Choudhury, Sk Mohiuddin;Bhuiyan, Mohammad Musharraf Uddin;Rahman, Mohammad Moshiur;Rahman, Md. Masudur;Sharif, Md. Newaz;Bhattacharjee, Jayonta;Bari, Farida Yeasmin;Juyena, Nasrin Sultana
Journal of Embryo Transfer
/
v.32
no.4
/
pp.311-317
/
2017
Cryopreservation of oocytes by vitrification technique may contribute a lot in the field of reproductive biotechnology. The objectives of the present study were to evaluate the effectiveness of two cryo-devices for vitrification of immature oocytes of indigenous zebu cows. Slaughter house derived immature cumulus-oocyte-complexes (COCs) of cows were vitrified using 15% dimethyl sulphoxide (DMSO) as cryoprotective agent (CPA) with 0.5 mol sucrose in TCM 199 supplemented with 20% FBS. Vitrification of COCs was completed after immediate plunging of COCs loaded cryotop or French mini straw into the liquid nitrogen ($LN_2$). Then the COCs containing cryotop or French mini straws were warmed in 0.25 mol sucrose and 20% FBS supplemented TCM 199 followed by in vitro culture in $50{\mu}l$ droplets of bicarbonate buffered TCM 199 supplemented with 10% FBS, pyruvate, FSH and oestradiol for 24 hrs at $39^{\circ}C$ with 5% CO2 in humidified air. After maturation culture, oocytes were denuded and examined under inverted microscope for presence of polar body as the indication of maturation. Denuded oocytes were also stained by whole mount technique using 1% orcein to examine the maturation by presence of MII chromosomes. The in vitro maturation rate was significantly (p<0.05) higher in oocytes vitrified and warmed using crytop ($47.1{\pm}6.9%$) than that of French mini straw ($15.9{\pm}12.5%$). Moreover, in vitro maturation rate was significantly (p<0.05) highe r in control oocytes (not vitrified) ($84.5{\pm}14.2%$) than that of vitrified oocytes. In conclusion, cryotop is better than French mini straw as cryo-device for vitrification of bovine immature oocytes.
Demi-embryos were successfully produced by bisection of ICR mouse embryos at preimplantation stages. They were microsurgically bisected using a microsurgical blade attached to a micromanipulator after pretreatment with 0.5% pronase in PBS for two minutes or not. Embryos with softened zona pellucida were more easily bisected and less damaged than intact embryos. The highest success rate in bisection has been achieved by selecting blastocysts(94.1% in success rate with intact blastocysts and 100% in success rate with zona softened blastocysts). Demi-embryos without zona pellucida were cultured in D-PBS or M-16 medium at $37^{\circ}C$, 5% $CO_2$ in air for 72 hours for 2-cell stage embryos, 48 hours for 4-to 8-cell stage embryos, 24 hours for morula stage embryos and 6~12 hours for blastocyst stage embryos. For the in vitro culture of 2-cell stage embryos, $100{\mu}M$ 2Na-EDTA was added to the media. M-16 medium was better for the in vitro development of mouse embryos than PBS, and PBS is not considered to be suitable for long-term culture of embryos, especially at early stage of cleavage. In M-16 medium, developing rate of demi-embryos of which pair underwent development to form eublastocysts was 15.8% at 2-cell stage, 16.8% at 4-cell stage, 38% at 8-cell stage, 89.6% at morula stage and 94.4% at blastocyst stage, respectively. The more rapid and efficient production of demi-embryos and higher viability after bisection can be expected by softening zona pellucida with pronase and by selecting morulae or blastocysts rather than embryos at early stage of cleavage.
To establish rabbit Embryonic Stem (ES) cells, rabbit one-cell embryos were collected and cultured in vitro to blastocysts. Blastocysts were co-cultured with mouse embryonic fibroblasts (MEF), rabbit embryonic fibroblasts (REF) or 570 cells expressing LIF (SNL). Although rabbit ES cells were isolated with low efficiencies, total 8 ES cell lines were kept in vitro with normal colony shape. The MEF was the best feeder for rabbit ES cell isolation in regard to growth rate and undifferentiated morphology. The doubling time of rabbit ES cells in MEF was about 84 hours and the undifferentiated morphology was maintained following passing and freezing processes. These rabbit ES cells were differentiated into embryoid body following the culture in the uncoated dishes, indicating that they were undifferentiated stem cells.
