMP level is auto-regulated by endogenous adenylate cyclase while GVBD is inhibited by guanosine, since purine toxicity is not observed in the GVBD stage. And it is showed that purine metabolism is concerned with nuclear maturation, that the amounts of purine metabolism is not even during the oocyte maturation.
Kim, Sung-Woo;Park, Jin-Ki;Lee, Yun-Keun;Lee, Poongyeon;Kim, Jung-Ho;Han, Joo-Hee;Park, Chun-Gyu;Ha, Kwon-Soo;Chang, Won-Kyong
Proceedings of the KSAR Conference
/
2003.06a
/
pp.61-61
/
2003
We have investigated the novel function of tissue transglutaminase (tTG) in the germinal vesicle breakdown (GVBD) of mouse oocyte. tTG was identified in ooplasm and germinal vesicle by immunostaining assay. Spontaneous maturation of the oocytes elevated in situ activity of tTG by over 2.5 fold at 3 hr, which was determined by a confocal microscopic assay. However, incubation with monodansylcadaverine (MDC), a tTG inhibitor, blocked the activation of tTG. The possible role of tTG in GVBD was investigated by the use of two tTG inhibitors, MDC and cystamine. MDC largely inhibited the GVBD by a concentration dependent manner. GV-stage oocytes were matured to the GVBD stage by 78% at 3 hr in BWW culture medium. However, in the oocytes incubated with MDC for 3 hr, the GVBD rates were 43 and 11% by 50 and 100 mM, respectively. MDC also blocked the entry of 70 kDa TRITC-dextran from the ooplasm to the compartment of germinal vesicle, indicating a possible inhibition of nuclear pore disassembly by MDC. The role of tTG in GVBD was further investigated by microinjection with cystamine. The control oocytes, injected with DPBS, showed about 80 % of GVBD at 3 hr. But the oocytes injected with cystamine showed 15% of GVBD at 3 hr and a little higher rate at 6 hr. In addition, the inhibition of GVBD maturation by MDC was reversible by washing. These results suggested that tTG was involved in the early event of mouse oocyte maturation
The present experiments aimed to investigate the metabolism of calcium during oocyte maturation in rat. The concentration of free calcium and calmodulin in oocytes was measured respectively by using of fluo-3/AM and FITC with microscope fluorescence spectrometer. The ultrastructural localization of calcium precipitates in oocytes was observed with the transmission electron microscope. Cumulus-free immature oocytes(GV-oocyte) were cultured in vitro through 15 hours. The free calcium concentration in GV oocyte was $55.9{\pm}3.5nM$. In calcium-containing medium, the free calcium concentration was increased in germinal vesicle breakdown(GVBD) oocyte($64.2{\pm}7.3nM$). In normal medium after calcium chelator treatment ($10{\mu}M$ BAPTA/AM), the free calcium contents were slightly lower than those in control group. In calcium-free medium, the free calcium content was drastically increased in GVBD($72.7{\pm}3.4nM$) and metaphase I - anaphase I ($88.0{\pm}3.4nM$) oocyte. In maturation rate of oocytes, GVBD rate was high in control group($82.9{\pm}6.55%$) and calcium chelator treatment group($91.2{\pm}4.4%$), but in calcium-free medium group, it was low and then the oocyte was degenerated without polar body formation. Relative content of calmodulin in oocyte was significantly(P<0.001) increased in metaphase I - anaphase I than in GV and GVBD oocyte. The calcium precipitates were observed in mitochondria and cytoplasm of GV oocyte but that were not observed in mitochondria of GVBD and metaphase I - anaphase I oocyte. And then the calcium precipitates reappeared in mitochondria of metaphase II oocyte. The above results indicate that changes in free calcium and calmodulin concentration of oocyte occur according to the maturational stages and the extracellular calcium is required during oocyte maturation. Also change of calcium localization in oocyte occurs according to the maturational stages.
The effects of tributyltin (TBT), triphenyltin (TPhT) and Aroclor 1254 on germinal vesicle breakdown (GVBD) and ovulation of olive flounder (Paralichthys olivaceus) were investigated in in vitro bioassay. TBT, TPhT and Aroclor 1254 showed the inhibition effects on GVBD and ovulation in response to HCG. The oocyte response appeared to be more sensitive to TBT than Aroclor 1254. TBT was more effective in inhibition GVBD at concentrations of 0.1 and 1 ppm. However, no significant inhibition was obseued in concentrations tested ($0.0001\~1\;ppm$). Significant inhibition of ovulation in response to HCG occurred at TBT (0.01, 0.1, 1 ppm), TPhT (0.01, 0.1, 1 ppm) and Aroclor 1254 (0.01, 1 ppm, except 0,1 ppm), compared to HCG control, The lowest ovulation rate was measured at 1 ppm TBT, These data suggest that TBT (or TPhT) could possibly interfere the actions of progestogens to induce GVBD and ovulation in in vitro bioassay system.
This study was undertaken to investigate effects of granulosa cells on mejotic maturation of porcine oocytes in vitro. The results obtained in this study were summarized as follows : The germinal vesicle breakdown(GVBD) rates were 91.5, 93.3 and 96.6%, respectively, when the cumulus oocy:e cornplexes(COC) in the TCM-199 medium with sodium bicarbonate, Na pyruvate, penicillin G, streptomycin sulfate and 10% FCS were cultured in the condition of FSH(0.02 Au/ml), LH(10 $\mu$g/ml) and FSH + LH added. And when the COC were co-cultured with granulosa cell (5$\times$ 106 cells /ml) in the condition of FSH, LH and FSH + LH added, GVBD rates were 94.3, 92.9 and 98.9%, respectively. However, when the COC were cultured in the condition of hormone free and co-cultured with granulosa cells in the condition of hormone free, the GVBD rates were 40.4 and 86.3%, respectively. The GVBD rates were 41.0, 62.7, 84.6, 88.1 and 93.6%, respectively, when the COC were co-cultured with granulosa cells that the concentrations are 0 cells /ml, 1 $\times$ 106 cells /ml, 5:: 106 cells /ml, 1$\times$ 107 cells /ml and 5$\times$ 107 cells /ml.
A possible involvement of maturation promoting factor (nfPF) in the two-cell block phenomenon was studied by fusion experiments. Germinal vesicle (GlF) ooeyte was fused with a blastomore from late or blocked 2-cell mouse embryos. and germinal vesicle breakdoum (GVBD) of fused GV oocvtes in the presence of dbcAMP (100$\mu$g/ml) was scored as an index of MPF aniviD. GnD was induced approximately 30% by fusion of a blastomere derived from late 2-cell embryos, but not from blocked 2-cell embryos. The rate of GVBD was changed when GV oocyte was fused with a blastomere from late 2-cell embryos which were treated with u-amanitin, puromvcin or colcemid before and after hsion: Treatment of late 2-cell embryos with puromycin (50 Is/mll but not with u-amanitin (100 Is/ml) clearly inhibited GVBD, indicating that do novo protein synthesis maw be required for the appearance of MPF activity in late 2-cell embryos. Treatment of late 2-cell embryos w기h colcemid (0.1 Is/mll doubled GVBD, presumably due to the maintenance of metaphase or mitotic phase. SDS-PAGE and twoiimensional electrophoresis revealed that there was no difference in protein synthetic pattern in late and blocked 2-cell embryos, but three phosphoproteins with 27, 35 and 46 M)a, presumsblv M-phase components were phosphorylated in late 2-cell embryos but not in blocked 2-cell embryos. It seems then that MPF activity is closely related to phosphorylstion of M-phase components in late 2-cell embryos.
The aim of this study was to determine the effect of steroids and human chorionic gonadotropin (HCG) on in vitro maturation and ovulation of oocyte in Pseudobagrus fulvidraco. Oocytes were incubated in the media Leibovitz L15 supplemented with the various concentration of $17\alpha,\;20\beta-dihydroxy-4-pregnen-3-one(17\alpha20{\beta}OHP),\;17\alpha-hydroxyprogesterone(17{\alpha}OHP),\;progesterone(P_4),\;estradiol-17\beta(E_2)and\;HCG$. After 60 hours incubation, the maturation ability of oocyte was assessed by the appearance of germinal vesicle breakdown (GVBD). GVBD was significantly enhanced by the addition of $17\alpha20{\beta}OHP,\;17{\alpha}OHP,\;P_4\;and\;HCD(P<0.05)$. The highest CVBD was observed when $17\alpha20{\beta}OHP$ and HCG were supplemented to media. When oocytes were cultured for 16 hours in media containing $10\~1,000\;ng/ml\;17\alpha20{\beta}OHP,\;17{\alpha}OHP\;and\;P_4$, the rate of GVBD in oocytes cultured in the medium supplemented with 100 ng/ml $17\alpha20{\beta}OHP(65\%)$ was significantly higher than that with $17{\alpha}OHP\;(40\%)\;and\;P_4(35\%)$. The efforts of $17\alpha20{\beta}OHP$ and HCG on GVBD were assessed by various concentration of these hormones. When oocytes were cultured for 60 hours in various media containing $1\~1,000\;ng/ml\;17{\alpha}20{\beta}OHP\;or\;5\~1,000\;IU/ml$ HCG, the GVBD of oocytes was significantly increased in the medium with $10\~100\;ng/ml\;17\alpha20{\beta}OHP$ and 500 IU/ml HCT. When oocytes were cultured in the various media supplemented with $1\~1,000\;ng/ml\;17\alpha20{\beta}OHP\;or\;5\~1,000\;IU/ml$ HCG for 60 hours, the media with $1\~100\;ng/ml\;17\alpha20{\beta}OHP\;or\;50\~1,000IU/ml$ HCG significantly increased in the rate of ovulation. However supplementation with $1,000\;ng/ml\;17\alpha20{\beta}OHP$or 5 IU/ml HCG did not improve the rate of ovulation compared to controls. This results indicate that supplementation of steroid and HCG except $E_2$ can improve the in vitro maturation and ovulation of oocyte in P. fulvidrac; HCG and $17\alpha20{\beta}OHP$ may be more effective than other steroids on oocyte maturation and ovulation in P. fulvidraco.