To examine the efficiency of nuclear transplantation the influence of electrical preactivation of recipient cytoplasm on the in vitro developmental potentyl in the nuclear transplant rabbit embryos were evaluated. The embryos of 16-cell stage were collected and synchronized to G1 phase of 32-cell stage. The recipient cytoplasms were obtained by removing the first polar body and chromosome mass by non-disruptive microsurgery procedure. The separated G1 phase blastomeres of 32-cell stage were put into the non-preactivated and/or the preactivated recipient cytoplasm by electrical stimulation. After culture until 20h post-hCG injection, the nuclear transplant oocytes were electrofused. The fused nuclear transplant embryos were co-cultured with rabbit oviduct epithelial cells and monitored every 24h to assess for developmental rate. After in vitro culture for 120h, the nuclear transplant embryos developed to blastocyst stage were stained with Hoechst 33342 and their blastomere were counted. The electrofusion rate was similar to the non-preactivated and preactivated recipient cytoplasm(81.8 and 85.7%, respectively). However, the in vitro developmental rate to blastocyst stage with the non-preactivated recipient cytoplasm (57.1%) was found significantly (P<0.05) higher, compared to the preactivated recipient cytoplasm(20.8%). The cell counts of nuclear transplant embryos developed to blastosyst stage were increased significantly (P<0.05) more in the non-preactivated recipient cytoplasm (163.7 cells), as compared with the preactivated recipient cytoplasm(85.4 cells). These results considered better that non-preactivated oocytes, MII phase oocytes, were used for recipient cytoplasms in the rabbit nuclear transplant procedure.
The purpose of this study was to determine toxic effect of sucrose and trehalose prior to cryopreservation on nuclear maturation and embryonic development in immature bovine oocytes. All cryoprotectant was prepared in tissue culture medium 199-HEPES (TCM 199-HEPES) with 10% fetal bovine serum (FBS). Immature oocytes were exposed to 1.2M ethylene glycol (EG) and 0.1M sucrose or 1.2M EG and 0.1M trehalose for 3 min and then were exposed to 3.2 M EG and 0.25 M sucrose or 3.2 M EG and 0.25 M trehalose for 1 min. Oocytes treated with cryoprotectants were exposed to 0.25 M sucrose or 0.25 M trehalose for 5 min and then 0.1 M sucrose or 0.1 M trehalose for 5 min. Depending on type of sugar added to cryopreservation solution, oocytes were allocated to sucrose group and trehalose group, respectively. Oocytes exposed to TCM 199-HEPES with 10% FBS were considered as control. Oocytes were cultured in TCM 199 supplemented with 10% FBS, 5 ng/ml epidermal growth factor, 0.01 IU/ml luteinizing hormone, and $1\;{\mu}g/ml$ estradiol for 24 h in $39^{\circ}C$, 5% $CO_2$. Nuclear maturation was assessed by staining oocytes with 1% aceto-orcein. Oocytes were fertilized in vitro and were cultured in TCM 199 supplemented with 10% FBS, 5 mM sodium pyruvate, and antibiotics in $39^{\circ}C$, 5% $CO_2$. The rates of cleavage and blastocyst, and cell number in blastocyst were assessed. Metaphase II rates were not different among experimental groups regardless of type of sugar. The cleavage rate of trehalose group (73.3%) was significantly higher (p<0.05) than those of sucrose group (62.8%) and control group (60.8%). The blastocyst rate was significantly higher in trehalose group (p<0.05). Mean cell number in blastocyst were not different among experimental groups, although cell number of blastocyst in trehalose group was significantly higher on day 7 (p<0.05). In conclusion, sucrose and trehalose were not toxic to immature bovine oocytes prior to cryopreservation. In particular, trehalose was more effective on embryonic development.
These mxperiments were carried out to investigate the effect of rabbit anti-bovine cumulus cell antibodies on in vitro fertilization and following development of bovine follicular oocytes matured in vitro. The bovine ovaries were obtained at a slaughter house and the follicular oocytes surrounded by cumulus cells were collected by puncturing follicles with 2~6mm of diameter. Bovine oocytes were matured in vitro for 24~26hrs in a CO2 incubator with 5% CO2 in air at 39$^{\circ}C$ and subsequently cultured in medium containing cumulus cell antibody for 1 hour. The medium used for maturation was TCM-199 supplemented with hormones, pyruvate, FCS and antibiotics. Epididymal spermatozoa were capacitated by in vitro culture for 2~3 hrs in BO solution 10~15 matured oocytes into the suspension of capacitated spermatozoa. Six hour after insemination the eggs were transferred to TCM-199 supplemented with FCS(10%) and then cultured for 7 days. The results obtained in these experiments were summarized as follows : 1. When the follicular oocytes matured in vitro were treated with antibody to intact cumulus cells, the fertilization rate of cumulus intact and removed oocytes was ranged to 45.0 to 53.7%. These value is slightly lower than that(64.3%) of follicular oocytes not treated with the antibody, and increased frequency of both male and female pronuclear formation was found in cumulus intact oocytes cultred in medium without the antibody(p<0.05). 2. The fertilization rate of cumulus intact and removed oocytes treated with antibody to solubilized cumulus cells was ranged 45.0 to 52.5%, significantly lowre than that(62.8%) of oocytes cultured in antibody free medium, and increased frequency of ova with male and female pronuclei was found when cumulus cells were present(p<0.05). 3. The rates of cumulus cell intact and removed oocytes developed to 8-, 16-cell and morula or blastocyst after treatment of intact and solubilized cumulus cell antibody were ranged 7.1 to 14.5, 2.9 to 5.9 and 1.5 to 2.9%, respectively, slightly lower than 18.6, 10.0 and 8.6% of cumulus intact oocytes cultured in medium without the antibody. The results of this stduy indicate that cumulus cells promote not only normal fertilization with proper pronuclear formation, but embryo development and that the beneficial effect of cumulus cell to the pronuclear formation and embryo development is blocked by the action of antibody to cumulus cell.
This study was conducted to improve the in vitro maturation(JVM), in vitro fertilization (IVF) and in vitro developmental capacity of oocytes derived from slaughtered Korean native cattle. The recoverd oocytes, obtained from a local slaughter house, were used completely surrounded by at least 3 layers of cumulus cells in combination with a homogeneous cytoplasmic pigmentation. In vitro maturation was induced in TCM-199 or Ham's F-10 supplemented with LH(1O $\mu$g/rnl), FSH(35 $\mu$g/ml), estradiol-17$\beta$(1 $\mu$g/ml) at 39$^{\circ}C$ under 5% $CO_2$ in air for 24 hours. Sperm from caudal epididyrnis and previously matured cumulus-oocytes complexes were cultured for 24 hours in 100 $\mu$l droplets of fertilization media under paraffin oil. The zygotes were cultured with media(TCM-199 with bovine oviductal epithelial cells or CRlaa) for 7 to 10 days. The cleavage rate of IVM-IVF oocytes was significantly (P<0.05) higher following maturation using Ham's F-10 (59.9%) than TCM-199 (51.6%). Development to the blastocysts among cleaved embryos was not signficantly different between maturation media: Ham's F-10 (16.0%) and TCM-199(11.9%). However, the hatching rate was affected significantly (P<0.05) on rnaturation media as 62.9% in Ham's F-10, compared with 41.2% in TCM-199. The cleavage rate of IVM-IVF oocytes was significantly (P<0.05) higher following IVF using m-TALP medium (80.1%) than BO medium (51.6%). The percentage of in vitro developed blastocysts among cleaved embryos was not signficantly different between fertimization media: BO (11.7%) and m-TALP (17.6%). The cleavage and the developmental rate to the blastocysts after IVF in m-TALP or condition medium(CM) with or without oviduct epithelial cell monolayer(OECM) was similar(80.1% and 17.6% in m-TALP, 83.8% and 19.4% in M-TALP with OECM. 82.9% and 18.9% in CM, 87.6% and 16.0% in CM with OECM, respectively). The percentage of in vitro developed blastocysts among cleaved embryos was significantly (P<0.05) higher in TCM-199 medium co-cul tured with bovine oviduatal epithelial cell monolayers(35.2%) than CRlaa medium(1.9%). These results stggest that the most transferable IVF embryos could be produced from Ham's F-10, m-TALP and TCM-199 medium with bovine oviductal epithelial cell monolayers for IVM, IVF and IVC, respectively.
The present experiments on cryopreservation were designed to examine the effects of solution toxicity, equilibration time and cell stages on the post-thaw survival of bovine IVF embryos. The oocytes were matured in vitro(IVM) for 24 hrs. in TCM-199 supplemented with 35 $\mu$g /ml FSH, 10 $\mu$g /ml LH, 1 $\mu$g /ml estradiol-17$\beta$ and granulosa cells at 39$^{\circ}C$ under 5% $CO_2$ in air. They were fertilized in vitro(IVF) by epididymal spermatozoa treated with heparin for 24 hrs., and then the zygotes were co-cultured in vitro(IVC) with bovine oviductal epithelial cells for 7 to 9 days. The bovine IVF embryos were exposed to the EFS solution in one step at room temperature, kept in the EFS solution during different period for toxicity test, vitrified in liquid nitrogen, and thawed rapidly. 1. after the bovine blastocysts were exposed to EFS solution for 2 min. at room temperature and then they were washed in 0.5 M sucrose solution and TCM-199, they were cultured to examined cryoprotectant induced injury during exposure, Most of the embryos(95.0%) developed to reexpanded blastocoels. However, when the exposure time was extended to 5 and 10 min, these development rates dropped dramatically in 5 min. (69.5%) and 10 min. (47.4%), respectively, 2. When the bovine IVF embryos were vitrified in EFS solution after the equilibration for 1 and 2 min. exposure, The embryos to have reexpanded blastocoels following thawing, washing and culture processes were found to he 82.6 and 73.9%, respectively. However, when the exposure time was extended to 3 min, this survival rate dropped to 18.2%. The optimal time for equilibration of bovine IVF blastocysts in EFS solution seemed to he 1~2 min. 3. When the bovine IVF embryos were equilibrated for 1 min. the significantly (P<0. 05) higher post-thaw survival rates were obtained from the embryos of blastocyst stage(81.3%) than morulae stage(5. 1%). The optimal cell stage for viterification with EFS solution proven to he blastocyst stage in bovine IVF embryos. 4. The number of blastomeres of blastocyst stage was examined with nuclear staining with Hoechst 33342 during 7 to 9 days post-insemination. The cell counts of frozen bovine IVF embryos were found significantly(P$\geq$7.5 and those of the fresh embryos 76.6$\geq$7. 1, which were cultured in the sarne period and conditions as frozen embryos.