This objective of this experiment was to test the effect of EGF on GVBD and MII of nuclear maturation of pig immature oocytes in vitro. Experiment 1 examined to the effect of EGF on nuclear maturation of pig immature oocytes according to different maturational times. The percentage of GVBD of EGF 10mg/ml treated groups were significantly higher than untreated groups after 24hr (p < 0.001). Experiment 2 examined to the effect of duration of exposure of oocytes to EGF supplement in maturation medium. Nuclear maturation rates (M II) of EGF treated groups (during 0-24: 72.8% and 0-42hr: 84.8%) were significantly higher than 53.5 and 26.1% of EGF treated group (during 24-42hr) and untreated group (p < 0.001). Also, experiment 3 examined to the effect of EGF on nuclear maturation of CEOs or CFOs. Nuclear maturation rate (M II) 84.6% of EGF treated group of CEOs was significantly higher than 53.0, 27.6, and 44.2% of EGF treated group of CFOs and untreated groups of CEOs and CFOs (p < O.001). These results conclude that EGF alone can stimulate GVBD and M II of nuclear maturation in pig immature oocytes.
The present experiment was performed to confirm the effects of selenium on maturation and viability of mouse oocyte. Maturation of oocytes was observed by microscope, Germinal vesicle breakdown(GVBD) and polar body formation(PB) were confirmed at 2.5, 13 hours after in vitro culture. Viability of oocytes was observed by microscope. Normal and abnormal oocytes were distinguished by morphological change in vitro culture for 72 hours. Glutathione(GSH) content of collected oocytes from individual stage also was measured by glutathione assay using spectrophotometer. The results obtained were as follows; The low concentration of selenium($0.005\;{\mu}g/mL{\sim}0.5\;{\mu}g/mL$) increased the maturation rate of germinal vesicle(GV) oocytes to GVBD and PB oocytes. The high concentration of selenium($5\;{\mu}g/mL$) decreased the maturation rate. The low concentration of selenium increased the viability rate of PB oocytes. The high concentration of selenium did not affect the viability rate. The low concentration of selenium increased the GSH content in PB oocytes. The high concentration of selenium decreased GSH content. GSH content in PB oocyte was much higher than that in GVBD oocyte. The results indicate that the low concentration of selenium increases the maturation rate by helping quality elevation of oocyte and minimizing damages of oxidative stress generated from metabolism process. The low concentration of selenium also increases the viability rate by increasing GSH content.
This study was conducted to find out the recovery rate of oocyte according to the different size of follicles from porcine ovaries, and the effect of in vitro maturation of porcine immature oocyte at the different transportation temperature of ovaries from slaughter house. The results obtained were summarized as follows : 1. The number of follicles per ovary was 22.5. The number of A-and B-typed oocytes(type A: cumulus-enclosed oocyte, type-B : corona-enclosed oocyte) per ovary was 2.4. The proportion of A-and B-typed oocytes was 29.6% of the total recovery oocytes. 2. When the immature oocytes were cultured for 36, 40, 44 and 48 h at 5$^{\circ}C$ transportation temperature of ovary, the germinal vesicle breakdown(GVBD) rates of porcine oocytes were 32.5, 28.2, 22.6 and 25.9% respectively. There were no significant differences between all the culture time for GVBD. Especially, most of oocytes were observed to arrest the development beyond germinal vesicle(GV) stage. 3. When the immature oocytes were cultured for 36, 40, 44 and 48 h at $25^{\circ}C$ transportation temperature of ovary, the GVBD rates were 81.0, 90.0, 91.7 and 92.9%, and the maturation (Met-II) rates were 51.2, 78.8, 76.2 and 78.6%, respectively. 4. When the immature oocytes were cultured for 36, 40, 44 and 48 h at 38$^{\circ}C$ transportation temperature of ovary, the GVBD rates were 93.9, 96.5, 96.5 and 95.3%, and the maturation rates were 62.2, 88.4, 84.7 and 86.0%, respectively. 5. The above results showed that the maturation rates of immature oocytes between $25^{\circ}C$ and 38$^{\circ}C$ transportation temperature of ovary did not differ significantly.
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