Kim, Min-Kyu;Kim, Hye-Jin;Cho, Jong-Ki;Jang, Gu;Lee, Kyu-Seung;Kang, Sung-Geun;Lee, Byung-Chun;Hwang, Woo-Seok
Journal of Embryo Transfer
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v.17
no.2
/
pp.145-151
/
2002
The aim of these experiments was to investigate in vitro nuclear maturation of canine oocyte collected from various stages of estrus cycles, Ovaries were obtained from 1 to 4 year-old mongrel bitch and minced for oocyte collection in phosphate buffered saline with 100 iu penicillin-G $m\ell$/sup -1/, 50 $\mu\textrm{g}$ streptomycin sulphate $m\ell$/sup -1/ and 0.1% (w/v) polyvinyl alcohol. Cumulus-oocyte-complexes (COCs) were washed in HEPES buffered tissue culture medium (TCM)199 and in vitro matured in TCM-199 culture medium supplemented with sodium pyruvate 0.028mg/$m\ell$, L-glutamine 0.146mg/$m\ell$, penicillin G 10,000 IU/$m\ell$, streptomycin 0.031mg/$m\ell$ and 10% (v/v) fatal calf serum. COCs were in vitro matured for 48~72 hrs at 39$^{\circ}C$ in humidified 5% $CO_2$ in air atmosphere. In vitro matured oocytes were remove the cumulus cells using 0.2% (v/v) hyaluronidase. After denuding, oocyte were placed in acetic acid : methanol : chlorform solusion (3:6 : 1.5 v/v) for 30 sec and acetic acid: ethanol(1:3 v/v) for 48hrs fixation. Nuclear maturation was classified to GV, GVBD, MI, MII and degenerate oocyte under microscopy after 1% aceto-orcein stain. In vitro maturation rates at 48hrs were not significantly difference among the oocytes collected from different stage of estrus at 15.9%, 16.3%, 23.7% and 18.2% for anestrus, proestrus, estrus and diestrus. However, the oocytes maturation(36.6%) of collected from estrus ovaries were significantly different from oocytes derived from proesturs, diestrus and anestrus ovaries(30.8%, 17.5% and 22.1%; p<0.05). The overall in vitro maturation rates were significantly higher (p<0.05) in 72hrs culture than 48hrs culture system. In summary, there was a tendency for higher in vitro maturation rates with the oocyte collected from estrus ovary than other stages of estrus. Also, for nuclear maturation, in vitro culture of oocyte for 72hrs was better than 48hrs culture.
This study was conducted to investigate the hormonal changes in cultured medium during in vitro culture of bovine oviduct epithelial cells (BOEC) supplemented with interleukin (IL)-4 of 0.001, 0.01, 0.1 or 1 ng/ml. BOEC were collected from the oviduct and washed 3 times with 1% antibiotic-mycotic-DMEM medium and cultured at $39^{\circ}C$, 5% $CO_2$, 95% air for 24$\sim$120 hrs. The cultured media were analyzed hormonal changes with hormonal analyzing kit (progesterone (P4), estradiol (E2) : Perkin Elmer, USA) and Transforming growth factor (TGF)-$\beta$ with Eliza kit (Promega, USA). The production of P4 in 0.001 IL-4 was increased as the culture time increased. P4 production was significantly higher in the medium cultured for 120 hrs than 24 hrs (P<0.05). P4 production in 0.01 ng/ml group was similar to that of 0.001 ng/ml. The production of E2 in 0.001 and 0.01 ng/ml groups were increased to 72 hrs like P4 production and showed significantly different between the culture periods (P<0.05). After the culture for 96 hrs, P4 and E2 production were increased to 96 hrs, but decreased at 120 hrs. The production of TGF-$\beta$ showed no changes according to culture period or supplementation of IL-4. In conclusion, the supplementation of IL-4 can increase the production of P4 and E2 and might have important role for the successful pregnancy in bovine.
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